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https://gitee.com/js-yhsec/energy_storage.git
synced 2026-05-28 03:09:24 +08:00
调试修改MQTT通讯解析
This commit is contained in:
@@ -48,6 +48,7 @@ bool AppData::initFromDB()
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{ // 数据库读取工作模式定义
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str = "", result.clear();
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DAO::queryWorkModeDef(dao, result);
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this->mapping.workMode.clear();
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for (auto& fields: result)
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{
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int workModeId = fields.get<int>(DMDefWorkMode::WORK_MODE_ID);
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@@ -61,6 +62,7 @@ bool AppData::initFromDB()
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{ // 数据库读取策略类型定义
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str = "", result.clear();
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DAO::queryPolicyTypeDef(dao, result);
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this->mapping.policyType.clear();
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for (auto& fields: result)
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{
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int policyTypeId = fields.get<int>(DMDefPolicyType::POLICY_TYPE_ID);
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@@ -74,6 +76,7 @@ bool AppData::initFromDB()
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{ // 数据库读取设备类型定义
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str = "", result.clear();
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DAO::queryDeviceTypeDef(dao, result);
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mapping.deviceType.clear();
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for (auto& fields: result)
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{
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auto item = std::make_shared<DeviceType>();
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@@ -90,8 +93,8 @@ bool AppData::initFromDB()
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}
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{ // 数据库读取角色定义
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str = "", result.clear();
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this->mapping.role.clear();
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DAO::queryRoleList(dao, result);
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this->mapping.role.clear();
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for (auto& fields : result)
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{
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auto item = std::make_shared<Role>();
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@@ -108,19 +111,20 @@ bool AppData::initFromDB()
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str = "", result.clear();
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std::string sql = "SELECT s.*, p.name policy_name, p.`type` policy_type, p.value FROM station s LEFT JOIN policy p ON s.policy_id=p.policy_id;";
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dao->exec(sql, result);
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this->mapping.stationName.clear();
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for (auto& fields: result)
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{
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auto station = std::make_shared<Station>();
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station->setFields(fields);
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this->mapStation[station->stationId] = station;
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mapping.stationName.push_back({std::to_string(station->stationId), station->name});
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this->mapping.stationName.push_back({std::to_string(station->stationId), station->name});
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str += ("场站: {" + std::to_string(station->stationId) + ":" + station->name + "},");
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}
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spdlog::info(str);
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}
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{ // 数据库读取设备信息
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str = "", result.clear();
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DAO::queryDeviceList(dao, result);
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DAO::queryDeviceList(dao, result, 1);
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for (auto& fields: result)
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{
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int deviceId = fields.get<int>(DMDevice::DEVICE_ID);
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@@ -135,6 +139,10 @@ bool AppData::initFromDB()
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spdlog::error("init device error: unknown station_id:, device_id=", stationId, deviceId);
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}
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}
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for (auto& item : mapStation)
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{
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item.second->groupDevice();
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}
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}
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{ // 数据库读取策略信息
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str = "", result.clear();
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@@ -10,6 +10,7 @@
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#include "protocol/HttpEntity.h"
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#include "common/Spdlogger.h"
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#include "protocol/MqttEntity.h"
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#include "DataStruct.h"
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void Application::init()
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{
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@@ -17,9 +18,9 @@ void Application::init()
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Config::init("assets/config/app.json");
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// MQTT 数据结构
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MqttClient::loadDataStruct("assets/config/registeraddr.json");
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REGAddr::load("assets/config/regaddrs.json");
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// 设备读取寄存器的地址定义
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Device::loadParamAddr("assets/config/monitoraddr.json");
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Device::loadParamAddr("assets/config/regaddrsShow.json");
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// 设置数据库配置
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DaoEntity::setOption(Config::option.database.host,
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@@ -67,49 +68,43 @@ void Application::runThreadDevice()
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void Application::runThreadMain()
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{
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std::string addr = "tcp://localhost:1883";
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//mqttCli = std::make_shared<MqttClient>();
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//mqttCli->init(addr, "ESS", "", "", {});
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while (!isQuit)
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{
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if (!this->isInit) // 初始化失败
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{
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std::this_thread::sleep_for(std::chrono::milliseconds(10000));
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std::this_thread::sleep_for(std::chrono::seconds(10));
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this->isInit = appdata.init();
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if (!this->isInit) { continue; }
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}
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static TimeTick ttMqtt;
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// 检查 场站的 MQTT 连接
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if (ttMqtt.elapse(10))
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static TimeTick ttMqtt(1); // 检查 场站的 MQTT 连接
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if (ttMqtt.elapse(20))
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{
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auto& optionMqtt = Config::option.mqtt;
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if (!optionMqtt.host.empty())
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{
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for (auto& item : appdata.mapStation)
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{
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if (item.second)
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auto& station = item.second;
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if (station && station->isOpen)
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{
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// 该函数检查连接状态,若已经连接,则无操作;若未连接,则进行连接操作
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item.second->initMqtt();
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//item.second->polling();
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// 召测
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item.second->polling();
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}
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}
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}
