优化结构

This commit is contained in:
zjk
2025-04-07 21:18:02 +08:00
parent ebf1701335
commit 7ef9ec5ac0
10 changed files with 785 additions and 248 deletions
+26
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@@ -0,0 +1,26 @@
@startuml PowerManagerFsm状态图
[*] --> InitState
state InitState {
[*] --> 等待复合管控消息
等待复合管控消息 --> 等待关键断路器闭合: 连接成功
等待复合管控消息 --> FaultState: 超时(10秒)
等待关键断路器闭合 --> StandbyState: 关键断路器闭合
等待关键断路器闭合 --> FaultState: 系统错误
}
state StandbyState {
[*] --> 待机
待机 --> FaultState: 检测到错误
待机 --> 处理电源命令: 收到命令
处理电源命令 --> 待机: 完成处理
}
state FaultState {
[*] --> 故障处理
}
InitState --> FaultState : FaultEvent(faultCode=1/2)
StandbyState --> FaultState : FaultEvent(faultCode)
InitState --> StandbyState : StandbyEvent
@enduml
+128
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@@ -0,0 +1,128 @@
# PowerManager系统架构优化设计方案
## 1. 总体架构
```mermaid
classDiagram
class PowerManagerCore {
+startup()
+shutdown()
+getSystemState()
}
class StateMachineService {
+triggerEvent()
+getCurrentState()
+addStateListener()
}
class CommunicationMediator {
+registerHandler()
+sendMessage()
+addMessageListener()
}
PowerManagerCore --> StateMachineService
PowerManagerCore --> CommunicationMediator
```
## 2. 状态机重构方案
### 2.1 状态设计模式
```cpp
class IPowerState {
public:
virtual void onEntry(PowerContext&) = 0;
virtual void handleEvent(PowerContext&, const Event&) = 0;
virtual void onExit(PowerContext&) = 0;
};
```
### 2.2 状态转换规则
```yaml
# states_config.yaml
transitions:
- from: STANDBY
event: START_CMD
to: OPERATING
- from: OPERATING
event: STOP_CMD
to: STANDBY
```
## 3. 通信中介者设计
### 3.1 核心架构
```mermaid
sequenceDiagram
participant Upper as 上位机
participant Mediator as 通信中介者
participant Lower as 下位机
Upper->>Mediator: 控制命令(JSON)
Mediator->>Lower: 设备指令(ProtocolBuffer)
Lower->>Mediator: 状态更新
Mediator->>Upper: 系统报告
```
### 3.2 关键实现
```cpp
class CommunicationMediator {
// 线程安全消息队列
moodycamel::ConcurrentQueue<Message> queue;
// 消息处理线程
void processMessages() {
while (running) {
Message msg;
if (queue.try_dequeue(msg)) {
handlers[msg.type]->handle(msg);
}
}
}
};
```
## 4. 数据库服务设计
### 4.1 日志策略模式
```cpp
class ILogStrategy {
public:
virtual bool log(const SystemLog& log) = 0;
};
class SQLiteLogStrategy : public ILogStrategy {
// SQLite实现...
};
class FileLogStrategy : public ILogStrategy {
// 文件系统实现...
};
```
## 5. 实施计划
### 5.1 阶段划分
```mermaid
gantt
title 重构实施甘特图
section 核心框架
接口定义 :2025-04-08, 3d
基础实现 :2025-04-11, 5d
section 模块重构
状态机 :2025-04-16, 5d
通信模块 :2025-04-21, 5d
section 测试验证
单元测试 :2025-04-26, 3d
集成测试 :2025-04-29, 5d
```
## 6. 性能指标
| 模块 | 当前QPS | 目标QPS | 优化手段 |
|----------------|---------|---------|-----------------------|
| 状态机处理 | 100 | 500 | 无锁状态转换 |
| 消息处理 | 200 | 1000 | 批量处理+线程池 |
| 数据库写入 | 50 | 300 | 异步写入+批量提交 |
+10 -8
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@@ -26,6 +26,7 @@ SET(SRC
main.cpp main.cpp
SQLiteDB.cpp SQLiteDB.cpp
driver.cpp driver.cpp
LowerCommManager.cpp
) )
ADD_EXECUTABLE(pPowerManger ${SRC}) ADD_EXECUTABLE(pPowerManger ${SRC})
@@ -56,17 +57,18 @@ SET(FSMLIB_SRC
SET(DRIVER_SRC SET(DRIVER_SRC
driver.cpp) driver.cpp)
SET(POWERMANGE_SRC # SET(POWERMANGE_SRC
PowerManger.cpp # PowerManger.cpp
PowerManger_Info.cpp # PowerManger_Info.cpp
udpComm.cpp # udpComm.cpp
SQLiteDB.cpp # SQLiteDB.cpp
driver.cpp # driver.cpp
PowerManagerFsm.cpp) # PowerManagerFsm.cpp)
ADD_LIBRARY(SQLiteDB STATIC ${SQLITEDB_SRC}) ADD_LIBRARY(SQLiteDB STATIC ${SQLITEDB_SRC})
ADD_LIBRARY(UDPComm STATIC ${UDPCOMM_SRC}) ADD_LIBRARY(UDPComm STATIC ${UDPCOMM_SRC})
ADD_LIBRARY(FSMLib STATIC ${FSMLIB_SRC}) ADD_LIBRARY(FSMLib STATIC ${FSMLIB_SRC})
ADD_LIBRARY(Driver STATIC ${DRIVER_SRC}) ADD_LIBRARY(Driver STATIC ${DRIVER_SRC})
ADD_LIBRARY(PowerMange STATIC ${POWERMANGE_SRC}) # ADD_LIBRARY(PowerMange STATIC ${POWERMANGE_SRC})
+219
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@@ -0,0 +1,219 @@
#include "LowerCommManager.h"
#include "PowerManger.h"
#include "driver.h"
#include "udpComm.h"
bool _ListenCB(void * pParam)
{
LowerCommManager* pMe = (LowerCommManager* )pParam;
return pMe->listenThreadFunc();
}
LowerCommManager::LowerCommManager(PowerManger* pm, long myPort, long ccuPort, const std::string& cccHost){
m_pm = pm;
m_udpComm = new udpComm();
m_port = myPort;
m_udpComm->ccuHost = cccHost;
if(ccuPort < 0 || ccuPort > 65535) {
throw std::invalid_argument("Invalid CCU port: " + std::to_string(ccuPort));
}
m_udpComm->ccuPort = static_cast<unsigned short>(ccuPort);
}
LowerCommManager::~LowerCommManager(){
try {
stopListenThread();
if (m_udpComm) {
delete m_udpComm;
m_udpComm = nullptr;
}
} catch (...) {
cerr << "Error during cleanup" << endl;
}
}
bool LowerCommManager::initUdpComm(){
//设置UDP监听端口
XPCUdpSocket* m_udpSocket = new XPCUdpSocket(m_port);
if(m_udpSocket)
{
try
{
m_udpSocket->vBindSocket();
m_udpComm->ccuHost = m_ccuHost;
m_udpComm->ccuPort = m_ccuPort;
