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https://gitee.com/js-yhsec/energy_storage.git
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实现QT6启动器,QT版本有qt5升级到qt6
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@@ -182,9 +182,49 @@ void Device::storeDB(int npos)
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{
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}
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void Device::setParam(std::string k, std::string v)
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{
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mapParams[k] = v;
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if (type == 3 ) // 电表
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{
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if (k == "") this->err = Utils::toInt(v);
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}
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else if (type == 101) // EMS
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{
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}
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else if (type == 102) // PCS
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{
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if (k == "0x1003") err = Utils::toInt(v); // 故障状态 R uint16 1故障,0正常 0 0x1003
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if (k == "0x1005") online = Utils::toInt(v); // 设备在线 R uint16 1在线,0无效 1 0x1005
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if (k == "0x1009") running = (v=="1" || v=="2"); //充放状态 R uint16 0:待机, 1:充电, 2:放电, 3:搁置 0 0x1009
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}
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else if (type == 103) // PCU
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{
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if (k == "0x1002") err = Utils::toInt(v); //故障状态 R uint16 1故障,0正常 0 0x1002
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if (k == "0x1004") online = Utils::toInt(v); //设备在线 R uint16 1在线,0无效 1 0x1004
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if (k == "0x1006") running = Utils::toInt(v); //启停状态 R uint16 1开机,0关机 1 0x1006
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}
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else if (type == 104) // BMS
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{
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if (k == "0x004A") { err = (v=="1"); online = 1; } //运行状态 R uint16 0 运行状态 0-正常 1-告警 2-保护 0x004A
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if (k == "0x004B") running = (v=="1" || v=="2"); //充放电状态 R uint16 0 0-待机 1-充电 2-放电 0x004B
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}
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else if (type == 105) // BCU
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{
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if (k == "0xA003") running = (v=="51" || v=="68"); //蓄电池充放电状态 R uint16 "0x11开路,0x22待机,0x33充电,0x44放电" 34 0xA003
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if (k == "0xA004") err = (v=="85"); online=1; //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" 102 0xA004
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}
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else if (type == 106) // 充电桩
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{
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}
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else if (type == 109) // 光伏板
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{
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}
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}
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std::string Device::getParam(std::string k, std::string defaultVal)
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@@ -197,6 +237,7 @@ std::string Device::getParam(std::string k, std::string defaultVal)
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return defaultVal;
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}
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void Device::getRuntimeParams(std::vector<std::pair<std::string, std::string>>& params)
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{
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// 3 电表
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@@ -208,35 +249,70 @@ void Device::getRuntimeParams(std::vector<std::pair<std::string, std::string>>&
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// 106 充电桩
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// 109 光伏板
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if (this->type == 3)
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{
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params.push_back({"A相电压", getParam("0x000B", "0.0") + "V"});
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params.push_back({"B相电压", getParam("0x000D", "0.0") + "V"});
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params.push_back({"C相电压", getParam("0x000F", "0.0") + "V"});
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params.push_back({"A相电流", getParam("0x0011", "0.0") + "A"});
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params.push_back({"B相电流", getParam("0x0013", "0.0") + "A"});
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params.push_back({"C相电流", getParam("0x0015", "0.0") + "A"});
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params.push_back({"A相电压", getParam("0x000B", "0.0") + " V"});
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params.push_back({"A相电流", getParam("0x000D", "0.0") + " A"});
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params.push_back({"B相电压", getParam("0x000F", "0.0") + " V"});
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params.push_back({"B相电流", getParam("0x0011", "0.0") + " A"});
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params.push_back({"C相电压", getParam("0x0013", "0.0") + " V"});
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params.push_back({"C相电流", getParam("0x0015", "0.0") + " A"});
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}
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else if (this->type == 101)
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else if (this->type == 101) // EMS
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{
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params.push_back({"额定电压", getParam("0x0001", "0.0") + "V"});
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params.push_back({"实时电压", getParam("0x0001", "0.0") + "V"});
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params.push_back({"额定电流", getParam("0x0001", "0.0") + "A"});