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}
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///////////////////////////////////////////////////////////////////////////////////////////
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/// 召测
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static TimeTick tt1;
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if (tt1.elapse(10))
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{
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static TimeTick ttData(1); // 检查数据
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if (ttData.elapse(20))
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{
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//appdata.initFromDB();
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}
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std::this_thread::sleep_for(std::chrono::milliseconds(10));
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}
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}
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void Application::runThreadStat()
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{
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int nCachePos = 0;
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@@ -125,6 +120,7 @@ void Application::runThreadStat()
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{
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nCachePos = n;
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std::string dt = Utils::dateStr(tDate);
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// // 设备历史数据(电压、电流、功率),存储到 history_day
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for (auto item: appdata.mapStation)
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{
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item.second->writeRuntimeData(dt, nCachePos);
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@@ -135,15 +131,12 @@ void Application::runThreadStat()
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//spdlog::info("保存历史数据倒计时: {}", 600 - offset);
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}
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// 统计计算,存储到 stat_station
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for (auto& station : appdata.mapStation)
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{
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}
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std::this_thread::sleep_for(std::chrono::milliseconds(1000));
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std::this_thread::sleep_for(std::chrono::seconds(1));
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}
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}
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@@ -1,62 +1,57 @@
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#include "DataStruct.h"
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#include "common/JsonN.h"
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#include "common/Utils.h"
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void EMSYX::fromJson(const std::string& str)
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std::string REGAddrOffset(std::string addr, int offset)
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{
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njson jsonroot;
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auto ret = JSON::parse(str, jsonroot);
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if (!ret) { return; }
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JSON::read(jsonroot, "mcu", mcu);
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JSON::read(jsonroot, "pcs", pcs);
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JSON::read(jsonroot, "electMeterMainPoint", electMeterMainPoint);
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JSON::read(jsonroot, "electMeter", electMeter);
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JSON::read(jsonroot, "fireSystem", fireSystem);
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JSON::read(jsonroot, "ups", ups);
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JSON::read(jsonroot, "temHumMainPoint", temHumMainPoint);
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JSON::read(jsonroot, "temHum", temHum);
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JSON::read(jsonroot, "aircMainPoint", aircMainPoint);
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JSON::read(jsonroot, "airc", airc);
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JSON::read(jsonroot, "controlDryContact", controlDryContact);
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JSON::read(jsonroot, "statusDryContact", statusDryContact);
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JSON::read(jsonroot, "bcuMain", bcuMain);
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JSON::read(jsonroot, "pcuMain", pcuMain);
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JSON::read(jsonroot, "electMeterMain", electMeterMain);
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JSON::read(jsonroot, "fireSystemMain", fireSystemMain);
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JSON::read(jsonroot, "upsMain", upsMain);
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JSON::read(jsonroot, "temHumMain", temHumMain);
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JSON::read(jsonroot, "aircMain", aircMain);
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JSON::read(jsonroot, "emu", emu);
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JSON::read(jsonroot, "chillerMain", chillerMain);
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JSON::read(jsonroot, "chillerMainPoint", chillerMainPoint);
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JSON::read(jsonroot, "chiller", chiller);
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unsigned int val;
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std::stringstream ss;
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ss << std::hex << addr;
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ss >> val;
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return Utils::toHexStr(val + offset);
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}
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std::string EMSYX::toJson()
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std::map<std::string, std::map<std::string, RegAddrUnit>> REGAddr::s_mapReg;
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void REGAddr::load(std::string filename)
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{
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njson jsonroot;
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jsonroot["bms"] = bms;
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jsonroot["bcu"] = bcu;
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jsonroot["mcu"] = mcu;
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jsonroot["pcs"] = pcs;
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jsonroot["electMeterMainPoint"] = electMeterMainPoint;
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jsonroot["electMeter"] = electMeter;
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jsonroot["fireSystem"] = fireSystem;
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jsonroot["ups"] = ups;
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jsonroot["temHumMainPoint"] = temHumMainPoint;
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jsonroot["temHum"] = temHum;
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jsonroot["aircMainPoint"] = aircMainPoint;
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jsonroot["airc"] = airc;
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jsonroot["controlDryContact"] = controlDryContact;
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jsonroot["statusDryContact"] = statusDryContact;
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jsonroot["bcuMain"] = bcuMain;
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jsonroot["pcuMain"] = pcuMain;
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jsonroot["electMeterMain"] = electMeterMain;
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jsonroot["fireSystemMain"] = fireSystemMain;
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jsonroot["upsMain"] = upsMain;
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jsonroot["temHumMain"] = temHumMain;
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jsonroot["aircMain"] = aircMain;
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jsonroot["emu"] = emu;
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jsonroot["chillerMain"] = chillerMain;
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jsonroot["chillerMainPoint"] = chillerMainPoint;
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jsonroot["chiller"] = chiller;
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return jsonroot.dump();
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njson json;
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JSON::load(filename, json);
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// 遍历 JSON 对象
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for (auto& jsonitem : json.items())
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{
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std::string name = jsonitem.key();
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auto& jsonnodeItem = jsonitem.value();
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//int count = jsonnodeItem["count"];
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auto jsonaddrs = jsonnodeItem["addr"];
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auto& mapItem = s_mapReg[name];
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int size = 0;
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for (int i = 0; i<2; ++i)
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{
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for (auto& item : jsonaddrs)
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{
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std::string addr = item["key"];