cout<<MOOS::ConsoleColours::green()<< "UDP set succeed!"<< MOOS::ConsoleColours::reset() << endl;
m_udpComm->udpScoket = m_udpSocket;
}
catch(const std::exception& e)
{
std::cerr << e.what() << '\n';
cout<<MOOS::ConsoleColours::red()<< "UDP set Fild!"<< MOOS::ConsoleColours::reset() << endl;
return false;
}
}
else
{
cout<<MOOS::ConsoleColours::red()<< "UDP set Fild!"<< MOOS::ConsoleColours::reset() << endl;
return false;
}
return true;
}
void LowerCommManager::processPeriodicTasks() {
// sendCcuCommand(m_pm->m_CcuColCmd);
// sendDisSysCommand(m_pm->m_targetDisBreakerState);
int msg = 10;
m_udpComm->udpScoket->iSendMessageTo((void*) msg, 6, m_udpComm->ccuPort, "127.0.0.1");
m_udpComm->clearMsgQueue();
}
bool LowerCommManager::sendCcuCommand(const ccuColCmd cmd){
// m_pm->m_db->insertCcuSysCmd(cmd);
if(!m_udpComm->sendCcuColCmd(cmd))
cout << "send ccu command failed!" << endl;
return true;
}
bool LowerCommManager::sendDisSysCommand(const disSysBreakerList& cmd){
//根据目标状态进行断路器操作
//a. 高压母线的断路器
disHighVolBusCmd a;
a.fuelCellCircuitBreaker = getBreakerOption(cmd.bus1Breaker.fuelCellCircuitBreaker);
a.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(cmd.bus1Breaker.lithiumBatteryGroupInstrumentCircuitBreaker);
a.dcDc5ModuleCircuitBreaker = getBreakerOption(cmd.bus1Breaker.dcDc5ModuleCircuitBreaker);
a.powerLithiumBatteryCircuitBreaker = getBreakerOption(cmd.bus1Breaker.powerLithiumBatteryCircuitBreaker);
a.propulsionMotorCircuitBreaker = getBreakerOption(cmd.bus1Breaker.propulsionMotorCircuitBreaker);
a.bowHighVoltageDistributionBoxCircuitBreaker = getBreakerOption(cmd.bus1Breaker.bowHighVoltageDistributionBoxCircuitBreaker);
a.tyzReservedCircuitBreaker = getBreakerOption(cmd.bus1Breaker.tyzReservedCircuitBreaker);
a.sternFTDevice45CircuitBreaker = getBreakerOption(cmd.bus1Breaker.sternFTDevice45CircuitBreaker);
a.sternRudderSwitch1CircuitBreaker = getBreakerOption(cmd.bus1Breaker.sternRudderSwitch1CircuitBreaker);
a.sternRudderSwitch2CircuitBreaker = getBreakerOption(cmd.bus1Breaker.sternRudderSwitch2CircuitBreaker);
a.reservedCircuitBreaker = getBreakerOption(cmd.bus1Breaker.reservedCircuitBreaker);
a.fbReservedCircuitBreaker = getBreakerOption(cmd.bus1Breaker.fbReservedCircuitBreaker);
m_udpComm->sendDisSysCmd(a);
//b. 高压汇流排A断路器
disHighAVolBusCmd b;
b.bowFTDevice123CircuitBreaker = getBreakerOption(cmd.bus2Breaker.bowFTDevice123CircuitBreaker);
b.actuatorCircuitBreaker = getBreakerOption(cmd.bus2Breaker.actuatorCircuitBreaker);
b.mastSteeringGearControlBoxCircuitBreaker = getBreakerOption(cmd.bus2Breaker.mastSteeringGearControlBoxCircuitBreaker);
b.xczCircuitBreaker = getBreakerOption(cmd.bus2Breaker.xczCircuitBreaker);
b.bowRudderControlBoxCircuitBreaker = getBreakerOption(cmd.bus2Breaker.bowRudderControlBoxCircuitBreaker);
b.openWaterCoverStartCylinderCircuitBreaker = getBreakerOption(cmd.bus2Breaker.openWaterCoverStartCylinderCircuitBreaker);
m_udpComm->sendDisSysCmd(b);
//c. 高压汇流排B断路器
disHighBVolBusCmd c;
c.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(cmd.bus3Breaker.lithiumBatteryGroupInstrumentCircuitBreaker);
c.bowLowVoltageDistributionBoxCircuitBreaker = getBreakerOption(cmd.bus3Breaker.bowLowVoltageDistributionBoxCircuitBreaker);
c.unit4InstrumentDC48VCircuitBreaker = getBreakerOption(cmd.bus3Breaker.unit4InstrumentDC48VCircuitBreaker);
c.dcC1DCDistributionPanelCircuitBreaker = getBreakerOption(cmd.bus3Breaker.dcC1DCDistributionPanelCircuitBreaker);
c.reservedCircuitBreaker1 = getBreakerOption(cmd.bus3Breaker.reservedCircuitBreaker1);
c.reservedCircuitBreaker2 = getBreakerOption(cmd.bus3Breaker.reservedCircuitBreaker2);
c.emergencyLithiumBatteryGroup2CircuitBreaker = getBreakerOption(cmd.bus3Breaker.emergencyLithiumBatteryGroup2CircuitBreaker);
m_udpComm->sendDisSysCmd(c);
//d. 闭合低压汇流排断路器
disLowBusCmd d;
d.unit1CircuitBreaker = getBreakerOption(cmd.bus4Breaker.unit1CircuitBreaker);
d.unit2CircuitBreaker = getBreakerOption(cmd.bus4Breaker.unit2CircuitBreaker);
d.unit3CircuitBreaker = getBreakerOption(cmd.bus4Breaker.unit3CircuitBreaker);
d.unit5CircuitBreaker = getBreakerOption(cmd.bus4Breaker.unit5CircuitBreaker);
d.bowPZDeviceCircuitBreaker = getBreakerOption(cmd.bus4Breaker.bowPZDeviceCircuitBreaker);
d.reservedCircuitBreaker1 = getBreakerOption(cmd.bus4Breaker.reservedCircuitBreaker1);
d.reservedCircuitBreaker2 = getBreakerOption(cmd.bus4Breaker.reservedCircuitBreaker2);
d.emergencyLithiumBatteryGroup1CircuitBreaker = getBreakerOption(cmd.bus4Breaker.emergencyLithiumBatteryGroup1CircuitBreaker);
m_udpComm->sendDisSysCmd(d);
//将指令写入数据库
m_pm->m_db->insertDisSysCmd(a);
m_pm->m_db->insertDisSysCmd(b);
m_pm->m_db->insertDisSysCmd(c);
m_pm->m_db->insertDisSysCmd(d);
return true;
}
void LowerCommManager::clearMsgQueue(){
m_udpComm->clearMsgQueue();
}
bool LowerCommManager::listenThreadFunc()
{
cout<<MOOS::ConsoleColours::green()<< "LowerCommManager::listenThreadFunc" << MOOS::ConsoleColours::reset() << endl;