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params.push_back({"实时电流", getParam("0x0001", "0.0") + "A"});
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params.push_back({"额定功率", getParam("0x0001", "0.0") + "kW"});
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params.push_back({"实时功率", getParam("0x0001", "0.0") + "A"});
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params.push_back({"A相电压", getParam("0x107E", "0.0") + " V"});
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params.push_back({"A相电流", getParam("0x1084", "0.0") + " A"});
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params.push_back({"B相电压", getParam("0x1080", "0.0") + " V"});
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params.push_back({"B相电流", getParam("0x1086", "0.0") + " A"});
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params.push_back({"C相电压", getParam("0x1082", "0.0") + " V"});
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params.push_back({"C相电流", getParam("0x1088", "0.0") + " A"});
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}
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else if (this->type == 102) // PCS
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{
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params.push_back({"A相电压", getParam("0x0010", "0.0") + " V"});
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params.push_back({"A相电流", getParam("0x0019", "0.0") + " A"});
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params.push_back({"B相电压", getParam("0x0011", "0.0") + " V"});
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params.push_back({"B相电流", getParam("0x001A", "0.0") + " A"});
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params.push_back({"C相电压", getParam("0x0011", "0.0") + " V"});
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params.push_back({"C相电流", getParam("0x001B", "0.0") + " A"});
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}
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else if (this->type == 103) // PCU
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{
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params.push_back({"A相电压", getParam("0x0013", "0.0") + " V"});
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params.push_back({"A相电流", getParam("0x001C", "0.0") + " A"});
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params.push_back({"B相电压", getParam("0x0014", "0.0") + " V"});
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params.push_back({"B相电流", getParam("0x001D", "0.0") + " A"});
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params.push_back({"C相电压", getParam("0x0015", "0.0") + " V"});
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params.push_back({"C相电流", getParam("0x001E", "0.0") + " A"});
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}
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else if (this->type == 104) // BMS
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{
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params.push_back({"SOC", getParam("0x0001", "0") + " %"});
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params.push_back({"SOH", getParam("0x0002", "0") + " %"});
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params.push_back({"电压", getParam("0x0003", "0.0") + " V"});
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params.push_back({"电流", getParam("0x0005", "0.0") + " A"});
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params.push_back({"单体最大电压", getParam("0x0021", "0.0") + " V"});
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params.push_back({"单体最小电压", getParam("0x0024", "0.0") + " V"});
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params.push_back({"单体最大温度", getParam("0x0029", "0.0") + " ℃"});
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params.push_back({"单体最小温度", getParam("0x002C", "0.0") + " ℃"});
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}
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else if (this->type == 105) // BCU
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{
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params.push_back({"簇电压", getParam("0x0003", "0.0") + " V"});
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params.push_back({"簇电流", getParam("0x0005", "0") + " A"});
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params.push_back({"簇温度", getParam("0x0007", "0.0") + " ℃"});
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params.push_back({"簇电阻", getParam("0x0009", "0.0") + " Ω"});
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params.push_back({"簇SOC", getParam("0x000B", "0") + " %"});
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params.push_back({"簇SOH", getParam("0x000C", "0") + " %"});
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}
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//else if (this->type == 101)
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//{
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//}
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else
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{
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params.push_back({"额定电压", getParam("0x0001", "0.0") + "V"});
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params.push_back({"实时电压", getParam("0x0001", "0.0") + "V"});
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params.push_back({"额定电流", getParam("0x0001", "0.0") + "A"});
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params.push_back({"实时电流", getParam("0x0001", "0.0") + "A"});
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params.push_back({"额定功率", getParam("0x0001", "0.0") + "kW"});
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params.push_back({"实时功率", getParam("0x0001", "0.0") + "A"});
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params.push_back({"额定电压", getParam("0x0001", "0.0") + " V"});
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params.push_back({"实时电压", getParam("0x0001", "0.0") + " V"});
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params.push_back({"额定电流", getParam("0x0001", "0.0") + " A"});
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params.push_back({"实时电流", getParam("0x0001", "0.0") + " A"});
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params.push_back({"额定功率", getParam("0x0001", "0.0") + " W"});
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params.push_back({"实时功率", getParam("0x0001", "0.0") + " W"});
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}
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}
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