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mapItem[addr] = RegAddrUnit(addr, item["datatype"], item["remark"]);
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}
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}
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}
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//for (auto& item: s_mapReg["EMS_YC"])
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//{
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// auto& unit = item.second;
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// spdlog::info("[{}]={}, {}", unit.key, unit.datatype, unit.remark);
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//}
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}
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std::map<std::string, RegAddrUnit>* REGAddr::getRegMap(std::string name)
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{
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auto iter = s_mapReg.find(name);
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if (iter != s_mapReg.end())
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{
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return &(iter->second);
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}
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return nullptr;
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}
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@@ -1,975 +1,31 @@
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#pragma
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#include <cstdint>
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#include "common/JsonN.h"
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#pragma once
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#include <map>
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#include <string>
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// EMS遥信
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struct EMSYX
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struct RegAddrUnit
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{
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uint16_t bms; //BMS(电池堆)通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint64_t bcu; //BCU(电池簇)通信状态 R uint64 "0:正常 1:故障" bit位从低到高分别对应1~64
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uint16_t mcu; //PCU(主控)通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint64_t pcs; //PCS(模块)通信状态 R uint64 "0:正常 1:故障" bit位从低到高分别对应1~64
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uint16_t electMeterMainPoint; //电表总接点通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint32_t electMeter; //电表通信状态 R uint32 "0:正常 1:故障" bit位从低到高分别对应1~32
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uint16_t fireSystem; //消防通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint16_t ups; //UPS通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint16_t temHumMainPoint; //温湿度总接点通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint32_t temHum; //温湿度通信状态 R uint32 "0:正常 1:故障" bit位从低到高分别对应1~32
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uint16_t aircMainPoint; //空调总接点通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint32_t airc; //空调通信状态 R uint32 "0:正常 1:故障" bit位从低到高分别对应1~32
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uint16_t controlDryContact; //控制干接点(配电系统)状态 R uint16 "0:开路 1:闭合" bit位从低到高分别对应1~16
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uint16_t statusDryContact; //状态干接点(配电系统)状态 R uint16 "0:开路 1:闭合" bit位从低到高分别对应1~16
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uint16_t bcuMain; //BCU总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t pcuMain; //PCU总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t electMeterMain; //电表总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t fireSystemMain; //消防总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t upsMain; //UPS总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t temHumMain; //温湿度总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t aircMain; //空调总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t emu; //EMU通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t chillerMain; //冷机总通信状态 R uint16 0:正常 1:告警 2:故障
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uint16_t chillerMainPoint; //冷机总接点通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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uint16_t chiller; //冷机通信状态 R uint16 "0:正常 1:故障" bit位从低到高分别对应1~16
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//预留
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//预留
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uint16_t energyStatus; //判断总表的三相总有功 < -5.0fkW 充电 >5.0fkW放电 否则停机 R uint16 0:充电 1 : 放电 2 : 停机 储能状态
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std::string key;
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std::string datatype;
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int bytes {0};
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std::string remark;
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int ratio {1};
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void fromJson(const std::string& str);
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std::string toJson();
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RegAddrUnit() {}
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RegAddrUnit(std::string key, std::string datatype, std::string remark)
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: key(key), datatype(datatype), remark(remark)
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{
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if (datatype == "uint16" || datatype == "int16") { bytes = 1; }
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else if (datatype == "uint32" || datatype == "int32") { bytes = 2; }
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}
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};
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// EMS遥测
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struct EMSYC
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class REGAddr
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{
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//BMS(电池堆)个数 R uint16 1 0x1001
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//BCU通道个数 R uint16 1~2 0x1002
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//BCU(电池簇)个数 R uint16 1~40 0x1003
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//PCU(主控)个数 R uint16 1~4 0x1004
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//PCU通道个数 R uint16 1~4 0x1005
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//PCS(模块)个数 R uint16 1~40 0x1006
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//电表通道个数 R uint16 1 0x1007
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//电表个数 R uint16 1~10 0x1008
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//消防通道个数 R uint16 1~10 0x1009
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//消防个数 R uint16 1~10 0x100A
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//UPS通道个数 R uint16 1~10 0x100B
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//UPS个数 R uint16 1~10 0x100C
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//温湿度通道个数 R uint16 1 0x100D
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//温湿度个数 R uint16 1~10 0x100E
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//空调通道个数 R uint16 1 0x100F
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//空调个数 R uint16 1~10 0x1010
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//控制干接点(配电系统)个数 R uint16 16 0x1011
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//状态干接点(配电系统)个数 R uint16 16 0x1012
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//预留 0x1013~0x1071
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//预留
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//预留
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//预留
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//预留
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//预留
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//预留
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//预留
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//预留
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//系统最大可充电功率 R uint32 1KW Pcu数据 0x1072 储能侧
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//系统最大可放电功率 R uint32 1KW 0x1074
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//储能母线电压 R uint32 0.1V 堆数据 0x1076
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//储能母线电流 R int32 0.1A 0x1078
|
||||
//储能系统SOC R uint16 0.1 0x107A
|
||||
//储能系统SOH R uint16 0.1 0x107B
|
||||
//电流变比 R uint16 电表总表数据 0x107C
|
||||
//电压变比 R uint16 0x107D
|
||||
//A相电压 R uint32 1V 0x107E
|
||||
//B相电压 R uint32 1V 0x1080
|
||||
//C相电压 R uint32 1V 0x1082
|
||||
//A相电流 R int32 1A 0x1084
|
||||
//B相电流 R int32 1A 0x1086
|
||||
//C相电流 R int32 1A 0x1088
|
||||
//AB相电压 R uint32 1V 0x108A
|
||||
//BC相电压 R uint32 1V 0x108C
|
||||
//CA相电压 R uint32 1V 0x108E
|
||||
//A相有功功率 R int32 1kW 0x1090
|
||||
//B相有功功率 R int32 1kW 0x1092
|
||||
//C相有功功率 R int32 1kW 0x1094
|
||||
//三相总有功功率 R int32 1kW 0x1096
|
||||
//当前控制功率 R int32 0.1kW 堆数据 0x1098
|
||||
//负荷率 R uint32 1% 台区控制策略数据 0不拿 大于0 默认拿第一个 0x109A
|
||||
//三相不平衡度 R uint32 1% 0x109C
|
||||
//功率因素比率 R uint32 1% 0x109E
|
||||
//进线开关柜功率 R int32 1kW 并网口电表 0x10A0
|
||||
//用户关口表功率 R int32 1kW 并网口电表 0x10A2
|
||||
//预留 0x10A4~0x1103
|
||||
//预留
|
||||
//正向总有功总需量 R int32 1kW 0x1104 收益 总表
|
||||
//尖段电价 R uint32 1RMB 0x1106
|
||||
//峰段电价 R uint32 1RMB 0x1108
|
||||
//平段电价 R uint32 1RMB 0x110A
|
||||
//谷段电价 R uint32 1RMB 0x110C
|
||||
//日充电电量 R uint32 1kWh 0x110E
|
||||
//日放电电量 R uint32 1kWh 0x1110
|
||||
//日充电费用 R uint32 1RMB 0x1112
|
||||
//日放电费用 R uint32 1RMB 0x1114
|
||||
//日收益 R int32 1RMB 0x1116
|
||||
//日正向尖有功电能 R uint32 1kWh 0x1118
|
||||
//日正向峰有功电能 R uint32 1kWh 0x111A
|
||||
//日正向平有功电能 R uint32 1kWh 0x111C
|
||||
//日正向谷有功电能 R uint32 1kWh 0x111E
|
||||
//日正向总有功电能 R uint32 1kWh 0x1120
|
||||
//日反向尖有功电能 R uint32 1kWh 0x1122
|
||||
//日反向峰有功电能 R uint32 1kWh 0x1124
|
||||
//日反向平有功电能 R uint32 1kWh 0x1126
|
||||
//日反向谷有功电能 R uint32 1kWh 0x1128