unsigned char Buff[1024];
while(!m_ListenThread.IsQuitRequested())
{
try
{
int nRead = m_udpComm->udpScoket->iRecieveMessage(Buff, sizeof(Buff));
cout<<MOOS::ConsoleColours::yellow()<< "RECEVE DATA COUNT:" << nRead << MOOS::ConsoleColours::reset() << endl;
if(nRead > 0)
{
try {
if(!m_udpComm->pushMsgToQueue(Buff))
{
for(int i=0; i<m_udpComm->sError.size(); i++)
{
cout<<MOOS::ConsoleColours::red()<< m_udpComm->sError[i] << MOOS::ConsoleColours::reset() << endl;
}
}
}
catch(const std::exception& e) {
cerr << "Error processing message: " << e.what() << endl;
}
}
// 打印通信错误信息
if(!m_udpComm->sError.empty())
{
for(int i=0; i<m_udpComm->sError.size(); i++)
{
cout<<MOOS::ConsoleColours::red() << m_udpComm->sError[i] << MOOS::ConsoleColours::reset() << endl;
}
m_udpComm->sError.clear();
}
}
catch(const XPCException& e)
{
cerr << "XPCException in listenThreadFunc" << endl;
// 短暂休眠后继续尝试
MOOSPause(100);
}
catch(const std::exception& e)
{
cerr << "Exception in listenThreadFunc: " << e.what() << endl;
MOOSPause(100);
}
catch(...)
{
cerr << "Unknown exception in listenThreadFunc" << endl;
MOOSPause(100);
}
}
return true;
}
void LowerCommManager::startListenThread()
{
if(!m_ListenThread.IsThreadRunning())
{
m_ListenThread.Initialise(_ListenCB,this);
m_ListenThread.Start();
std::cout << "LowerCommManager::startListenThread" << std::endl;
}
}
void LowerCommManager::stopListenThread()
{
if(m_ListenThread.IsThreadRunning())
{
m_ListenThread.Stop();
}
}
char LowerCommManager::getBreakerOption(char cmd)
{
if(cmd ==1)
return 0x55;
else if(cmd ==0)
return 0xAA;
else
return 0x00;
}
+69
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@@ -0,0 +1,69 @@
#ifndef LOWER_COMM_MANAGER_H
#define LOWER_COMM_MANAGER_H
#define UNIX
#include "MOOS/libMOOS/Comms/XPCUdpSocket.h"
#include "MOOS/libMOOS/Utils/MOOSThread.h"
#include "MOOS/libMOOS/Utils/MOOSLock.h"
#include "ccuUdpMsg.h"
#include "pmSysvariable.h"
#include <queue>
#include <map>
#include <functional>
#include <atomic>
#include <vector>
#include "udpComm.h"
class PowerManger; // 前向声明
class LowerCommManager {
public:
LowerCommManager(PowerManger* pm, long myPort, long ccuPort, const std::string& cccHost);
~LowerCommManager();
//processPeriodicTasks
void processPeriodicTasks();
//clearMsgQueue
void clearMsgQueue();
public:
CMOOSLock m_CommMutex; // 保护UDP通信资源
// 初始化UDP通信
bool initUdpComm();
// 更新设备状态
bool updateDeviceStates();
// 发送CCU控制命令
bool sendCcuCommand(const ccuColCmd cmd);
bool sendDisSysCommand(const disSysBreakerList& cmd);
// 获取通信状态
int getConnectionState() const { return m_connectState; }
// 启动/停止监听线程
void startListenThread();
void stopListenThread();
//转换函数
char getBreakerOption(char cmd);
public:
long m_port;
long m_ccuPort;
std::string m_ccuHost;
std::string m_host;
PowerManger* m_pm;
udpComm* m_udpComm;
XPCUdpSocket* m_udpSocket;
CMOOSThread m_ListenThread;
int m_connectState;
// UDP监听线程函数
bool listenThreadFunc();
};
#endif // LOWER_COMM_MANAGER_H
+205 -216
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@@ -14,11 +14,11 @@
using namespace std; using namespace std;
bool _ListenCB(void * pParam) // bool _ListenCB(void * pParam)
{ // {
PowerManger* pMe = (PowerManger* )pParam; // // PowerManger* pMe = (PowerManger* )pParam;
return pMe->ListenLoopUDP(); // // return pMe->ListenLoopUDP();
} // }
bool _FsmCB(void * pParam) bool _FsmCB(void * pParam)
{ {
@@ -57,7 +57,7 @@ PowerManger::PowerManger()
m_MSDriverCmd = {}; m_MSDriverCmd = {};
m_subDisSysCmd = {}; m_subDisSysCmd = {};
m_subDisSysState = {}; m_subDisSysState = {};
//初始化断路器状态 //初始化控制指令
initControlCmd(); initControlCmd();
//初始化数据库 //初始化数据库
@@ -70,6 +70,10 @@ PowerManger::PowerManger()
m_db->createDriversTables(VAR_TO_STR(m_subDisSysState)); m_db->createDriversTables(VAR_TO_STR(m_subDisSysState));
m_db->createDriversTables(VAR_TO_STR(m_subDisSysCmd)); m_db->createDriversTables(VAR_TO_STR(m_subDisSysCmd));
m_db->createDriversTables(VAR_TO_STR(m_MSDriverCmd)); m_db->createDriversTables(VAR_TO_STR(m_MSDriverCmd));
//初始化UDP通信
m_lowerCommManager = new LowerCommManager(this,IPORT,CCUPORT,CCUHOST);
m_lowerCommManager->initUdpComm();
// 初始化状态机 // 初始化状态机
cout << "init fsm" << endl; cout << "init fsm" << endl;
@@ -84,6 +88,8 @@ PowerManger::PowerManger()
PowerManger::~PowerManger() PowerManger::~PowerManger()
{ {
delete m_db;
delete m_lowerCommManager;
} }
//--------------------------------------------------------- //---------------------------------------------------------
@@ -165,20 +171,20 @@ bool PowerManger::Iterate()
{ {
AppCastingMOOSApp::Iterate(); AppCastingMOOSApp::Iterate();
//1. 更新当前状态 //1. 更新当前状态
updatePmState(); // updatePmState();
updateConnectState(); updateConnectState();
//2. 运行状态机 //2. 运行状态机
if (FSM_RUN_IS_OK) // if (FSM_RUN_IS_OK)
m_FsmThread.Start(); // m_FsmThread.Start();
else // else
m_FsmThread.Stop(); // m_FsmThread.Stop();