|
||||
//日反向总有功电能 R uint32 1kWh 0x112A
|
||||
//总充电电量 R uint32 1kWh 0x112C
|
||||
//总放电电量 R uint32 1kWh 0x112E
|
||||
//总充电费用 R uint32 1RMB 0x1130
|
||||
//总放电费用 R uint32 1RMB 0x1132
|
||||
//总收益 R int32 1RMB 0x1134
|
||||
//总正向尖有功电能 R uint32 1kWh 0x1136
|
||||
//总正向峰有功电能 R uint32 1kWh 0x1138
|
||||
//总正向平有功电能 R uint32 1kWh 0x113A
|
||||
//总正向谷有功电能 R uint32 1kWh 0x113C
|
||||
//总正向总有功电能 R uint32 1kWh 0x113E
|
||||
//总反向尖有功电能 R uint32 1kWh 0x1140
|
||||
//总反向峰有功电能 R uint32 1kWh 0x1142
|
||||
//总反向平有功电能 R uint32 1kWh 0x1144
|
||||
//总反向谷有功电能 R uint32 1kWh 0x1146
|
||||
//总反向总有功电能 R uint32 1kWh 0x1148
|
||||
//预留 0x114A~0x11AD
|
||||
//预留
|
||||
//预留
|
||||
//交流A相电压 R int16 1V 0x11AE 电网侧 并网口电表
|
||||
//交流B相电压 R int16 1V 0x11AF
|
||||
//交流C相电压 R int16 1V 0x11B0
|
||||
//交流A相频率 R int16 1Hz 0x11B1 Pcs
|
||||
//交流B相频率 R int16 1Hz 0x11B2
|
||||
//交流C相频率 R int16 1Hz 0x11B3
|
||||
//总直流功率 R int32 1kW 0x11B4 堆
|
||||
//总直流电压 R uint32 0.1V 0x11B6
|
||||
//总直流电流 R int32 0.1A 0x11B8
|
||||
//预留 0x11B9~0x121A
|
||||
//预留
|
||||
//预留
|
||||
//储能系统温度 R int16 0.1℃ 堆里面单体温度最高 0x121B 充放电运行状态
|
||||
//储能充放电时段hh R uint16 时 0x01 0x121C 普通控制功率取 默认给0
|
||||
//储能充放电时段mm R uint16 分 0x01 0x121D
|
||||
//储能充放电时段ss R uint16 秒 0x01 0x121E
|
||||
//储能系统各时段功率 R int16 1kW 0x01 0x121F
|
||||
};
|
||||
public:
|
||||
static std::map<std::string, std::map<std::string, RegAddrUnit>> s_mapReg;
|
||||
|
||||
// EMS遥调
|
||||
struct EMSYT
|
||||
{
|
||||
//EMS工作模式 RW uint16 - "0:无效 1:本地控制模式, EMS不接受平台调控 2 : 平台控制模式, EMS接收平台调控指令" 0x0001
|
||||
//有功功率 RW int16 kW "并网恒功率模式下交流侧功率值: <0 : 充电功率 0 : 静置 >0 : 放电功率" 0x0002
|
||||
//PCS开关机 RW uint16 - "0: 关机 1 : 开机" 软件开关机 0x0003
|
||||
//主控对象 RW uint16 "储能遥控对象:0:无效 1:华云 2:轻舟" 0x0004
|
||||
//A相有功功率 RW int16 1kW 0x0005
|
||||
//B相有功功率 RW int16 1kW 0x0006
|
||||
//C相有功功率 RW int16 1kW 0x0007
|
||||
//三相总有功功率 RW int16 1kW 0x0008
|
||||
//A相无功功率 RW int16 1kVar 0x0009
|
||||
//B相无功功率 RW int16 1kVar 0x000A
|
||||
//C相无功功率 RW int16 1kVar 0x000B
|
||||
//三相总无功功率 RW int16 1kVar 0x000C
|
||||
//A相电流 RW int16 0.01A 在使用的时候除以100转float 0x000D
|
||||
//B相电流 RW int16 0.01A 0x000E
|
||||
//C相电流 RW int16 0.01A 0x000F
|
||||
//A相电压 RW uint16 1V 0x0010
|
||||
//B相电压 RW uint16 1V 0x0011
|
||||
//C相电压 RW uint16 1V 0x0012
|
||||
//A相交流功率因数 RW int16 0.01 在使用的时候除以100转float 0x0013
|
||||
//B相交流功率因数 RW int16 0.01 0x0014
|
||||
//C相交流功率因数 RW int16 0.01 0x0015
|
||||
//A相视在功率 RW int16 1kVA 0x0016
|
||||
//B相视在功率 RW int16 1kVA 0x0017
|
||||
//C相视在功率 RW int16 1kVA 0x0018
|
||||
//正向总有功总需量 RW int16 1kW 0x0019
|
||||
//数据有效性 RW int16 0无效 1有效 0x001A
|
||||
//EMS工作模式 RW uint16 - "0:无效 1:本地控制模式, EMS不接受平台调控 2 : 平台控制模式, EMS接收平台调控指令" 2413项目需求 0x001B
|
||||
//有功功率 RW uint16 kW "并网恒功率模式下交流侧功率值:功率绝对值 没有正负" 2413项目需求 0x001C
|
||||
//充放电类型 RW uint16 - "0: 关机 1 : 充电 2 : 放电 3 : 待机" "2413项目需求充放电类型" 0x001D
|
||||
//最大SOC RW uint16 2413项目需求 0x001E
|
||||
//最小SOC RW uint16 2413项目需求 0x001F
|
||||
//自动并离网 RW uint16 "0:手动 1:自动" "2332项目需求(若为自动,则通过主控进行并离网切换)" 0x0020
|
||||
//并网离网 RW uint16 "0:并网 1:离网" "2332项目需求(该下发参数的前提为手动模式下)" 0x0021
|
||||
};
|
||||
static void load(std::string filename);
|
||||
|
||||
|
||||
// PCU遥信
|
||||
struct PCUYX
|
||||
{
|
||||
//所属通道号 R uint16 1~4 0x1001
|
||||
//故障状态 R uint16 1故障,0正常 0x1002
|
||||
//告警状态 R uint16 1告警,0正常 0x1003
|
||||
//设备在线 R uint16 1在线,0无效 0x1004
|
||||
//本地远程 R uint16 1本地,0远程 0x1005
|
||||
//启停状态 R uint16 1开机,0关机 0x1006
|
||||
//电网状态 R uint16 1离网,0并网 0x1007
|
||||
//模块状态 R uint16 1开机,0待机 0x1008
|
||||
//EPO急停 R uint16 1故障,0正常 0x1009
|
||||
//防雷器异常 R uint16 1告警,0正常 0x100A
|
||||
//负载电压反序 R uint16 1故障,0正常 0x100B
|
||||
//市电电压反序 R uint16 1故障,0正常 0x100C
|
||||
//输出相反序 R uint16 1故障,0正常 0x100D
|
||||
//过载告警 R uint16 1告警,0正常 0x100E
|
||||
//过载超时 R uint16 1故障,0正常 0x100F
|
||||
//交流过流保护 R uint16 1故障,0正常 0x1010
|
||||
//逆变电压异常 R uint16 1故障,0正常 0x1011
|
||||
//内部串口异常 R uint16 1故障,0正常 0x1012
|
||||
//485通信故障 R uint16 1故障,0正常 0x1013
|
||||
//CAN通信故障 R uint16 1故障,0正常 0x1014
|
||||
//E2PROM故障 R uint16 1故障,0正常 0x1015
|
||||
//电网过压 R uint16 1故障,0正常 0x1016
|
||||
//电网欠压 R uint16 1故障,0正常 0x1017
|
||||
//电网过频 R uint16 1故障,0正常 0x1018
|
||||
//电网欠频 R uint16 1故障,0正常 0x1019
|
||||
//电网快检综合异常 R uint16 1故障,0正常 0x101A
|
||||
//电网幅值快检异常 R uint16 1故障,0正常 0x101B
|
||||
//电网拖尾异常 R uint16 1故障,0正常 0x101C
|
||||
//消防输入信号NO R uint16 1闭合,0断开 0x101D
|
||||
//急停按钮信号NC R uint16 1急停,0正常 0x101E
|
||||
//避雷器NC R uint16 1故障,0正常 0x101F
|
||||
//避雷器断路器NC R uint16 1故障,0正常 0x1020
|
||||
//PCS总断路器NC R uint16 1闭合,0断开 0x1021
|
||||
//电操状态NO R uint16 1闭合,0断开 0x1022
|
||||
//远程关机NO R uint16 1开机,0无效 0x1023
|
||||
//远程开机NO R uint16 1开机,0无效 0x1024
|
||||
//BA故障信号NO R uint16 1故障,0正常 0x1025
|
||||
//PCS_01状态 R uint16 1在线,0掉线 0x1026
|
||||
//PCS_02状态 R uint16 1在线,0掉线 0x1027
|
||||
//PCS_03状态 R uint16 1在线,0掉线 0x1028
|
||||
//PCS_04状态 R uint16 1在线,0掉线 0x1029
|
||||
//PCS_05状态 R uint16 1在线,0掉线 0x102A
|
||||
//PCS_06状态 R uint16 1在线,0掉线 0x102B
|
||||
//PCS_07状态 R uint16 1在线,0掉线 0x102C
|
||||
//PCS_09状态 R uint16 1在线,0掉线 0x102D
|
||||
//PCS_10状态 R uint16 1在线,0掉线 0x102E
|
||||
//PCS_01下发设置 R uint16 1故障,0正常 0x102F
|
||||
//PCS_02下发设置 R uint16 1故障,0正常 0x1030
|
||||
//PCS_03下发设置 R uint16 1故障,0正常 0x1031
|
||||
//PCS_04下发设置 R uint16 1故障,0正常 0x1032
|
||||
//PCS_05下发设置 R uint16 1故障,0正常 0x1033
|
||||
//PCS_06下发设置 R uint16 1故障,0正常 0x1034
|
||||
//PCS_07下发设置 R uint16 1故障,0正常 0x1035
|
||||
//PCS_08下发设置 R uint16 1故障,0正常 0x1036
|
||||
//PCS_09下发设置 R uint16 1故障,0正常 0x1037
|
||||
//PCS_10下发设置 R uint16 1:故障,0正常 0x1038
|
||||
//内部DSP通信故障 R uint16 1 : 故障,0正常 0x1039
|
||||
//BMS CAN通信故障 R uint16 1 : 故障,0正常 0x103A
|
||||
//下发设置失败 R uint16 1 : 故障,0正常 0x103B
|
||||
};
|
||||
|
||||
// PCU 遥测
|
||||
struct PCUYC
|
||||
{
|
||||
//所属通道号 R uint16 1~4 0x0001
|
||||
//充电功率最大许可 R uint32 1KW 0x0002
|
||||
//放电功率最大许可 R uint32 1KW 0x0004
|
||||
//交流日总充电量 R uint32 1KWh 0x0006
|
||||
//交流日总放电量 R uint32 1KWh 0x0008
|
||||
//交流总充电量 R uint32 1KWh 0x000A
|
||||
//交流总放电量 R uint32 1KWh 0x000C
|
||||
//有功功率期望值 R int16 1KW 0x000E
|
||||
//无功功率期望值 R int16 1kVar 0x000F
|
||||
//PCS侧线电压VAB R int16 1v 0x0010
|
||||
//PCS侧线电压VBC R int16 1v 0x0011
|
||||
//PCS侧线电压VCA R int16 1v 0x0012
|
||||
//PCS侧线A相电压 R int16 1v 0x0013
|
||||
//PCS侧线B相电压 R int16 1v 0x0014
|
||||
//PCS侧线C相电压 R int16 1v 0x0015
|
||||
//PCS侧A相频率 R int16 1Hz 0x0016
|
||||
//PCS侧B相频率 R int16 1Hz 0x0017
|
||||
//PCS侧C相频率 R int16 1Hz 0x0018
|
||||
//PCS侧功率因数A R int16 1 0x0019
|
||||
//PCS侧功率因数B R int16 1 0x001A
|
||||
//PCS侧功率因数C R int16 1 0x001B
|
||||
//PCS侧相电流A R int16 1A 0x001C
|
||||
//PCS侧相电流B R int16 1A 0x001D
|
||||
//PCS侧相电流C R int16 1A 0x001E
|
||||
//PCS侧有功功率A R int16 1kW 0x001F
|
||||
//PCS侧有功功率B R int16 1kW 0x0020
|
||||
//PCS侧有功功率C R int16 1kW 0x0021
|
||||
//PCS侧无功功率A R int16 1kVar 0x0022
|
||||
//PCS侧无功功率B R int16 1kVar 0x0023
|
||||
//PCS侧无功功率C R int16 1kVar 0x0024
|
||||
//PCS侧视在功率A R int16 1kVar 0x0025
|
||||
//PCS侧视在功率B R int16 1kVar 0x0026
|
||||
//PCS侧视在功率C R int16 1kVar 0x0027
|
||||
//PCS侧三相总有功功率 R int16 1kW 0x0028
|
||||
//PCS侧三相总无功功率 R int16 1kVar 0x0029
|
||||
//PCS侧三相总视在功率 R int16 1kVA 0x002A
|
||||
//PCS侧三相总功率因数 R int16 1 0x002B
|
||||
//PCU模块温度 R int16 1℃ 0x002C
|
||||
//外部温度NTC1 R int16 1℃ 0x002D
|
||||
//外部温度NTC2 R int16 1℃ 0x002E
|
||||
//外部温度NTC3 R int16 1℃ 0x002F
|
||||
//台区负载侧A相电流 R int16 1A 0x0030
|
||||
//台区负载侧B相电流 R int16 1A 0x0031
|
||||
//台区负载侧C相电流 R int16 1A 0x0032
|
||||
//台区负载侧A相有功功率 R int16 1kW 0x0033
|
||||
//台区负载侧B相有功功率 R int16 1kW 0x0034
|
||||
//台区负载侧C相有功功率 R int16 1kW 0x0035
|
||||
//台区负载侧总有功功率 R int16 1kW 0x0036
|
||||
//台区负载侧A相无功功率 R int16 1kVar 0x0037
|
||||
//台区负载侧B相无功功率 R int16 1kVar 0x0038
|
||||
//台区负载侧C相无功功率 R int16 1kVar 0x0039
|
||||
//台区负载侧总无功功率 R int16 1kVar 0x003A
|
||||
//台区负载侧A相视在功率 R int16 1kVA 0x003B
|
||||
//台区负载侧B相视在功率 R int16 1kVA 0x003C
|
||||
//台区负载侧C相视在功率 R int16 1kVA 0x003D
|
||||
//台区负载侧总视在功率 R int16 1kVA 0x003E
|
||||
//台区负载侧A相功率因数 R int16 1 0x003F
|
||||
//台区负载侧B相功率因数 R int16 1 0x0040
|
||||
//台区负载侧C相功率因数 R int16 1 0x0041
|
||||
//台区负载侧总功率因数 R int16 1 0x0042
|
||||
//负载侧线电压AB R int16 1V 0x0043
|
||||
//负载侧线电压BC R int16 1V 0x0044
|
||||
//负载侧线电压CA R int16 1V 0x0045
|
||||
//负载侧相电压AN R int16 1V 0x0046
|
||||
//负载侧相电压BN R int16 1V 0x0047
|
||||
//负载侧相电压CN R int16 1V 0x0048
|
||||
//负载侧A功率因素 R int16 1 0x0049
|
||||
//负载侧B功率因素 R int16 1 0x004A
|
||||
//负载侧C功率因素 R int16 1 0x004B
|
||||
//负载侧A视在功率 R int16 1kVA 0x004C
|
||||
//负载侧B视在功率 R int16 1kVA 0x004D
|
||||
//负载侧C视在功率 R int16 1kVA 0x004E
|
||||
};
|
||||
|
||||
// PCS 遥信
|
||||
struct PCSYX
|
||||
{
|
||||
//所属主控号 R uint16 1~4 0x1001
|
||||
//所属PCS号 R uint16 1~40 0x1002
|
||||
//故障状态 R uint16 1故障,0正常 0x1003
|
||||
//告警状态 R uint16 1告警,0正常 0x1004
|
||||
//设备在线 R uint16 1在线,0无效 0x1005
|
||||
//禁止充电 R uint16 1禁止,0无效 0x1006
|
||||
//禁止放电 R uint16 1禁止,0无效 0x1007
|
||||
//运行状态 R uint16 1开机,0关机 0x1008
|
||||
//充放状态 R uint16 0:待机, 1:充电, 2:放电, 3:搁置 0x1009
|
||||
//电网状态 R uint16 1离网,0并网 0x100A
|
||||
//逆变供电 R uint16 0禁止,1使能 0x100B
|
||||
//缓启动完成 R uint16 0禁止,1使能 0x100C
|
||||
//主机标志 R uint16 0禁止,1使能 0x100D
|
||||
//并离网状态 R uint16 0:并网, 1:离网 0x100E
|
||||
//同步请求标志 R uint16 0:无效;1:动作 0x100F
|
||||
//绝缘故障 R uint16 1:故障,0正常 0x1010
|
||||
//漏电保护 R uint16 1 : 故障,0正常 0x1011
|
||||
//直流过压 R uint16 1 : 故障,0正常 0x1012
|
||||
//市电幅值异常 R uint16 1 : 故障,0正常 0x1013
|
||||
//市电相序异常 R uint16 1 : 故障,0正常 0x1014
|
||||
//温度开关异常 R uint16 1 : 故障,0正常 0x1015
|
||||
//市电频率异常 R uint16 1 : 故障,0正常 0x1016
|
||||
//IGBT过温 R uint16 1 : 故障,0正常 0x1017
|
||||
//交流接地故障 R uint16 1 : 故障,0正常 0x1018
|
||||
//逆变过流异常 R uint16 1 : 故障,0正常 0x1019
|
||||
//直流缓起故障 R uint16 1 : 故障,0正常 0x101A
|
||||
//直流主继电器故障 R uint16 1 : 故障,0正常 0x101B
|
||||
//风机异常 R uint16 1 : 故障,0正常 0x101C
|
||||
//主接触器异常 R uint16 1 : 故障,0正常 0x101D
|
||||
//均浮充切换超时 R uint16 1 : 故障,0正常 0x101E
|
||||
//硬件故障 R uint16 1 : 故障,0正常 0x101F
|
||||
//机内过温 R uint16 1 : 故障,0正常 0x1020
|
||||
//软启动故障 R uint16 1 : 故障,0正常 0x1021
|
||||
//触摸屏通讯故障 R uint16 1 : 故障,0正常 0x1022
|
||||
//防雷器故障 R uint16 1 : 故障,0正常 0x1023
|
||||
//急停故障 R uint16 1 : 故障,0正常 0x1024
|
||||
//BMS系统故障 R uint16 1 : 故障,0正常 0x1025
|
||||
//BMS通讯故障 R uint16 1 : 故障,0正常 0x1026
|
||||
//BMS干接点通讯故障 R uint16 1 : 故障,0正常 0x1027
|
||||
//远程通讯故障 R uint16 1 : 故障,0正常 0x1028
|
||||
//门禁告警 R uint16 1 : 故障,0正常 0x1029
|
||||
//锁相异常 R uint16 1 : 故障,0正常 0x102A
|
||||
//IGBT过温告警 R uint16 1 : 故障,0正常 0x102B
|
||||
//硬件过流保护 R uint16 1 : 故障,0正常 0x102C
|
||||
//驱动故障 R uint16 1 : 故障,0正常 0x102D
|
||||
//ID冲突 R uint16 1 : 故障,0正常 0x102E
|
||||
//电池过压 R uint16 1 : 故障,0正常 0x102F
|
||||
//电池欠压 R uint16 1 : 故障,0正常 0x1030
|
||||
//直流过流保护 R uint16 1 : 故障,0正常 0x1031
|
||||
//输出电压异常 R uint16 1 : 故障,0正常 0x1032
|
||||
//离网输出电压不符合 R uint16 1 : 故障,0正常 0x1033
|
||||
//输出过载保护 R uint16 1 : 故障,0正常 0x1034
|
||||
//输出短路保护 R uint16 1 : 故障,0正常 0x1035
|
||||
//并机通信异常 R uint16 1 : 故障,0正常 0x1036
|
||||
//电池保险异常 R uint16 1 : 故障,0正常 0x1037
|
||||
//电池重载低压 R uint16 1 : 故障,0正常 0x1038
|
||||
//电池低压告警 R uint16 1 : 故障,0正常 0x1039
|
||||
//一拖二压差过大 R uint16 1 : 故障,0正常 0x103A
|
||||
//电池反接故障 R uint16 1 : 故障,0正常 0x103B
|
||||
//电池电压异常 R uint16 1 : 故障,0正常 0x103C
|
||||
//过载告警 R uint16 1 : 故障,0正常 0x103D
|
||||
//外部接触器异常 R uint16 1 : 故障,0正常 0x103E
|
||||
//IGBT温度传感器异常 R uint16 1 : 故障,0正常 0x103F
|
||||
//整机温度传感器异常 R uint16 1 : 故障,0正常 0x1040
|
||||
//市电CT异常 R uint16 1 : 故障,0正常 0x1041
|
||||
//逆变电流三相不平衡 R uint16 1 : 故障,0正常 0x1042
|
||||
//逆变电流直流分量异常 R uint16 1 : 故障,0正常 0x1043
|
||||
//母线不平衡 R uint16 1 : 故障,0正常 0x1044
|
||||
//逆变电压直流分量异常 R uint16 1 : 故障,0正常 0x1045
|
||||
//主接触器控制异常 R uint16 1 : 故障,0正常 0x1046
|
||||
//逆变电压控制异常 R uint16 1 : 故障,0正常 0x1047
|
||||
//直流霍尔异常 R uint16 1 : 故障,0正常 0x1048
|
||||
//电池单体过压 R uint16 1 : 故障,0正常 0x1049
|
||||
//电池单体欠压 R uint16 1 : 故障,0正常 0x104A
|
||||
//电网过压 R uint16 1 : 故障,0正常 0x104B
|
||||
//电网欠压 R uint16 1 : 故障,0正常 0x104C
|
||||
//电网过频 R uint16 1 : 故障,0正常 0x104D
|
||||
//电网欠频 R uint16 1 : 故障,0正常 0x104E
|
||||
//市电不平衡 R uint16 1 : 故障,0正常 0x104F
|
||||
//参数设置不匹配 R uint16 1 : 故障,0正常 0x1050
|
||||
//SPI通信异常 R uint16 1 : 故障,0正常 0x1051
|
||||
//SCI通信异常 R uint16 1 : 故障,0正常 0x1052
|
||||
//IIC通信异常 R uint16 1 : 故障,0正常 0x1053
|
||||
//Xintf通信异常 R uint16 1 : 故障,0正常 0x1054
|
||||
//零偏校准异常 R uint16 1 : 故障,0正常 0x1055
|
||||
//烟雾告警 R uint16 1 : 故障,0正常 0x1056
|
||||
//无电池组故障 R uint16 1异常,0正常 0x1057
|
||||
//环温降频 R uint16 1异常,0正常 0x1058
|
||||
//交流过载 R uint16 1异常,0正常 0x1059
|
||||
//采样异常 R uint16 1异常,0正常 0x105A
|
||||
//24V辅源故障 R uint16 1异常,0正常 0x105B
|
||||
//直流欠压异常 R uint16 1异常,0正常 0x105C
|
||||
//散热器过温 R uint16 1异常,0正常 0x105D
|
||||
//CAN配置故障 R uint16 1异常,0正常 0x105E
|
||||
//3.3V辅源故障 R uint16 1异常,0正常 0x105F
|
||||
//环境过温 R uint16 1异常,0正常 0x1060
|
||||
//A相IGBT逆变过流 R uint16 1异常,0正常 0x1061
|
||||
//B相IGBT逆变过流 R uint16 1异常,0正常 0x1062
|
||||
//C相IGBT逆变过流 R uint16 1异常,0正常 0x1063
|
||||
};
|
||||
|
||||
// PCS 遥测
|
||||
struct PCSYC
|
||||
{
|
||||
//所属主控号 R uint16 1~4 0x0001
|
||||
//所属PCS号 R uint16 1~40 0x0002
|
||||
//总充电量 R uint32 1kWh 0x0003
|
||||
//总放电量 R uint32 1kWh 0x0005
|
||||
//散热器温度 R int16 1℃ 0x0007
|
||||
//内部温度 R int16 1℃ 0x0008
|
||||
//最大允许充电功率 R int16 0.1kW 0x0009
|
||||
//最大允许放电功率 R int16 0.1kW 0x000A
|
||||
//有功功率期望 R int16 1kWh 0x000B
|
||||
//无功功率期望 R int16 1kVar 0x000C
|
||||
//AB线电压 R int16 1V 0x000D
|
||||
//BC线电压 R int16 1V 0x000E
|
||||
//CA线电压 R int16 1V 0x000F
|
||||
//A相电压 R int16 1V 0x0010
|
||||
//B相电压 R int16 1V 0x0011
|
||||
//C相电压 R int16 1V 0x0012
|
||||
//A相频率 R int16 1Hz 0x0013
|
||||
//B相频率 R int16 1Hz 0x0014
|
||||
//C相频率 R int16 1Hz 0x0015
|
||||
//A相功率因数 R int16 1 0x0016
|
||||
//B相功率因数 R int16 1 0x0017
|
||||
//C相功率因数 R int16 1 0x0018
|
||||
//A相电流 R int16 1A 0x0019
|
||||
//B相电流 R int16 1A 0x001A
|
||||
//C相电流 R int16 1A 0x001B
|
||||
//A相有功功率 R int16 1kW 0x001C
|
||||
//B相有功功率 R int16 1kW 0x001D
|
||||
//C相有功功率 R int16 1kW 0x001E
|
||||
//A相无功功率 R int16 1kVar 0x001F
|
||||
//B相无功功率 R int16 1kVar 0x0020
|
||||
//C相无功功率 R int16 1kVar 0x0021
|
||||
//A相视在功率 R int16 1kVA 0x0022
|
||||
//B相视在功率 R int16 1kVA 0x0023
|
||||
//C相视在功率 R int16 1kVA 0x0024
|
||||
//三相总有功功率 R int16 1kW 0x0025
|
||||
//三相总无功功率 R int16 1kVar 0x0026
|
||||
//三相总视在功率 R int16 1kVA 0x0027
|
||||
//三相总功率因数 R int16 1 0x0028
|
||||
//直流功率 R int16 1kW 0x0029
|
||||
//直流电压 R int16 1V 0x002A
|
||||
//直流电流 R int16 1A 0x002B
|
||||
//充电功率 R int16 1kW 0x002C
|
||||
//放电功率 R int16 1kW 0x002D
|
||||
//PF值 R int16 1 0x002E
|
||||
//UV线/U相电网计量线电压 R int16 1V 0x002F
|
||||
//VW线/V相电网计量线电压 R int16 1V 0x0030
|
||||
//WU线/W相电网计量线电压 R int16 1V 0x0031
|
||||
//U相电网计量电流 R int16 1A 0x0032
|
||||
//V相电网计量电流 R int16 1A 0x0033
|
||||
//W相电网计量电流 R int16 1A 0x0034
|
||||
//正母线电压 R int16 1V 0x0035
|
||||
//可用功率 R int16 1kVA 0x0036
|
||||
//负母线电压 R int16 1V 0x0037
|
||||
//A相IGBT温度 R int16 1℃ 0x0038
|
||||
//B相IGBT温度 R int16 1℃ 0x0039
|
||||
//C相IGBT温度 R int16 1℃ 0x003A
|
||||
//逆变侧AB线电压 R int16 1V 0x003B
|
||||
//逆变侧BC线电压 R int16 1V 0x003C
|
||||
//逆变侧CA线电压 R int16 1V 0x003D
|
||||
//逆变侧A相电压 R int16 1V 0x003E
|
||||
//逆变侧B相电压 R int16 1V 0x003F
|
||||
//逆变侧C相电压 R int16 1V 0x0040
|
||||
//逆变侧A相电流 R int16 1A 0x0041
|
||||
//逆变侧B相电流 R int16 1A 0x0042
|
||||
//逆变侧C相电流 R int16 1A 0x0043
|
||||
//逆变侧A相电流直流分量 R int16 1A 0x0044
|
||||
//逆变侧B相电流直流分量 R int16 1A 0x0045
|
||||
//逆变侧C相电流直流分量 R int16 1A 0x0046
|
||||
//离网频率 R int16 1Hz 0x0047
|
||||
//A相负载量 R int16 1 0x0048
|
||||
//B相负载量 R int16 1 0x0049
|
||||
//C相负载量 R int16 1 0x004A
|
||||
//总负载量 R int16 1 0x004B
|
||||
//逆变侧AB线电压直流分量 R int16 1A 0x004C
|
||||
//逆变侧BC线电压直流分量 R int16 1A 0x004D
|
||||
//逆变侧CA线电压直流分量 R int16 1A 0x004E
|
||||
//在线数量 R int16 0x004F
|
||||
//逆变数量 R int16 0x0050
|
||||
};
|
||||
|
||||
// BMS 遥测
|
||||
struct BMSYC
|
||||
{
|
||||
//SOC R uint16 0.1 0x0001
|
||||
//SOH R uint16 0.1 0x0002
|
||||
//电压 R uint32 0.1V 0x0003
|
||||
//电流 R int32 0.1A 0x0005
|
||||
//可充电量 R uint32 1kWh 0x0007
|
||||
//可放电量 R uint32 1kWh 0x0009
|
||||
//单次可充电量 R uint32 1kWh 0x000B
|
||||
//单次可放电量 R uint32 1kWh 0x000D
|
||||
//堆功率 R int32 1kW 0x000F
|
||||
//充电量累加 R uint32 1kWh 0x0011
|
||||
//放电量累加 R uint32 1kWh 0x0013
|
||||
//簇最大SOC R uint16 0.1 0x0015
|
||||
//簇最小SOC R uint16 0.1 0x0016
|
||||
//簇最大SOC号 R uint16 0x0017
|
||||
//簇最小SOC号 R uint16 0x0018
|
||||
//簇SOC差值 R uint16 0.1 0x0019
|
||||
//簇最大电压 R uint16 0.1V 0x001A
|
||||
//簇最小电压 R uint16 0.1V 0x001B
|
||||
//簇最大电压号 R uint16 0x001C
|
||||
//簇最小电压号 R uint16 0x001D
|
||||
//簇电压差值 R uint16 0.1V 0x001E
|
||||
//单体最大电压簇号 R uint16 0x001F
|
||||
//单体最大电压节号 R uint16 0x0020
|
||||
//单体最大电压 R uint16 mV 0x0021
|
||||
//单体最小电压簇号 R uint16 0x0022
|
||||
//单体最小电压节号 R uint16 0x0023
|
||||
//单体最小电压 R uint16 mV 0x0024
|
||||
//单体平均电压 R uint16 mV 0x0025
|
||||
//单体电压差 R uint16 mV 0x0026
|
||||
//单体最大温度簇号 R uint16 0x0027
|
||||
//单体最大温度节号 R uint16 0x0028
|
||||
//单体最大温度 R int16 0.1℃ 0x0029
|
||||
//单体最小温度簇号 R uint16 0x002A
|
||||
//单体最小温度节号 R uint16 0x002B
|
||||
//单体最小温度 R int16 0.1℃ 0x002C
|
||||
//单体平均温度 R int16 0.1℃ 0x002D
|
||||
//单体温度差 R int16 0.1℃ 0x002E
|
||||
//最大内阻簇号 R uint16 0x002F
|
||||
//最大内阻节号 R uint16 0x0030
|
||||
//最大内阻 R uint16 mΩ 0x0031
|
||||
//最小内阻簇号 R uint16 0x0032
|
||||
//最小内阻节号 R uint16 0x0033
|
||||
//最小内阻 R uint16 mΩ 0x0034
|
||||
//单体平均内阻 R uint16 mΩ 0x0035
|
||||
//单体内阻差 R uint16 mΩ 0x0036
|
||||
//单体最大SOH簇号 R uint16 0x0037
|
||||
//单体最大SOH节号 R uint16 0x0038
|
||||
//单体最大SOH R uint16 0.10% 0x0039
|
||||
//单体最小SOH簇号 R uint16 0x003A
|
||||
//单体最小SOH节号 R uint16 0x003B
|
||||
//单体最小SOH R uint16 0.10% 0x003C
|
||||
//单体最大SOc簇号 R uint16 0x003D
|
||||
//单体最大SOc节号 R uint16 0x003E
|
||||
//单体最大Soc R uint16 0.10% 0x0040
|
||||
//单体最小SOc簇号 R uint16 0x0041
|
||||
//单体最小SOc节号 R uint16 0x0042
|
||||
//单体最小SOc R uint16 0.10% 0x0043
|
||||
//系统剩余最大可充电功率 R uint32 1KW 0x0043
|
||||
//系统剩余最大可放电功率 R uint32 1KW 0x0045
|
||||
//可充电状态 R uint16 1:可充电;0:不可充电 0x0047
|
||||
//可放电状态 R uint16 1:可放电;0:不可放电 0x0048
|
||||
//运行状态 R uint16 运行状态 0-正常 1-告警 2-保护 0x0049
|
||||
//充放电状态 R uint16 0-待机 1-充电 2-放电 0x004A
|
||||
|
||||
};
|
||||
|
||||
|
||||
// BCU遥信
|
||||
struct BCUYX
|
||||
{
|
||||
//所属通道号 R uint16 1~4 0xA001
|
||||
//所属BCU号 R uint16 1~40 0xA002
|
||||
//蓄电池充放电状态 R uint16 "0x11开路
|
||||
//0x22待机
|
||||
//0x33充电
|
||||
//0x44放电" 0xA003
|
||||
//电池组运行状态 R uint16 "0x11跳机
|
||||
//0x22待机
|
||||
//0x33放空
|
||||
//0x44充满
|
||||
//0x55预警
|
||||
//0x66正常" 0xA004
|
||||
//簇DO1状态 R uint16 1:断开 2:闭合 0xA005
|
||||
//簇DO2状态 R uint16 1:断开 2:闭合 0xA006
|
||||
//继电器总正 R uint16 0:断开 1:闭合 2:粘连 0xA007
|
||||
//继电器总负 R uint16 0 : 断开 1:闭合 2:粘连 0xA008
|
||||
//继电器预充 R uint16 0 : 断开 1:闭合 2:粘连 0xA009
|
||||
//继电器bmu供电 R uint16 0 : 断开 1:闭合 2:粘连 0xA00A
|
||||
//整簇总电压过高告警 R uint16 0:正常 1:告警 0xA00B
|
||||
//整簇总电压过低告警 R uint16 0:正常 1:告警 0xA00C
|
||||
//整簇中单体电压过高告警 R uint16 0:正常 1:告警 0xA00D
|
||||
//整簇中单体电压过低告警 R uint16 0:正常 1:告警 0xA00E
|
||||
//整簇中单体电压偏差过大告警 R uint16 0:正常 1:告警 0xA00F
|
||||
//整簇中单体温度偏差过大告警 R uint16 0:正常 1:告警 0xA010
|
||||
//整簇中单体温度过高告警 R uint16 0:正常 1:告警 0xA011
|
||||
//整簇中单体温度过低告警 R uint16 0:正常 1:告警 0xA012
|
||||
//整簇总充电电流过高告警 R uint16 0:正常 1:告警 0xA013
|
||||
//整簇总放电电流过高告警 R uint16 0:正常 1:告警 0xA014
|
||||
//整簇总SOC过高告警 R uint16 0:正常 1:告警 0xA015
|
||||
//整簇总SOC过低告警 R uint16 0:正常 1:告警 0xA016
|
||||
//高压盒主正接触器粘连告警 R uint16 0:正常 1:告警 0xA017
|
||||
//高压盒主正接触器不能吸合告警 R uint16 0:正常 1:告警 0xA018
|
||||
//高压盒主负接触器粘连告警 R uint16 0:正常 1:告警 0xA019
|
||||
//高压盒主负接触器不能吸合告警 R uint16 0:正常 1:告警 0xA01A
|
||||
//高压盒预充接触器粘连告警 R uint16 0:正常 1:告警 0xA01B
|
||||
//高压盒预充接触器不能吸合告警 R uint16 0:正常 1:告警 0xA01C
|
||||
//预充失败告警 R uint16 0:正常 1:告警 0xA01D
|
||||
//BCU电压检测模块出现问题告警 R uint16 0:正常 1:告警 0xA01E
|
||||
//BCU温度检测模块出现问题告警 R uint16 0:正常 1:告警 0xA01F
|
||||
//BCU电流检测模块出现问题告警 R uint16 0:正常 1:告警 0xA020
|
||||
//BCU绝缘检测模块出现问题告警 R uint16 0:正常 1:告警 0xA021
|
||||
//高压盒内总压检测模块出现问题告警 R uint16 0:正常 1:告警 0xA022
|
||||
//高压盒外总压检测模块出现问题告警 R uint16 0:正常 1:告警 0xA023
|
||||
//PCS-CAN通信故障告警 R uint16 0:正常 1:告警 0xA024
|
||||
//高压盒供电电压过高告警 R uint16 0:正常 1:告警 0xA025
|
||||
//绝缘正极故障告警 R uint16 0:正常 1:告警 0xA026
|
||||
//绝缘负极故障告警 R uint16 0:正常 1:告警 0xA027
|
||||
//绝缘中间侧故障告警 R uint16 0:正常 1:告警 0xA028
|
||||
//绝缘故障告警 R uint16 0:正常 1:告警 0xA029
|
||||
//BMU中电压采样线开路告警 R uint16 0:正常 1:告警 0xA02A
|
||||
//BMU中NTC采样线短开路告警 R uint16 0:正常 1:告警 0xA02B
|
||||
//BMU中采样芯片故障告警 R uint16 0:正常 1:告警 0xA02C
|
||||
//BMU中电池温度升高过快告警 R uint16 0:正常 1:告警 0xA02D
|
||||
//BMU中电池内部短路告警 R uint16 0:正常 1:告警 0xA02E
|
||||
//BMU充电均衡模块出现故障告警 R uint16 0:正常 1:告警 0xA02F
|
||||
//BMU放电均衡模块出现故障告警 R uint16 0:正常 1:告警 0xA030
|
||||
//BMU通信故障告警 R uint16 0:正常 1:告警 0xA031
|
||||
//单体内阻过大告警 R uint16 0:正常 1:告警 0xA032
|
||||
//单体内阻过小告警 R uint16 0:正常 1:告警 0xA033
|
||||
//单体内阻阻差过大告警 R uint16 0:正常 1:告警 0xA034
|
||||
//簇内阻过大告警 R uint16 0:正常 1:告警 0xA035
|
||||
//簇内阻过小告警 R uint16 0:正常 1:告警 0xA036
|
||||
//SOC初始化无效告警 R uint16 0:正常 1:告警 0xA037
|
||||