//3. 进行操作 每秒执行一次 //3. 进行操作 每秒执行一次
if (m_ticker++ % 5 == 0) if (m_ticker++ % 5 == 0)
{ {
//a. 配电系统操作 //a. 配电系统操作
disSysOption(); // disSysOption();
//b. ccu操作 //b. ccu操作
ccuOption(); // ccuOption();
//c. 上位机反馈 //c. 上位机反馈
buildPowerSysReport(); buildPowerSysReport();
Notify(PM_TO_DB_SUBDISCMD,m_driver.saveDriverTableToJson(&m_subDisSysCmd)); Notify(PM_TO_DB_SUBDISCMD,m_driver.saveDriverTableToJson(&m_subDisSysCmd));
@@ -186,6 +192,7 @@ bool PowerManger::Iterate()
//d.保存到数据库 //d.保存到数据库
writeDataToDB(); writeDataToDB();
} }
m_lowerCommManager->processPeriodicTasks();
/////////////////////// ///////////////////////
// string a = m_driver.getSubDisCmdJson(&m_subDisSysCmd); // string a = m_driver.getSubDisCmdJson(&m_subDisSysCmd);
// saveStringToJsonFile(a,"/home/zjk/project/H100/H100PowerManger/data/subDisSysCmd.json"); // saveStringToJsonFile(a,"/home/zjk/project/H100/H100PowerManger/data/subDisSysCmd.json");
@@ -199,7 +206,7 @@ bool PowerManger::Iterate()
// return false; // return false;
//AppCastingMOOSApp::PostReport(); //AppCastingMOOSApp::PostReport();
//5. 清空UDP消息队列 //5. 清空UDP消息队列
m_udpComm.clearMsgQueue(); // m_udpComm.clearMsgQueue();
return(true); return(true);
} }
@@ -237,23 +244,7 @@ bool PowerManger::OnStartUp()
} }
registerVariables(); registerVariables();
//启动UDP监听线程 m_lowerCommManager->startListenThread();
if(m_pCcuUdpComm = setUdpScoket(IPORT))
{
cout<<MOOS::ConsoleColours::green()<< "UDP set succeed!"<< MOOS::ConsoleColours::reset() << endl;
m_udpComm.ccuHost = CCUHOST;
m_udpComm.ccuPort = CCUPORT;
m_udpComm.udpScoket = m_pCcuUdpComm;
MOOSTrace("UDP set succeed");
}
else
{
cout<<MOOS::ConsoleColours::red()<< "UDP set Fild!"<< MOOS::ConsoleColours::reset() << endl;
MOOSTrace("UDP set faile");
}
m_ListenThread.Initialise(_ListenCB,this);
m_ListenThread.Start();
m_FsmThread.Initialise(_FsmCB,this);
return(true); return(true);
} }
@@ -304,35 +295,35 @@ XPCUdpSocket* PowerManger::setUdpScoket(long lPort)
return pUdpSocket; return pUdpSocket;
} }
bool PowerManger::ListenLoopUDP() // bool PowerManger::ListenLoopUDP()
{ // {
unsigned char Buff[MAX_UDP_PKT_SIZE]; // unsigned char Buff[MAX_UDP_PKT_SIZE];
while(!m_ListenThread.IsQuitRequested()) // while(!m_ListenThread.IsQuitRequested())
{ // {
int nRead = m_pCcuUdpComm->iRecieveMessage(Buff,sizeof(Buff)); // int nRead = m_pCcuUdpComm->iRecieveMessage(Buff,sizeof(Buff));
cout<<MOOS::ConsoleColours::yellow()<< "RECEVE DATA COUNT:" << nRead << MOOS::ConsoleColours::reset() << endl; // cout<<MOOS::ConsoleColours::yellow()<< "RECEVE DATA COUNT:" << nRead << MOOS::ConsoleColours::reset() << endl;
if(nRead > 0) // if(nRead > 0)
{ // {
if(!m_udpComm.pushMsgToQueue(Buff)) // if(!m_udpComm.pushMsgToQueue(Buff))
{ // {
for(int i=0;i<m_udpComm.sError.size();i++) // for(int i=0;i<m_udpComm.sError.size();i++)
{ // {
cout<<MOOS::ConsoleColours::red()<< m_udpComm.sError[i] << MOOS::ConsoleColours::reset() << endl; // cout<<MOOS::ConsoleColours::red()<< m_udpComm.sError[i] << MOOS::ConsoleColours::reset() << endl;
} // }
} // }
} // }
// 打印通信错误信息 // // 打印通信错误信息
if(!m_udpComm.sError.empty()) // if(!m_udpComm.sError.empty())
{ // {
for(int i=0;i<m_udpComm.sError.size();i++) // for(int i=0;i<m_udpComm.sError.size();i++)
{ // {
cout<<MOOS::ConsoleColours::red() << m_udpComm.sError[i] << MOOS::ConsoleColours::reset() << endl; // cout<<MOOS::ConsoleColours::red() << m_udpComm.sError[i] << MOOS::ConsoleColours::reset() << endl;
} // }
m_udpComm.sError.clear(); // m_udpComm.sError.clear();
} // }
} // }
return true; // return true;
} // }
bool PowerManger::FsmLoop() bool PowerManger::FsmLoop()
{ {
@@ -374,108 +365,107 @@ bool PowerManger::updateConnectState()
connectState++; connectState++;
// cout << "seck:" << seck << endl; // cout << "seck:" << seck << endl;
return true; return true;
} }
bool PowerManger::updatePmState() // bool PowerManger::updatePmState()
{ // {
//1. 更新下位机状态 // //1. 更新下位机状态
if(!m_udpComm.m_qReceiveCcuStateBuffer.empty()) // if(!m_udpComm.m_qReceiveCcuStateBuffer.empty())
{ // {
double time; // double time;
m_udpComm.popMsgFormQueue(time,m_CcuCurrentState); // m_udpComm.popMsgFormQueue(time,m_CcuCurrentState);
m_pmCurrentState.ccustate = m_CcuCurrentState.data; // m_pmCurrentState.ccustate = m_CcuCurrentState.data;
m_db->insertCcuData(m_CcuCurrentState.data); //写入数据库 // m_db->insertCcuData(m_CcuCurrentState.data); //写入数据库
msg_CcuStateFbMsg_Update_time = time; // msg_CcuStateFbMsg_Update_time = time;
} // }
if(!m_udpComm.m_qReceiveDisHighVolBusBuffer.empty()) // if(!m_udpComm.m_qReceiveDisHighVolBusBuffer.empty())
{ // {
double time; // double time;
m_udpComm.popMsgFormQueue(time,m_disHighVolBusCurrentState); // m_udpComm.popMsgFormQueue(time,m_disHighVolBusCurrentState);
m_pmCurrentState.bus1State = m_disHighVolBusCurrentState.data; // m_pmCurrentState.bus1State = m_disHighVolBusCurrentState.data;