//充电时soc降低故障告警 R uint16 0:正常 1:告警 0xA038
|
||||
//放电时soc升高告警 R uint16 0:正常 1:告警 0xA039
|
||||
//静止时SOC跳变告警 R uint16 0:正常 1:告警 0xA03A
|
||||
//整簇总电压过高保护 R uint16 0:正常 1:保护 0xA03B
|
||||
//整簇总电压过低保护 R uint16 0:正常 1:保护 0xA03C
|
||||
//整簇中单体电压过高保护 R uint16 0:正常 1:保护 0xA03D
|
||||
//整簇中单体电压过低保护 R uint16 0:正常 1:保护 0xA03E
|
||||
//整簇中单体电压偏差过大保护 R uint16 0:正常 1:保护 0xA03F
|
||||
//整簇中单体温度偏差过大保护 R uint16 0:正常 1:保护 0xA040
|
||||
//整簇中单体温度过高保护 R uint16 0:正常 1:保护 0xA041
|
||||
//整簇中单体温度过低保护 R uint16 0:正常 1:保护 0xA042
|
||||
//整簇总充电电流过高保护 R uint16 0:正常 1:保护 0xA043
|
||||
//整簇总放电电流过高保护 R uint16 0:正常 1:保护 0xA044
|
||||
//整簇总SOC过高保护 R uint16 0:正常 1:保护 0xA045
|
||||
//整簇总SOC过低保护 R uint16 0:正常 1:保护 0xA046
|
||||
//高压盒主正接触器粘连保护 R uint16 0:正常 1:保护 0xA047
|
||||
//高压盒主正接触器不能吸合保护 R uint16 0:正常 1:保护 0xA048
|
||||
//高压盒主负接触器粘连保护 R uint16 0:正常 1:保护 0xA049
|
||||
//高压盒主负接触器不能吸合保护 R uint16 0:正常 1:保护 0xA04A
|
||||
//高压盒预充接触器粘连保护 R uint16 0:正常 1:保护 0xA04B
|
||||
//高压盒预充接触器不能吸合保护 R uint16 0:正常 1:保护 0xA04C
|
||||
//预充失败保护 R uint16 0:正常 1:保护 0xA04D
|
||||
//BCU电压检测模块出现问题保护 R uint16 0:正常 1:保护 0xA04E
|
||||
//BCU温度检测模块出现问题保护 R uint16 0:正常 1:保护 0xA04F
|
||||
//BCU电流检测模块出现问题保护 R uint16 0:正常 1:保护 0xA050
|
||||
//BCU绝缘检测模块出现问题保护 R uint16 0:正常 1:保护 0xA051
|
||||
//高压盒内总压检测模块出现问题保护 R uint16 0:正常 1:保护 0xA052
|
||||
//高压盒外总压检测模块出现问题保护 R uint16 0:正常 1:保护 0xA053
|
||||
//PCS-CAN通信故障保护 R uint16 0:正常 1:保护 0xA054
|
||||
//高压盒供电电压过高保护 R uint16 0:正常 1:保护 0xA055
|
||||
//绝缘正极故障保护 R uint16 0:正常 1:保护 0xA056
|
||||
//绝缘负极故障保护 R uint16 0:正常 1:保护 0xA057
|
||||
//绝缘中间侧故障保护 R uint16 0:正常 1:保护 0xA058
|
||||
//绝缘故障保护 R uint16 0:正常 1:保护 0xA059
|
||||
//BMU中电压采样线开路保护 R uint16 0:正常 1:保护 0xA05A
|
||||
//BMU中NTC采样线短开路保护 R uint16 0:正常 1:保护 0xA05B
|
||||
//BMU中采样芯片故障保护 R uint16 0:正常 1:保护 0xA05C
|
||||
//BMU中电池温度升高过快保护 R uint16 0:正常 1:保护 0xA05D
|
||||
//BMU中电池内部短路保护 R uint16 0:正常 1:保护 0xA05E
|
||||
//BMU充电均衡模块出现故障保护 R uint16 0:正常 1:保护 0xA05F
|
||||
//BMU放电均衡模块出现故障保护 R uint16 0:正常 1:保护 0xA060
|
||||
//BMU通信故障保护 R uint16 0:正常 1:保护 0xA061
|
||||
//单体内阻过大保护 R uint16 0:正常 1:保护 0xA062
|
||||
//单体内阻过小保护 R uint16 0:正常 1:保护 0xA063
|
||||
//单体内阻阻差过大保护 R uint16 0:正常 1:保护 0xA064
|
||||
//簇内阻过大保护 R uint16 0:正常 1:保护 0xA065
|
||||
//簇内阻过小保护 R uint16 0:正常 1:保护 0xA066
|
||||
//SOC初始化无效保护 R uint16 0:正常 1:保护 0xA067
|
||||
//充电时soc降低故障保护 R uint16 0:正常 1:保护 0xA068
|
||||
//放电时soc升高保护 R uint16 0:正常 1:保护 0xA069
|
||||
//静止时SOC跳变保护 R uint16 0:正常 1:保护 0xA06A
|
||||
};
|
||||
|
||||
// BCU遥测
|
||||
struct BCUYC
|
||||
{
|
||||
//所属通道号 R uint16 1~4 0x0001
|
||||
//所属BCU号 R uint16 1~40 0x0002
|
||||
//簇电压 R uint32 0.1V 0x0003
|
||||
//簇电流 R int32 0.1A 0x0005
|
||||
//簇温度 R int32 0.1℃ 0x0007
|
||||
//簇电阻 R uint32 1mΩ 0x0009
|
||||
//簇SOC R uint16 0.1 0x000B
|
||||
//簇SOH R uint16 0.1 0x000C
|
||||
//簇正绝缘电阻 R uint32 1kΩ 0x000D
|
||||
//簇负绝缘电阻 R uint32 1kΩ 0x000F
|
||||
//簇允许最大充电电流 R int32 0.1A 0x0011
|
||||
//簇允许最大放电电流 R int32 0.1A 0x0013
|
||||
//簇允许最大充电功率 R uint32 1kW 0x0015
|
||||
//簇允许最大放电功率 R uint32 1kW 0x0017
|
||||
//簇可充容量 R uint32 0.1Ah 0x0019
|
||||
//簇可放容量 R uint32 0.1Ah 0x001B
|
||||
//簇单次累计充容量 R uint32 0.1Ah 0x001D
|
||||
//簇单次累计放容量 R uint32 0.1Ah 0x001F
|
||||
//簇总累计充容量 R uint32 0.1Ah 0x0021
|
||||
//簇总累计放容量 R uint32 0.1Ah 0x0023
|
||||
//簇可充电量 R uint32 1kWh 0x0025
|
||||
//簇可放电量 R uint32 1kWh 0x0027
|
||||
//簇单次充电量 R uint32 1kWh 0x0029
|
||||
//簇单次放电量 R uint32 1kWh 0x002B
|
||||
//簇累计充电量 R uint32 1kWh 0x002D
|
||||
//簇累计放电量 R uint32 1kWh 0x002F
|
||||
//pack累计簇总压 R uint32 0.1V 0x0031
|
||||
//簇与pack压差 R uint32 0.1V 0x0033
|
||||
//簇与PCS压差 R uint32 0.1V 0x0035
|
||||
//簇中BMU个数 R uint16 0x0037
|
||||
//簇中BMU中单体个数 R uint16 0x0038
|
||||
//簇中BMU中温度个数 R uint16 0x0039
|
||||
//簇中单体个数 R uint16 0x003A
|
||||
//簇中温度个数 R uint16 0x003B
|
||||
//单体最高SOC节号 R uint16 0x003C
|
||||
//单体最高SOC R uint16 0.1 0x003D
|
||||
//单体最低SOC节号 R uint16 0x003E
|
||||
//单体最低SOC R uint16 0.1 0x003F
|
||||
//单体最高SOH节号 R uint16 0x0040
|
||||
//单体最高SOH R uint16 0.1 0x0041
|
||||
//单体最低SOH节号 R uint16 0x0042
|
||||
//单体最低SOH R uint16 0.1 0x0043
|
||||
//单体最高电压节号 R uint16 0x0044
|
||||
//单体最高电压 R uint16 mV 0x0045
|
||||
//单体最低电压节号 R uint16 0x0046
|
||||
//单体最低电压 R uint16 mV 0x0047
|
||||
//单体电压差 R uint16 mV 0x0048
|
||||
//单体平均电压 R uint16 mV 0x0049
|
||||
//单体最高温度节号 R uint16 0x004A
|
||||
//单体最高温度 R int16 0.1℃ 0x004B
|
||||
//单体最低温度节号 R uint16 0x004C
|
||||
//单体最低温度 R int16 0.1℃ 0x004D
|
||||
//单体温度差 R int16 0.1℃ 0x004E
|
||||
//单体平均温度 R int16 0.1℃ 0x004F
|
||||
//单体最高内阻节号 R uint16 0x0050
|
||||
//单体最高内阻 R uint16 mΩ 0x0051
|
||||
//单体最低内阻节号 R uint16 0x0052
|
||||
//单体最低内阻 R uint16 mΩ 0x0053
|
||||
//单体内阻差 R uint16 mΩ 0x0054
|
||||
//单体平均内阻 R uint16 mΩ 0x0055
|
||||
//单体SOC R uint16[1000] 0.1 0x0056~0x043D
|
||||
//单体SOH R uint16[1000] 0.1 0x043E~0x0825
|
||||
//单体电压 R uint16[1000] mV 0x0826~0x0C0D
|
||||
//单体温度 R int16[1000] 0.01℃ 0x0C0E~0x0FF5
|
||||
//单体内阻 R uint16[1000] mΩ 0x0FF6~0x13DD
|
||||
};
|
||||
|
||||
// 空调遥信
|
||||
struct AirCYX
|
||||
{
|
||||
//所属通道号 R uint16 1 0x1001
|
||||
//所属空调号 R uint16 1~10 0x1002
|
||||
//开关 R uint16 0:关机,1:开机 0x1003
|
||||
//启动制冷指令 R uint16 0:关闭, 1:启动 0x1004
|
||||
//启动送风指令 R uint16 0:关闭, 1:启动 0x1005
|
||||
//启动待机指令 R uint16 0:关闭, 1:启动 0x1006
|
||||
//启动加热指令 R uint16 0:关闭, 1:启动 0x1007
|
||||
//传感器故障 R uint16 0:正常,1:告警 0x1008
|
||||
//高低电压告警 R uint16 0:正常,1:告警 0x1009
|
||||
//高低温告警 R uint16 0:正常,1:告警 0x100A
|
||||
//高低压告警 R uint16 0:正常,1:告警 0x100B
|
||||
//压缩机告警 R uint16 0:正常,1:告警 0x100C
|
||||
|
||||
};
|
||||
|
||||
// 空调遥测
|
||||
struct AirCYC
|
||||
{
|
||||
//所属通道号 R uint16 1 0x0001
|
||||
//所属空调号 R uint16 1~10 0x0002
|
||||
//制冷点 R int16 0.1℃ 0x0003
|
||||
//制冷偏差 R int16 0.1℃ 0x0004
|
||||
//高温告警值 R int16 0.1℃ 0x0005
|
||||
//低温告警值 R int16 0.1℃ 0x0006
|
||||
//制热点 R int16 0.1℃ 0x0007
|
||||
//制热偏差 R int16 0.1℃ 0x0008
|
||||
//当前温度 R int16 0.1℃ 0x0009
|
||||
//当前湿度 R int16 0.1℃ 0x000A
|
||||
//除湿开启温度 R int16 0.1℃ 0x000B
|
||||
//除湿停止温度 R int16 0.1℃ 0x000C
|
||||
//除湿开启湿度 R int16 0.1℃ 0x000D
|
||||
//除湿停止湿度 R int16 0.1℃ 0x000E
|
||||
};
|
||||
|
||||
// 电表遥测
|
||||
struct EMeterYC
|
||||
{
|
||||
//所属通道号 R uint16 1 0x0001
|
||||
//电表地址 R uint16[6] 0x0002~0x0007
|
||||
//电表类型 R uint16 "0:储能站总表
|
||||
//1:逆变前侧电表
|
||||
//2:逆变后侧电表
|
||||
//3:配电柜电表
|
||||
//4:并网口电表" 0x0008
|
||||
//电流变比 R uint16 0x0009
|
||||
//电压变比 R uint16 0x000A
|
||||
//A相电压 R uint32 1V 0x000B
|
||||
//B相电压 R uint32 1V 0x000D
|
||||
//C相电压 R uint32 1V 0x000F
|
||||
//A相电流 R int32 1A 0x0011
|
||||
//B相电流 R int32 1A 0x0013
|
||||
//C相电流 R int32 1A 0x0015
|
||||
//AB相电压 R uint32 1V 0x0017
|
||||
//BC相电压 R uint32 1V 0x0019
|
||||
//CA相电压 R uint32 1V 0x001B
|
||||
//A相有功 R int32 1kW 0x001D
|
||||
//B相有功 R int32 1kW 0x001F
|
||||
//C相有功 R int32 1kW 0x0021
|
||||
//三相总有功 R int32 1kW 0x0023
|
||||
//正向总有功总需量 R int32 1kW 0x0025
|
||||
//尖段电价 R uint32 1RMB 0x0027
|
||||
//峰段电价 R uint32 1RMB 0x0029
|
||||
//平段电价 R uint32 1RMB 0x002B
|
||||
//谷段电价 R uint32 1RMB 0x002D
|
||||
//日充电电量 R uint32 1kWh 0x002F
|
||||
//日放电电量 R uint32 1kWh 0x0031
|
||||
//日充电费用 R uint32 1RMB 0x0033
|
||||
//日放电费用 R uint32 1RMB 0x0035
|
||||
//日收益 R int32 1RMB 0x0037
|
||||
//日正向尖有功电能 R uint32 1kWh 0x0039
|
||||
//日正向峰有功电能 R uint32 1kWh 0x003B
|
||||
//日正向平有功电能 R uint32 1kWh 0x003D
|
||||
//日正向谷有功电能 R uint32 1kWh 0x003F
|
||||
//日正向总有功电能 R uint32 1kWh 0x0041
|
||||
//日反向尖有功电能 R uint32 1kWh 0x0043
|
||||
//日反向峰有功电能 R uint32 1kWh 0x0045
|
||||
//日反向平有功电能 R uint32 1kWh 0x0047
|
||||
//日反向谷有功电能 R uint32 1kWh 0x0049
|
||||
//日反向总有功电能 R uint32 1kWh 0x004B
|
||||
//总充电电量 R uint32 1kWh 0x004D
|
||||
//总放电电量 R uint32 1kWh 0x004F
|
||||
//总充电费用 R uint32 1RMB 0x0051
|
||||
//总放电费用 R uint32 1RMB 0x0053
|
||||
//总收益 R int32 1RMB 0x0055
|
||||
//总正向尖有功电能 R uint32 1kWh 0x0057
|
||||
//总正向峰有功电能 R uint32 1kWh 0x0059
|
||||
//总正向平有功电能 R uint32 1kWh 0x005B
|
||||
//总正向谷有功电能 R uint32 1kWh 0x005D
|
||||
//总正向总有功电能 R uint32 1kWh 0x005F
|
||||
//总反向尖有功电能 R uint32 1kWh 0x0061
|
||||
//总反向峰有功电能 R uint32 1kWh 0x0063
|
||||
//总反向平有功电能 R uint32 1kWh 0x0065
|
||||
//总反向谷有功电能 R uint32 1kWh 0x0067
|
||||
//总反向总有功电能 R uint32 1kWh 0x0069
|
||||
};
|
||||
|
||||
// 温湿度遥测
|
||||
struct TemHumYC
|
||||
{
|
||||
//所属通道号 R uint16 1 0x0001
|
||||
//所属温湿度号 R uint16 1~10 0x0002
|
||||
//温度 R int16 0.1℃ 0x0003
|
||||
//湿度 R int16 0.1℃ 0x0004
|
||||
};
|
||||
|
||||
struct Fire20YX
|
||||
{
|
||||
// 测点太多(1000多个)
|
||||
};
|
||||
|
||||
struct Fire30YX
|
||||
{
|
||||
// 测点太多(1000多个)
|
||||
};
|
||||
|
||||
struct Fire40YX
|
||||
{
|
||||
//所属通道号 R uint16 1~10 0x0001
|
||||
//主控数量 R uint16 1 0x0002
|
||||
//主控ID R uint16 1 0x0003
|
||||
//主控状态 R uint16 0:正常 1:预警 2:火警 0x0004
|
||||
//主控硬件版本 R uint16[2] 主控硬件版本 0x0005~0x0006
|
||||
//主控软件版本 R uint16[2] 主控软件版本 0x0007~0x0008
|
||||
//主电状态 R uint16 0:使用市电 1:使用备电 0x0009
|
||||
//备电电流 R uint32 0.1A 0x000A
|
||||
//备电电压 R uint32 0.1V 0x000C
|
||||
//可用容量 R uint32 0.01Ah 0x000E
|
||||
//可充放容量 R uint32 0.01Ah 0x0010
|
||||
//警铃是否使用 R uint16 0x0012
|
||||
//警铃状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0013
|
||||
//瓶头阀是否使用 R uint16 0x0014
|
||||
//瓶头阀状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0015
|
||||
//手报是否使用 R uint16 0x0016
|
||||
//手报状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0017
|
||||
//簇控制器数量 R uint16 0x0018
|
||||
//复合探测器总数量 R uint16 0x0019
|
||||
//烟雾探测器总数量 R uint16 0x001A
|
||||
//压力探测器总数量 R uint16 0x001B
|
||||
//吸气式探测器总数量 R uint16 0x001C
|
||||
//PACK探测器总数量 R uint16 0x001D
|
||||
//电池总数量 R uint16 0x001E
|
||||
|
||||
};
|
||||
|
||||
// 冷机遥信
|
||||
struct ChillerYX
|
||||
{
|
||||
//所属通道号 R uint16 1 0x1001
|
||||
//所属冷机号 R uint16 1~10 0x1002
|
||||
//开关 R uint16 0:关机,1:开机 0x1003
|
||||
//采样模式 R uint16 0-出水温度 1-电芯温度 0x1004
|
||||
//制冷状态 R uint16 0:关闭, 1:启动 0x1005
|
||||
//制热状态 R uint16 0:关闭, 1:启动 0x1006
|
||||
//高温告警 R uint16 0:正常,1:告警 0x1007
|
||||
//低温告警 R uint16 0:正常,1:告警 0x1008
|
||||
//高压告警 R uint16 0:正常,1:告警 0x1009
|
||||
//低压告警 R uint16 0:正常,1:告警 0x100A
|
||||
//进水温度传感器 R uint16 0:正常,1:告警 0x100B
|
||||
//出水温度传感器 R uint16 0:正常,1:告警 0x100C
|
||||
//进水压力传感器 R uint16 0:正常,1:告警 0x100D
|
||||
//出水压力传感器 R uint16 0:正常,1:告警 0x100E
|
||||
};
|
||||
|
||||
// 冷机遥测
|
||||
struct ChillerYC
|
||||
{
|
||||
//所属通道号 R uint16 1 0x0001
|
||||
//所属冷机号 R uint16 1~10 0x0002
|
||||
//制冷点 R int16 0.1℃ 0x0003
|
||||
//制冷偏差 R int16 0.1℃ 0x0004
|
||||
//高温告警值 R int16 0.1℃ 0x0005
|
||||
//低温告警值 R int16 0.1℃ 0x0006
|
||||
//制热点 R int16 0.1℃ 0x0007
|
||||
//制热偏差 R int16 0.1℃ 0x0008
|
||||
//电芯温度 R int16 0.1℃ 0x0009
|
||||
//环境湿度 R int16 0.1℃ 0x000A
|
||||
//吸气温度 R int16 0.1℃ 0x000B
|
||||
//排气温度 R int16 0.1℃ 0x000C
|
||||
//进水温度/供液温度 R int16 0.1℃ 0x000D
|
||||
//出水温度/回液温度 R int16 0.1℃ 0x000E
|
||||
//进水压力/供液压力 R int16 0.1 0x000F
|
||||
//出水压力/回液压力 R int16 0.1 0x0010
|
||||
//高压压力 R int16 0.1 0x0011
|
||||
//低压压力 R int16 0.1 0x0012
|
||||
//循环水泵转速 R int16 0x0013
|
||||
//压缩机频率 R int16 0x0014
|
||||
//室外风机转速 R int16 0x0015
|
||||
static std::map<std::string, RegAddrUnit>* getRegMap(std::string name);
|
||||
};
|
||||
@@ -7,13 +7,14 @@
|
||||
|
||||
#include <unordered_set>
|
||||
|
||||
std::map<int, std::vector<DeviceParamAddr>> Device::s_mapDeviceParamAddr;
|
||||
std::map<int, std::vector<DeviceParamAddr>> Device::s_mapDeviceAddrParam;
|
||||
std::map<int, std::vector<std::string>> Device::s_mapDeviceAddrCurve;
|
||||
|
||||
static std::vector<DeviceParamAddr>& GetDeviceParamAddrs(int deviceType)
|
||||
{
|
||||
static std::vector<DeviceParamAddr> vecAddrs = {};
|
||||
auto iter = Device::s_mapDeviceParamAddr.find(deviceType);
|
||||
if (iter != Device::s_mapDeviceParamAddr.end())
|
||||
auto iter = Device::s_mapDeviceAddrParam.find(deviceType);
|
||||
if (iter != Device::s_mapDeviceAddrParam.end())
|
||||
{
|
||||
return iter->second;
|
||||
}
|
||||
@@ -47,11 +48,10 @@ void Device::loadParamAddr(std::string filename)
|
||||
{
|
||||
std::string key = jsonitem.key();
|
||||
auto& jsonnodeItem = jsonitem.value();
|
||||
spdlog::info(jsonnodeItem.dump());
|
||||
|
||||
int type = jsonnodeItem["deviceType"];
|
||||
auto& vec = s_mapDeviceParamAddr[type];
|
||||
for (auto& v : jsonnodeItem["addr_YC"])
|
||||
auto& vec = s_mapDeviceAddrParam[type];
|
||||
for (auto& v : jsonnodeItem["addrYC"])
|
||||
{
|
||||
std::string name = JSON::get<std::string>(v[0]);
|
||||
std::string addr = JSON::get<std::string>(v[1]);
|
||||
@@ -60,6 +60,14 @@ void Device::loadParamAddr(std::string filename)
|
||||
float ratio = Utils::toFloat(JSON::get<string>(v[4]));
|
||||
vec.push_back(DeviceParamAddr(name, addr, defaultVal, unit, ratio));
|
||||
}
|
||||
if (jsonnodeItem.contains("addrCurve"))
|
||||
{
|
||||
auto& vec = s_mapDeviceAddrCurve[type];
|
||||
for (auto& v : jsonnodeItem["addrCurve"])
|
||||
{
|
||||
vec.push_back(v.get<std::string>());
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
catch (nlohmann::json::parse_error& e)
|
||||
@@ -70,6 +78,7 @@ void Device::loadParamAddr(std::string filename)
|
||||
|
||||
void Device::setFields(Fields& fields)
|
||||
{
|
||||
fields.get("station_id", this->stationId);
|
||||
fields.get("device_id", this->deviceId);
|
||||
fields.get("type", this->type);
|
||||
fields.get("name", this->name);
|
||||
@@ -77,6 +86,7 @@ void Device::setFields(Fields& fields)
|
||||
fields.get("is_open", this->isOpen);
|
||||
fields.get("attrs", this->attrsJson);
|
||||
fields.get("category", this->category);
|
||||
fields.get("sort_no", this->sortNo);
|
||||
|
||||
// 解析属性的JSON字符串,转换成键值对
|
||||
njson jsonroot;
|
||||
@@ -216,11 +226,27 @@ bool Device::cache(int npos)
|
||||
mapCacheCurrent.clear();
|
||||
mapCachePower.clear();
|
||||
}
|
||||
// 根据设备类型从参数(寄存器地址)中读取实时数据进行保存
|
||||
mapCacheVoltage[npos] = Utils::random(100, 200);
|
||||
mapCacheCurrent[npos] = Utils::random(100, 200);
|
||||
mapCachePower[npos] = Utils::random(100, 200);
|
||||
|
||||
std::string addrV;
|
||||
std::string addrI;
|
||||
std::string addrP;
|
||||
auto iter = s_mapDeviceAddrCurve.find(this->type);
|
||||
if (iter != s_mapDeviceAddrCurve.end())
|
||||
{
|
||||
auto& vecAddr = iter->second;
|
||||
auto size = addrV.size();
|
||||
if (size >= 1) { addrV = vecAddr[0]; }
|
||||
else if (size >= 2) { addrI = vecAddr[1]; }
|
||||
else if (size >= 3) { addrP = vecAddr[2]; }
|
||||
}
|
||||
|
||||
// 根据设备类型从参数(寄存器地址)中读取实时数据进行保存
|
||||
int U = Utils::toInt(this->getParam(addrV, "0"));
|
||||
int I = Utils::toInt(this->getParam(addrI, "0"));
|
||||
int P = addrP.empty() ? U*I : Utils::toInt(this->getParam(addrP, "0"));
|
||||
mapCacheVoltage[npos] = U;
|
||||
mapCacheCurrent[npos] = I;
|
||||
mapCachePower[npos] = P;
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -235,10 +261,10 @@ void Device::setParam(std::string k, int v)
|
||||
if (iter != mapMyParams.end())
|
||||
{
|
||||
ratio = iter->second->ratio;
|
||||
spdlog::info("[device] set param: {} {}={}, ratio={}", iter->second->name, k, v, ratio);
|
||||
//spdlog::info("[device] set param: {} {}={}, ratio={}", iter->second->name, k, v, ratio);
|
||||
}
|
||||
|
||||
int precision = (ratio != 1.0f) ? 2 : 0;
|
||||
int precision = (ratio != 1.0f) ? 1 : 0;
|
||||
mapParams[k] = Utils::toStr(v*ratio, precision);
|
||||
|
||||
if (type == 3 ) // 电表
|
||||
@@ -280,6 +306,10 @@ void Device::setParam(std::string k, int v)
|
||||
|
||||
std::string Device::getParam(std::string k, std::string defaultVal)
|
||||
{
|
||||
if (k.empty())
|
||||
{
|
||||
return defaultVal;
|
||||
}
|
||||
auto iter = mapParams.find(k);
|
||||
if (iter != mapParams.end())
|
||||
{
|
||||
@@ -298,10 +328,14 @@ void Device::getRuntimeParams(std::vector<std::pair<std::string, std::string>>&
|
||||
// 105 BCU
|
||||
// 106 充电桩
|
||||
// 109 光伏板
|
||||
auto& vecAddr = s_mapDeviceParamAddr[this->type];
|
||||
auto& vecAddr = s_mapDeviceAddrParam[this->type];
|
||||
for (auto& itemAddr: vecAddr)
|
||||
{
|
||||
params.push_back({itemAddr.name, getParam(itemAddr.addr, itemAddr.defaultVal) + itemAddr.unit});
|
||||
std::string v;
|
||||
v = getParam(itemAddr.addr, itemAddr.defaultVal) + itemAddr.unit;
|
||||
//if (this->online) { }
|
||||
//else { v = "--"; }
|
||||
params.push_back({itemAddr.name, v});
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -56,15 +56,18 @@ public:
|
||||
void getRuntimeParams1(std::vector<std::pair<std::string, std::string>>& params);
|
||||
|
||||
public:
|
||||
static std::map<int, std::vector<DeviceParamAddr>> s_mapDeviceParamAddr;
|
||||
static std::map<int, std::vector<DeviceParamAddr>> s_mapDeviceAddrParam;
|
||||
static std::map<int, std::vector<std::string>> s_mapDeviceAddrCurve;
|
||||
|
||||
int deviceId = -1;
|
||||
int type = -1;
|
||||
int stationId = {0};
|
||||
int deviceId = {0};
|
||||
int type = {0};
|
||||
std::string name;
|
||||
std::string code;
|
||||
int category;
|
||||
bool isOpen = false;
|
||||
std::string attrsJson = "";
|
||||
int sortNo {0};
|
||||
|
||||
int err = 0;
|
||||
int online = 0;
|
||||
|
||||
@@ -14,10 +14,6 @@ Station::Station() : stationId(0)
|
||||
mqttCli = std::make_shared<MqttClient>();
|
||||
|
||||
// 测试,设置默认值
|
||||
for (int i = 1; i<=5; i++) { mapTempHumUnit[i] = TempHumUnit(Utils::random(20, 40), Utils::random(20, 80)); }
|
||||
|
||||
for (int i = 1; i<=5; i++) { mapFire40Unit[i] = 0; }
|
||||
|
||||
for (int i = 1; i<=5; i++) {
|
||||
auto& unit = mapCoolingUnit[i];
|
||||
unit.powerOn = 1;
|
||||
@@ -41,6 +37,7 @@ void Station::setFields(Fields& fields)
|
||||
this->code = fields.value(DMStation::CODE);
|
||||
this->status = fields.get<int>(DMStation::STATUS);
|
||||
this->operationDate = fields.value(DMStation::OPERATION_DATE);
|
||||
this->isOpen = fields.get<int>(DMStation::STATUS);
|
||||
|
||||
this->policy.setFields(fields);
|
||||
}
|
||||
@@ -48,7 +45,6 @@ void Station::setFields(Fields& fields)
|
||||
void Station::addDevice(int deviceId, std::shared_ptr<Device> device)
|
||||
{
|
||||
mapDevice[deviceId] = device;
|
||||
mapDeviceGroup[device->category].push_back(device);
|
||||
}
|
||||
|
||||
void Station::addDevice(Fields& fields)
|
||||
@@ -63,7 +59,6 @@ void Station::addDevice(Fields& fields)
|
||||
{
|
||||
auto device = Device::create(fields);
|
||||
mapDevice[deviceId] = device;
|
||||
mapDeviceGroup[device->category].push_back(device);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -77,6 +72,17 @@ std::shared_ptr<Device> Station::getDevice(int deviceId)
|
||||
return nullptr;
|
||||
}
|
||||
|
||||
void Station::groupDevice()
|
||||
{
|
||||
for (auto iter = mapDevice.begin(); iter!=mapDevice.end(); ++iter)
|
||||
{
|
||||
auto& device = iter->second;
|
||||
char key[20] = {};
|
||||
sprintf(key, "%03d_%03d_%04d", device->stationId, device->sortNo, device->deviceId);
|
||||
mapDeviceGroup[device->category][key] = device;
|
||||
}
|
||||
}
|
||||
|
||||
std::shared_ptr<Device> Station::getDeviceByType(int deviceType, std::string code)
|
||||
{
|
||||
for (auto iter = mapDevice.begin(); iter!=mapDevice.end(); ++iter)
|
||||
@@ -112,12 +118,17 @@ int Station::getDeviceCount(int category)
|
||||
return 0;
|
||||
}
|
||||
|
||||
void Station::getDeviceByGroup(int category, std::vector<std::shared_ptr<Device>>& res)
|
||||
void Station::getDeviceByCategory(int category, std::vector<std::shared_ptr<Device>>& res)
|
||||
{
|
||||
auto iter = mapDeviceGroup.find(category);
|
||||
if (iter != mapDeviceGroup.end())
|
||||
{
|
||||
res = iter->second;
|
||||
res.resize(iter->second.size());
|
||||
int i = 0;
|
||||
for (auto& item: iter->second)
|
||||
{
|
||||
res[i++] = item.second;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -185,6 +196,32 @@ void Station::writeRuntimeData(std::string dt, int npos)
|
||||
}
|
||||
}
|
||||
|
||||
void Station::writeStatistic(std::string dt)
|
||||
{
|
||||
Fields fields;
|
||||
fields.set("storage_elect_in", statData.totalElectIn);
|
||||
fields.set("storage_elect_out", statData.totalElectOut);
|
||||
//fields.set("storage_num_in", statData.totalElectIn);
|
||||
//fields.set("storage_num_out", 0);
|
||||
//fields.set("storage_num_err", 0);
|
||||
//fields.set("storage_t_in", 0);
|
||||
//fields.set("storage_t_out", 0);
|
||||
//fields.set("storage_usage", 0);
|
||||
//fields.set("solar_elect_gen", 0);
|
||||
//fields.set("solar_elect_grid", 0);
|
||||
//fields.set("solar_num_err", 0);
|
||||
//fields.set("solar_t", 0);
|
||||
//fields.set("solar_usage", 0);
|
||||
//fields.set("charge_elect", 0);
|
||||
//fields.set("charge_num", 0);
|
||||
//fields.set("charge_num_err", 0);
|
||||
//fields.set("charge_t", 0);
|
||||
//fields.set("charge_usage", 0);
|
||||
fields.set("income_elect", statData.totalIncome);
|
||||
//fields.set("income_charge", 0);
|
||||
//fields.set("usage_rate", 0);
|
||||
}