m_db->insertDisHighVolBusData(m_disHighVolBusCurrentState.data); //写入数据库 // m_db->insertDisHighVolBusData(m_disHighVolBusCurrentState.data); //写入数据库
msg_disHighVolBusFbMsg_Update_time = time; // msg_disHighVolBusFbMsg_Update_time = time;
disBus1Breaker* pdis1=new disBus1Breaker; // disBus1Breaker* pdis1=new disBus1Breaker;
(m_pmCurrentState.bus1State.fuelCellCircuitBreaker == BREAK_ON) ? pdis1 -> fuelCellCircuitBreaker = 1 : pdis1 -> fuelCellCircuitBreaker = 0; // (m_pmCurrentState.bus1State.fuelCellCircuitBreaker == BREAK_ON) ? pdis1 -> fuelCellCircuitBreaker = 1 : pdis1 -> fuelCellCircuitBreaker = 0;
(m_pmCurrentState.bus1State.powerLithiumBatteryCircuitBreaker == BREAK_ON) ? pdis1 -> powerLithiumBatteryCircuitBreaker = 1 : pdis1 -> powerLithiumBatteryCircuitBreaker = 0; // (m_pmCurrentState.bus1State.powerLithiumBatteryCircuitBreaker == BREAK_ON) ? pdis1 -> powerLithiumBatteryCircuitBreaker = 1 : pdis1 -> powerLithiumBatteryCircuitBreaker = 0;
(m_pmCurrentState.bus1State.propulsionMotorCircuitBreaker == BREAK_ON) ? pdis1 -> propulsionMotorCircuitBreaker = 1 : pdis1 -> propulsionMotorCircuitBreaker = 0; // (m_pmCurrentState.bus1State.propulsionMotorCircuitBreaker == BREAK_ON) ? pdis1 -> propulsionMotorCircuitBreaker = 1 : pdis1 -> propulsionMotorCircuitBreaker = 0;
(m_pmCurrentState.bus1State.lithiumBatteryGroupInstrumentCircuitBreaker == BREAK_ON) ? pdis1 -> lithiumBatteryGroupInstrumentCircuitBreaker = 1 : pdis1 -> lithiumBatteryGroupInstrumentCircuitBreaker = 0; // (m_pmCurrentState.bus1State.lithiumBatteryGroupInstrumentCircuitBreaker == BREAK_ON) ? pdis1 -> lithiumBatteryGroupInstrumentCircuitBreaker = 1 : pdis1 -> lithiumBatteryGroupInstrumentCircuitBreaker = 0;
(m_pmCurrentState.bus1State.dcDc5ModuleCircuitBreaker == BREAK_ON) ? pdis1 -> dcDc5ModuleCircuitBreaker = 1 : pdis1 -> dcDc5ModuleCircuitBreaker = 0; // (m_pmCurrentState.bus1State.dcDc5ModuleCircuitBreaker == BREAK_ON) ? pdis1 -> dcDc5ModuleCircuitBreaker = 1 : pdis1 -> dcDc5ModuleCircuitBreaker = 0;
(m_pmCurrentState.bus1State.bowHighVoltageDistributionBoxCircuitBreaker == BREAK_ON) ? pdis1 -> bowHighVoltageDistributionBoxCircuitBreaker = 1 : pdis1 -> bowHighVoltageDistributionBoxCircuitBreaker = 0; // (m_pmCurrentState.bus1State.bowHighVoltageDistributionBoxCircuitBreaker == BREAK_ON) ? pdis1 -> bowHighVoltageDistributionBoxCircuitBreaker = 1 : pdis1 -> bowHighVoltageDistributionBoxCircuitBreaker = 0;
(m_pmCurrentState.bus1State.sternFTDevice45CircuitBreaker == BREAK_ON) ? pdis1 -> sternFTDevice45CircuitBreaker = 1 : pdis1 -> sternFTDevice45CircuitBreaker = 0; // (m_pmCurrentState.bus1State.sternFTDevice45CircuitBreaker == BREAK_ON) ? pdis1 -> sternFTDevice45CircuitBreaker = 1 : pdis1 -> sternFTDevice45CircuitBreaker = 0;
(m_pmCurrentState.bus1State.sternRudderSwitch1CircuitBreaker == BREAK_ON) ? pdis1 -> sternRudderSwitch1CircuitBreaker = 1 : pdis1 -> sternRudderSwitch1CircuitBreaker = 0; // (m_pmCurrentState.bus1State.sternRudderSwitch1CircuitBreaker == BREAK_ON) ? pdis1 -> sternRudderSwitch1CircuitBreaker = 1 : pdis1 -> sternRudderSwitch1CircuitBreaker = 0;
(m_pmCurrentState.bus1State.sternRudderSwitch2CircuitBreaker == BREAK_ON) ? pdis1 -> sternRudderSwitch2CircuitBreaker = 1 : pdis1 -> sternRudderSwitch2CircuitBreaker = 0; // (m_pmCurrentState.bus1State.sternRudderSwitch2CircuitBreaker == BREAK_ON) ? pdis1 -> sternRudderSwitch2CircuitBreaker = 1 : pdis1 -> sternRudderSwitch2CircuitBreaker = 0;
(m_pmCurrentState.bus1State.fbReservedCircuitBreaker == BREAK_ON) ? pdis1 -> fbReservedCircuitBreaker = 1 : pdis1 -> fbReservedCircuitBreaker = 0; // (m_pmCurrentState.bus1State.fbReservedCircuitBreaker == BREAK_ON) ? pdis1 -> fbReservedCircuitBreaker = 1 : pdis1 -> fbReservedCircuitBreaker = 0;
(m_pmCurrentState.bus1State.tyzReservedCircuitBreaker == BREAK_ON) ? pdis1 -> tyzReservedCircuitBreaker = 1 : pdis1 -> tyzReservedCircuitBreaker = 0; // (m_pmCurrentState.bus1State.tyzReservedCircuitBreaker == BREAK_ON) ? pdis1 -> tyzReservedCircuitBreaker = 1 : pdis1 -> tyzReservedCircuitBreaker = 0;
(m_pmCurrentState.bus1State.reservedCircuitBreaker == BREAK_ON) ? pdis1 -> reservedCircuitBreaker = 1 : pdis1 -> reservedCircuitBreaker = 0; // (m_pmCurrentState.bus1State.reservedCircuitBreaker == BREAK_ON) ? pdis1 -> reservedCircuitBreaker = 1 : pdis1 -> reservedCircuitBreaker = 0;
pdis1 -> paceholder = 0; // pdis1 -> paceholder = 0;
m_currentDisBreakerState.bus1Breaker = *pdis1; // m_currentDisBreakerState.bus1Breaker = *pdis1;
delete pdis1; // delete pdis1;
} // }
if(!m_udpComm.m_qReceiveDisHighAVolBusBuffer.empty()) // if(!m_udpComm.m_qReceiveDisHighAVolBusBuffer.empty())
{ // {
double time; // double time;
m_udpComm.popMsgFormQueue(time,m_disHighAVolBusCurrentState); // m_udpComm.popMsgFormQueue(time,m_disHighAVolBusCurrentState);
m_pmCurrentState.bus2State = m_disHighAVolBusCurrentState.data; // m_pmCurrentState.bus2State = m_disHighAVolBusCurrentState.data;