|
||||
|
||||
void Station::initMqtt()
|
||||
{
|
||||
if (status!=0 && mqttCli)
|
||||
@@ -229,3 +266,78 @@ void Station::setGarewayWorkMode()
|
||||
spdlog::info(text);
|
||||
mqttCli->publish("Gateway_YT", text);
|
||||
}
|
||||
|
||||
|
||||
void Station::setRuntimeData(string addr, int val)
|
||||
{
|
||||
if (addr == "0x110E") { statData.dayElectIn = val; } //日充电电量 R uint32 1kWh 0 0x110E
|
||||
else if (addr == "0x1110") { statData.dayElectOut = val; } //日放电电量 R uint32 1kWh 0 0x1110
|
||||
else if (addr == "0x1112") { statData.dayIncomeIn = val; } //日充电费用 R uint32 1RMB 0 0x1112
|
||||
else if (addr == "0x1114") { statData.dayIncomeOut = val; } //日放电费用 R uint32 1RMB 0 0x1114
|
||||
else if (addr == "0x1116") { statData.dayIncome = val; } //日收益 R int32 1RMB 0 0x1116
|
||||
else if (addr == "0x112C") { statData.totalElectIn = val; } //总充电电量 R uint32 1kWh 6659(0x112D) 0x112C
|
||||
else if (addr == "0x112E") { statData.totalElectOut = val; } //总放电电量 R uint32 1kWh 4925(0x112F) 0x112E
|
||||
else if (addr == "0x1130") { statData.totalIncomeIn = val; } //总充电费用 R uint32 1RMB 6605(0x1131) 0x1130
|
||||
else if (addr == "0x1132") { statData.totalIncomeOut = val; } //总放电费用 R uint32 1RMB 4949(0x1133) 0x1132
|
||||
else if (addr == "0x1134") { statData.totalIncome = val; } //总收益 R int32 1RMB -1 0x1134
|
||||
}
|
||||
|
||||
void Station::setTHData(int deviceNo, string addr, int val)
|
||||
{
|
||||
auto& unit = mapTempHumUnit[deviceNo];
|
||||
if (addr == "0x0001") { ; } //所属通道号 R uint16 1 0x0001
|
||||
else if (addr == "0x0002") { ; } //所属温湿度号 R uint16 1~10 0x0002
|
||||
else if (addr == "0x0003") { unit.temp = float(val) * 0.1; } //温度 R int16 0.1℃ 0x0003
|
||||
else if (addr == "0x0004") { unit.hum = float(val) * 0.1; } //湿度 R int16 0.1℃ 0x0004
|
||||
}
|
||||
|
||||
void Station::setFire40Data(int deviceNo, string addr, int val)
|
||||
{
|
||||
auto& unit = mapFire40Unit[deviceNo];
|
||||
|
||||
if (addr == "0x0001") { ; } //所属通道号 R uint16 1~10 0x0001
|
||||
else if (addr == "0x0002") { ; } //主控数量 R uint16 1 0x0002
|
||||
else if (addr == "0x0003") { ; } //主控ID R uint16 1 0x0003
|
||||
else if (addr == "0x0004") { unit.statusMain = val; } //主控状态 R uint16 0:正常 1:预警 2:火警 0x0004
|
||||
else if (addr == "0x0005") { ; } //主控硬件版本 R uint16[2] 主控硬件版本 0x0005
|
||||
else if (addr == "0x0007") { ; } //主控软件版本 R uint16[2] 主控软件版本 0x0007
|
||||
else if (addr == "0x0009") { ; } //主电状态 R uint16 0:使用市电 1:使用备电 0x0009
|
||||
else if (addr == "0x000A") { ; } //备电电流 R uint32 0.1A 0x000A
|
||||
else if (addr == "0x000C") { ; } //备电电压 R uint32 0.1V 0x000C
|
||||
else if (addr == "0x000E") { ; } //可用容量 R uint32 0.01Ah 0x000E
|
||||
else if (addr == "0x0010") { ; } //可充放容量 R uint32 0.01Ah 0x0010
|
||||
else if (addr == "0x0012") { unit.usedAlarm = val; } //警铃是否使用 R uint16 0x0012
|
||||
else if (addr == "0x0013") { unit.statusAlarm = val; } //警铃状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0013
|
||||
else if (addr == "0x0014") { unit.usedValve = val; } //瓶头阀是否使用 R uint16 0x0014
|
||||
else if (addr == "0x0015") { unit.statusValve = val; } //瓶头阀状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0015
|
||||
else if (addr == "0x0016") { unit.usedMCP = val; } //手报是否使用 R uint16 0x0016
|
||||
else if (addr == "0x0017") { unit.statusMCP = val; } //手报状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0017
|
||||
else if (addr == "0x0018") { ; } //簇控制器数量 R uint16 0x0018
|
||||
else if (addr == "0x0019") { ; } //复合探测器总数量 R uint16 0x0019
|
||||
else if (addr == "0x001A") { ; } //烟雾探测器总数量 R uint16 0x001A
|
||||
else if (addr == "0x001B") { ; } //压力探测器总数量 R uint16 0x001B
|
||||
else if (addr == "0x001C") { ; } //吸气式探测器总数量 R uint16 0x001C
|
||||
else if (addr == "0x001D") { ; } //PACK探测器总数量 R uint16 0x001D
|
||||
else if (addr == "0x001E") { ; } //电池总数量 R uint16 0x001E
|
||||
}
|
||||
|
||||
|
||||
void Station::setCoolingData(int deviceNo, string addr, int val)
|
||||
{
|
||||
auto& unit = mapCoolingUnit[deviceNo];
|
||||
|
||||
if (addr == "0x1001") { ; } //所属通道号 R uint16 1 0x1001
|
||||
else if (addr == "0x1002") { ; }// 所属冷机号 R uint16 1~10 0x1002
|
||||
else if (addr == "0x1003") { unit.powerOn = val; }// 开关 R uint16 0:关机,1:开机 0x1003
|
||||
else if (addr == "0x1004") { ; }// 采样模式 R uint16 0-出水温度 1-电芯温度 0x1004
|
||||
else if (addr == "0x1005") { unit.cooling = val; }// 制冷状态 R uint16 0:关闭, 1:启动 0x1005
|
||||
else if (addr == "0x1006") { unit.heating = val; }// 制热状态 R uint16 0:关闭, 1:启动 0x1006
|
||||
else if (addr == "0x1007") { unit.highTemp = val; }// 高温告警 R uint16 0:正常,1:告警 0x1007
|
||||
else if (addr == "0x1008") { unit.lowTemp = val; }// 低温告警 R uint16 0:正常,1:告警 0x1008
|
||||
else if (addr == "0x1009") { unit.highPressure = val; }// 高压告警 R uint16 0:正常,1:告警 0x1009
|
||||
else if (addr == "0x100A") { unit.lowPressure = val; }// 低压告警 R uint16 0:正常,1:告警 0x100A
|
||||
else if (addr == "0x100B") { ; }// 进水温度传感器 R uint16 0:正常,1:告警 0x100B
|
||||
else if (addr == "0x100C") { ; }// 出水温度传感器 R uint16 0:正常,1:告警 0x100C
|
||||
else if (addr == "0x100D") { ; }// 进水压力传感器 R uint16 0:正常,1:告警 0x100D
|
||||
else if (addr == "0x100E") { ; }// 出水压力传感器 R uint16 0:正常,1:告警 0x100E
|
||||
}
|
||||
@@ -10,9 +10,9 @@ class MqttClient;
|
||||
|
||||
struct TempHumUnit
|
||||
{
|
||||
int temp {0};
|
||||
int hum {0};
|
||||
TempHumUnit(int temp, int hum) : temp(temp), hum(hum) {};
|
||||
float temp {0};
|
||||
float hum {0};
|
||||
TempHumUnit(float temp, float hum) : temp(temp), hum(hum) {};
|
||||
TempHumUnit() {}
|
||||
};
|
||||
|
||||
@@ -20,7 +20,7 @@ struct Fire40Unit
|
||||
{
|
||||
//主控数量 R uint16 1 0x0002
|
||||
//主控ID R uint16 1 0x0003
|
||||
//主控状态 R uint16 0:正常 1:预警 2:火警 0x0004
|
||||
int statusMain {0}; //主控状态 R uint16 0:正常 1:预警 2:火警 0x0004
|
||||
//主控硬件版本 R uint16[2] 主控硬件版本 0x0005~0x0006
|
||||
//主控软件版本 R uint16[2] 主控软件版本 0x0007~0x0008
|
||||
//主电状态 R uint16 0:使用市电 1:使用备电 0x0009
|
||||
@@ -28,12 +28,12 @@ struct Fire40Unit
|
||||
//备电电压 R uint32 0.1V 0x000C
|
||||
//可用容量 R uint32 0.01Ah 0x000E
|
||||
//可充放容量 R uint32 0.01Ah 0x0010
|
||||
//警铃是否使用 R uint16 0x0012
|
||||
//警铃状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0013
|
||||
//瓶头阀是否使用 R uint16 0x0014
|
||||
//瓶头阀状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0015
|
||||
//手报是否使用 R uint16 0x0016
|
||||
//手报状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0017
|
||||
int usedAlarm {0}; //警铃是否使用 R uint16 0x0012
|
||||
int statusAlarm {0}; //警铃状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0013
|
||||
int usedValve {0}; //瓶头阀是否使用 R uint16 0x0014
|
||||
int statusValve {0}; //瓶头阀状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0015
|
||||
int usedMCP {0}; //手报是否使用 R uint16 0x0016
|
||||
int statusMCP {0}; //手报状态 R uint16 0:无效 1:掉线 2:正常 3:启动 0x0017 // Manual Call Point (MCP)
|
||||
//簇控制器数量 R uint16 0x0018
|
||||
//复合探测器总数量 R uint16 0x0019
|
||||
//烟雾探测器总数量 R uint16 0x001A
|
||||
@@ -98,21 +98,29 @@ public:
|
||||
void addDevice(int deviceId, std::shared_ptr<Device> device);
|
||||
void addDevice(Fields& fields);
|
||||
std::shared_ptr<Device> getDevice(int deviceId);
|
||||
|
||||
void groupDevice();
|
||||
|
||||
std::shared_ptr<Device> getDeviceByType(int deviceType, std::string code);
|
||||
void getDeviceByType(int typeId, std::vector<std::shared_ptr<Device>>& res);
|
||||
int getDeviceCount(int category);
|
||||
void getDeviceByGroup(int category, std::vector<std::shared_ptr<Device>>& res);
|
||||
void getDeviceByCategory(int category, std::vector<std::shared_ptr<Device>>& res);
|
||||
|
||||
void setWorkMode(int modeId);
|
||||
void setPolicy(int policyId);
|
||||
|
||||
void writeRuntimeData(std::string dt, int npos);
|
||||
void writeStatistic(std::string dt);
|
||||
|
||||
void initMqtt();
|
||||
void polling();
|
||||
void setGarewayWorkMode();
|
||||
|
||||
void setRuntimeData(string addr, int val);
|
||||
void setTHData(int deviceNo, string addr, int val);
|
||||
void setFire40Data(int deviceNo, string addr, int val);
|
||||
void setCoolingData(int deviceNo, string addr, int val);
|
||||
|
||||
public:
|
||||
int stationId {};
|
||||
std::string name;
|
||||
@@ -127,6 +135,8 @@ public:
|
||||
int workModeId {}; // 运行模式
|
||||
int runPolicyId {}; // 运行策略
|
||||
|
||||
|
||||
|
||||
///////////////////////////////////////////////////////////////////////////////////////////////
|
||||
/// === 系统统计 ===
|
||||
// 累计发电量,单位:kWh
|
||||
@@ -179,13 +189,13 @@ public:
|
||||
///////////////////////////////////////////////////////////////////////////////////////////////
|
||||
/// === 设备信息 ===
|
||||
std::unordered_map<int, std::shared_ptr<Device>> mapDevice;
|
||||
std::map<int, std::vector<std::shared_ptr<Device>>> mapDeviceGroup;
|
||||
std::map<int, std::map<std::string, std::shared_ptr<Device>>> mapDeviceGroup;
|
||||
|
||||
|
||||
// 温湿度信息
|
||||
std::map<int, TempHumUnit> mapTempHumUnit;
|
||||
// 消防4.0信息
|
||||
std::map<int, int> mapFire40Unit;
|
||||
std::map<int, Fire40Unit> mapFire40Unit;
|
||||
// 冷机信息
|
||||
std::map<int, CoolingUnit> mapCoolingUnit;
|
||||
// 空调信息
|
||||
@@ -195,5 +205,32 @@ public:
|
||||
/// === MQTT client
|
||||
std::shared_ptr<MqttClient> mqttCli {nullptr};
|
||||
|
||||
|
||||
|
||||
struct {
|
||||
int64_t ts;
|
||||
|
||||
double totalElectIn; //总充电电量 R uint32 1kWh 6659(0x112D) 0x112C
|
||||
double totalElectOut; //总放电电量 R uint32 1kWh 4925(0x112F) 0x112E
|
||||
double totalIncomeIn; //总充电费用 R uint32 1RMB 6605(0x1131) 0x1130
|
||||
double totalIncomeOut; //总放电费用 R uint32 1RMB 4949(0x1133) 0x1132
|
||||
double totalIncome; //总收益 R int32 1RMB -1 0x1134
|
||||
//储能充放电时段hh R uint16 时 336 0x01 0x121C
|
||||
//储能充放电时段mm R uint16 分 0 0x01 0x121D
|
||||
//储能充放电时段ss R uint16 秒 0 0x01 0x121E
|
||||
|
||||
double totalDurationIn;
|
||||
double totalDurationOut;
|
||||
|
||||
double dayElectIn; // 日充电电量 R uint32 1kWh 0 0x110E
|
||||
double dayElectOut; // 日放电电量 R uint32 1kWh 0 0x1110
|
||||
double dayIncomeIn; // 日充电费用 R uint32 1RMB 0 0x1112
|
||||
double dayIncomeOut; // 日放电费用 R uint32 1RMB 0 0x1114
|
||||
double dayIncome; // 日收益 R int32 1RMB 0 0x1116
|
||||
|
||||
} statData;
|
||||
|
||||
///////////////////////////////////////////////////////////////////////////////////////////////
|
||||
struct {
|
||||
} runtimeData;
|
||||
|
||||
};
|
||||
Reference in New Issue
Block a user