m_db->insertDisHighAVolBusData(m_disHighAVolBusCurrentState.data); //写入数据库 // m_db->insertDisHighAVolBusData(m_disHighAVolBusCurrentState.data); //写入数据库
msg_disHighAVolBusFbMsg_Update_time = time; // msg_disHighAVolBusFbMsg_Update_time = time;
disBus2Breaker* pdis2=new disBus2Breaker; // disBus2Breaker* pdis2=new disBus2Breaker;
(m_pmCurrentState.bus2State.bowFTDevice123CircuitBreaker == BREAK_ON)? pdis2 -> bowFTDevice123CircuitBreaker = 1 : pdis2 -> bowFTDevice123CircuitBreaker = 0; // (m_pmCurrentState.bus2State.bowFTDevice123CircuitBreaker == BREAK_ON)? pdis2 -> bowFTDevice123CircuitBreaker = 1 : pdis2 -> bowFTDevice123CircuitBreaker = 0;
(m_pmCurrentState.bus2State.actuatorCircuitBreaker == BREAK_ON)? pdis2 -> actuatorCircuitBreaker = 1 : pdis2 -> actuatorCircuitBreaker = 0; // (m_pmCurrentState.bus2State.actuatorCircuitBreaker == BREAK_ON)? pdis2 -> actuatorCircuitBreaker = 1 : pdis2 -> actuatorCircuitBreaker = 0;
(m_pmCurrentState.bus2State.mastSteeringGearControlBoxCircuitBreaker == BREAK_ON)? pdis2 -> mastSteeringGearControlBoxCircuitBreaker = 1 : pdis2 -> mastSteeringGearControlBoxCircuitBreaker = 0; // (m_pmCurrentState.bus2State.mastSteeringGearControlBoxCircuitBreaker == BREAK_ON)? pdis2 -> mastSteeringGearControlBoxCircuitBreaker = 1 : pdis2 -> mastSteeringGearControlBoxCircuitBreaker = 0;
(m_pmCurrentState.bus2State.xczCircuitBreaker == BREAK_ON)? pdis2 -> xczCircuitBreaker = 1 : pdis2 -> xczCircuitBreaker = 0; // (m_pmCurrentState.bus2State.xczCircuitBreaker == BREAK_ON)? pdis2 -> xczCircuitBreaker = 1 : pdis2 -> xczCircuitBreaker = 0;
(m_pmCurrentState.bus2State.bowRudderControlBoxCircuitBreaker == BREAK_ON)? pdis2 -> bowRudderControlBoxCircuitBreaker = 1 : pdis2 -> bowRudderControlBoxCircuitBreaker = 0; // (m_pmCurrentState.bus2State.bowRudderControlBoxCircuitBreaker == BREAK_ON)? pdis2 -> bowRudderControlBoxCircuitBreaker = 1 : pdis2 -> bowRudderControlBoxCircuitBreaker = 0;
(m_pmCurrentState.bus2State.openWaterCoverStartCylinderCircuitBreaker == BREAK_ON)? pdis2 -> openWaterCoverStartCylinderCircuitBreaker = 1 : pdis2 -> openWaterCoverStartCylinderCircuitBreaker = 0; // (m_pmCurrentState.bus2State.openWaterCoverStartCylinderCircuitBreaker == BREAK_ON)? pdis2 -> openWaterCoverStartCylinderCircuitBreaker = 1 : pdis2 -> openWaterCoverStartCylinderCircuitBreaker = 0;
pdis2 -> paceholder = 0; // pdis2 -> paceholder = 0;
m_currentDisBreakerState.bus2Breaker = *pdis2; // m_currentDisBreakerState.bus2Breaker = *pdis2;
delete pdis2; // delete pdis2;
} // }
if(!m_udpComm.m_qReceiveDisHighBVolBusBuffer.empty()) // if(!m_udpComm.m_qReceiveDisHighBVolBusBuffer.empty())
{ // {
double time; // double time;
m_udpComm.popMsgFormQueue(time,m_disHighBVolBusCurrentState); // m_udpComm.popMsgFormQueue(time,m_disHighBVolBusCurrentState);
m_pmCurrentState.bus3State = m_disHighBVolBusCurrentState.data; // m_pmCurrentState.bus3State = m_disHighBVolBusCurrentState.data;
m_db->insertDisHighBVolBusData(m_disHighBVolBusCurrentState.data); //写入数据库 // m_db->insertDisHighBVolBusData(m_disHighBVolBusCurrentState.data); //写入数据库
msg_disHighBVolBusFbMsg_Update_time = time; // msg_disHighBVolBusFbMsg_Update_time = time;
disBus3Breaker* pdis3=new disBus3Breaker; // disBus3Breaker* pdis3=new disBus3Breaker;
(m_pmCurrentState.bus3State.lithiumBatteryGroupInstrumentCircuitBreaker == BREAK_ON)? pdis3 -> lithiumBatteryGroupInstrumentCircuitBreaker = 1 : pdis3 -> lithiumBatteryGroupInstrumentCircuitBreaker = 0; // (m_pmCurrentState.bus3State.lithiumBatteryGroupInstrumentCircuitBreaker == BREAK_ON)? pdis3 -> lithiumBatteryGroupInstrumentCircuitBreaker = 1 : pdis3 -> lithiumBatteryGroupInstrumentCircuitBreaker = 0;
(m_pmCurrentState.bus3State.bowLowVoltageDistributionBoxCircuitBreaker == BREAK_ON)? pdis3 -> bowLowVoltageDistributionBoxCircuitBreaker = 1 : pdis3 -> bowLowVoltageDistributionBoxCircuitBreaker = 0; // (m_pmCurrentState.bus3State.bowLowVoltageDistributionBoxCircuitBreaker == BREAK_ON)? pdis3 -> bowLowVoltageDistributionBoxCircuitBreaker = 1 : pdis3 -> bowLowVoltageDistributionBoxCircuitBreaker = 0;
(m_pmCurrentState.bus3State.unit4InstrumentDC48VCircuitBreaker == BREAK_ON)? pdis3 -> unit4InstrumentDC48VCircuitBreaker = 1 : pdis3 -> unit4InstrumentDC48VCircuitBreaker = 0; // (m_pmCurrentState.bus3State.unit4InstrumentDC48VCircuitBreaker == BREAK_ON)? pdis3 -> unit4InstrumentDC48VCircuitBreaker = 1 : pdis3 -> unit4InstrumentDC48VCircuitBreaker = 0;
(m_pmCurrentState.bus3State.dcC1DCDistributionPanelCircuitBreaker == BREAK_ON)? pdis3 -> dcC1DCDistributionPanelCircuitBreaker = 1 : pdis3 -> dcC1DCDistributionPanelCircuitBreaker = 0; // (m_pmCurrentState.bus3State.dcC1DCDistributionPanelCircuitBreaker == BREAK_ON)? pdis3 -> dcC1DCDistributionPanelCircuitBreaker = 1 : pdis3 -> dcC1DCDistributionPanelCircuitBreaker = 0;
(m_pmCurrentState.bus3State.reservedCircuitBreaker1 == BREAK_ON)? pdis3 -> reservedCircuitBreaker1 = 1 : pdis3 -> reservedCircuitBreaker1 = 0; // (m_pmCurrentState.bus3State.reservedCircuitBreaker1 == BREAK_ON)? pdis3 -> reservedCircuitBreaker1 = 1 : pdis3 -> reservedCircuitBreaker1 = 0;
(m_pmCurrentState.bus3State.reservedCircuitBreaker2 == BREAK_ON)? pdis3 -> reservedCircuitBreaker2 = 1 : pdis3 -> reservedCircuitBreaker2 = 0; // (m_pmCurrentState.bus3State.reservedCircuitBreaker2 == BREAK_ON)? pdis3 -> reservedCircuitBreaker2 = 1 : pdis3 -> reservedCircuitBreaker2 = 0;
(m_pmCurrentState.bus3State.emergencyLithiumBatteryGroup2CircuitBreaker == BREAK_ON)? pdis3 -> emergencyLithiumBatteryGroup2CircuitBreaker = 1 : pdis3 -> emergencyLithiumBatteryGroup2CircuitBreaker = 0; // (m_pmCurrentState.bus3State.emergencyLithiumBatteryGroup2CircuitBreaker == BREAK_ON)? pdis3 -> emergencyLithiumBatteryGroup2CircuitBreaker = 1 : pdis3 -> emergencyLithiumBatteryGroup2CircuitBreaker = 0;
pdis3->paceholder = 0; // pdis3->paceholder = 0;
m_currentDisBreakerState.bus3Breaker = *pdis3; // m_currentDisBreakerState.bus3Breaker = *pdis3;
delete pdis3; // delete pdis3;
} // }
if(!m_udpComm.m_qReceiveDisLowBusBuffer.empty()) // if(!m_udpComm.m_qReceiveDisLowBusBuffer.empty())
{ // {
double time; // double time;
m_udpComm.popMsgFormQueue(time,m_disLowBusState); // m_udpComm.popMsgFormQueue(time,m_disLowBusState);
m_pmCurrentState.bus4State = m_disLowBusState.data; // m_pmCurrentState.bus4State = m_disLowBusState.data;
m_db->insertDisLowBusData(m_disLowBusState.data); //写入数据库 // m_db->insertDisLowBusData(m_disLowBusState.data); //写入数据库
msg_disLowBusFbMsg_Update_time = time; // msg_disLowBusFbMsg_Update_time = time;
disBus4Breaker* pdis4=new disBus4Breaker; // disBus4Breaker* pdis4=new disBus4Breaker;
(m_pmCurrentState.bus4State.unit1CircuitBreaker == BREAK_ON)? pdis4 -> unit1CircuitBreaker = 1 : pdis4 -> unit1CircuitBreaker = 0; // (m_pmCurrentState.bus4State.unit1CircuitBreaker == BREAK_ON)? pdis4 -> unit1CircuitBreaker = 1 : pdis4 -> unit1CircuitBreaker = 0;
(m_pmCurrentState.bus4State.unit2CircuitBreaker == BREAK_ON)? pdis4 -> unit2CircuitBreaker = 1 : pdis4 -> unit2CircuitBreaker = 0; // (m_pmCurrentState.bus4State.unit2CircuitBreaker == BREAK_ON)? pdis4 -> unit2CircuitBreaker = 1 : pdis4 -> unit2CircuitBreaker = 0;
(m_pmCurrentState.bus4State.unit3CircuitBreaker == BREAK_ON)? pdis4 -> unit3CircuitBreaker = 1 : pdis4 -> unit3CircuitBreaker = 0; // (m_pmCurrentState.bus4State.unit3CircuitBreaker == BREAK_ON)? pdis4 -> unit3CircuitBreaker = 1 : pdis4 -> unit3CircuitBreaker = 0;
(m_pmCurrentState.bus4State.unit5CircuitBreaker == BREAK_ON)? pdis4 -> unit5CircuitBreaker = 1 : pdis4 -> unit5CircuitBreaker = 0; // (m_pmCurrentState.bus4State.unit5CircuitBreaker == BREAK_ON)? pdis4 -> unit5CircuitBreaker = 1 : pdis4 -> unit5CircuitBreaker = 0;
(m_pmCurrentState.bus4State.bowPZDeviceCircuitBreaker == BREAK_ON)? pdis4 -> bowPZDeviceCircuitBreaker = 1 : pdis4 -> bowPZDeviceCircuitBreaker = 0; // (m_pmCurrentState.bus4State.bowPZDeviceCircuitBreaker == BREAK_ON)? pdis4 -> bowPZDeviceCircuitBreaker = 1 : pdis4 -> bowPZDeviceCircuitBreaker = 0;
(m_pmCurrentState.bus4State.reservedCircuitBreaker1 == BREAK_ON)? pdis4 -> reservedCircuitBreaker1 = 1 : pdis4 -> reservedCircuitBreaker1 = 0; // (m_pmCurrentState.bus4State.reservedCircuitBreaker1 == BREAK_ON)? pdis4 -> reservedCircuitBreaker1 = 1 : pdis4 -> reservedCircuitBreaker1 = 0;
(m_pmCurrentState.bus4State.reservedCircuitBreaker2 == BREAK_ON)? pdis4 -> reservedCircuitBreaker2 = 1 : pdis4 -> reservedCircuitBreaker2 = 0; // (m_pmCurrentState.bus4State.reservedCircuitBreaker2 == BREAK_ON)? pdis4 -> reservedCircuitBreaker2 = 1 : pdis4 -> reservedCircuitBreaker2 = 0;
(m_pmCurrentState.bus4State.emergencyLithiumBatteryGroup1CircuitBreaker == BREAK_ON)? pdis4 -> emergencyLithiumBatteryGroup1CircuitBreaker = 1 : pdis4 -> emergencyLithiumBatteryGroup1CircuitBreaker = 0; // (m_pmCurrentState.bus4State.emergencyLithiumBatteryGroup1CircuitBreaker == BREAK_ON)? pdis4 -> emergencyLithiumBatteryGroup1CircuitBreaker = 1 : pdis4 -> emergencyLithiumBatteryGroup1CircuitBreaker = 0;
pdis4 -> paceholder = 0; // pdis4 -> paceholder = 0;
m_currentDisBreakerState.bus4Breaker = *pdis4; // m_currentDisBreakerState.bus4Breaker = *pdis4;
delete pdis4; // delete pdis4;
} // }
return true; // return true;
} // }
bool PowerManger::IsSkewed(double dfTimeNow, double * pdfSkew) bool PowerManger::IsSkewed(double dfTimeNow, double * pdfSkew)
@@ -488,68 +478,68 @@ bool PowerManger::IsSkewed(double dfTimeNow, double * pdfSkew)
return (dfSkew > SKEW_TOLERANCE) ? true : false; return (dfSkew > SKEW_TOLERANCE) ? true : false;
} }
void PowerManger::ccuOption() // void PowerManger::ccuOption()
{ // {
m_db->insertCcuSysCmd(m_CcuColCmd); // m_db->insertCcuSysCmd(m_CcuColCmd);
if(!m_udpComm.sendCcuColCmd(m_CcuColCmd)) // if(!m_udpComm.sendCcuColCmd(m_CcuColCmd))
cout << "send ccu col cmd failed!" << endl; // cout << "send ccu col cmd failed!" << endl;
} // }
void PowerManger::disSysOption() // void PowerManger::disSysOption()
{ // {
//根据目标状态进行断路器操作 // //根据目标状态进行断路器操作
//a. 高压母线的断路器 // //a. 高压母线的断路器
disHighVolBusCmd a; // disHighVolBusCmd a;
a.fuelCellCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.fuelCellCircuitBreaker); // a.fuelCellCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.fuelCellCircuitBreaker);
a.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.lithiumBatteryGroupInstrumentCircuitBreaker); // a.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.lithiumBatteryGroupInstrumentCircuitBreaker);
a.dcDc5ModuleCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.dcDc5ModuleCircuitBreaker); // a.dcDc5ModuleCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.dcDc5ModuleCircuitBreaker);
a.powerLithiumBatteryCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.powerLithiumBatteryCircuitBreaker); // a.powerLithiumBatteryCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.powerLithiumBatteryCircuitBreaker);
a.propulsionMotorCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.propulsionMotorCircuitBreaker); // a.propulsionMotorCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.propulsionMotorCircuitBreaker);
a.bowHighVoltageDistributionBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.bowHighVoltageDistributionBoxCircuitBreaker); // a.bowHighVoltageDistributionBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.bowHighVoltageDistributionBoxCircuitBreaker);
a.tyzReservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.tyzReservedCircuitBreaker); // a.tyzReservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.tyzReservedCircuitBreaker);
a.sternFTDevice45CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternFTDevice45CircuitBreaker); // a.sternFTDevice45CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternFTDevice45CircuitBreaker);
a.sternRudderSwitch1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternRudderSwitch1CircuitBreaker); // a.sternRudderSwitch1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternRudderSwitch1CircuitBreaker);
a.sternRudderSwitch2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternRudderSwitch2CircuitBreaker); // a.sternRudderSwitch2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.sternRudderSwitch2CircuitBreaker);
a.reservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.reservedCircuitBreaker); // a.reservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.reservedCircuitBreaker);
a.fbReservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.fbReservedCircuitBreaker); // a.fbReservedCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus1Breaker.fbReservedCircuitBreaker);
m_udpComm.sendDisSysCmd(a); // m_udpComm.sendDisSysCmd(a);
//b. 高压汇流排A断路器 // //b. 高压汇流排A断路器
disHighAVolBusCmd b; // disHighAVolBusCmd b;
b.bowFTDevice123CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.bowFTDevice123CircuitBreaker); // b.bowFTDevice123CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.bowFTDevice123CircuitBreaker);
b.actuatorCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.actuatorCircuitBreaker); // b.actuatorCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.actuatorCircuitBreaker);
b.mastSteeringGearControlBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.mastSteeringGearControlBoxCircuitBreaker); // b.mastSteeringGearControlBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.mastSteeringGearControlBoxCircuitBreaker);
b.xczCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.xczCircuitBreaker); // b.xczCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.xczCircuitBreaker);
b.bowRudderControlBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.bowRudderControlBoxCircuitBreaker); // b.bowRudderControlBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.bowRudderControlBoxCircuitBreaker);
b.openWaterCoverStartCylinderCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.openWaterCoverStartCylinderCircuitBreaker); // b.openWaterCoverStartCylinderCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus2Breaker.openWaterCoverStartCylinderCircuitBreaker);
m_udpComm.sendDisSysCmd(b); // m_udpComm.sendDisSysCmd(b);
//c. 高压汇流排B断路器 // //c. 高压汇流排B断路器
disHighBVolBusCmd c; // disHighBVolBusCmd c;
c.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.lithiumBatteryGroupInstrumentCircuitBreaker); // c.lithiumBatteryGroupInstrumentCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.lithiumBatteryGroupInstrumentCircuitBreaker);
c.bowLowVoltageDistributionBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.bowLowVoltageDistributionBoxCircuitBreaker); // c.bowLowVoltageDistributionBoxCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.bowLowVoltageDistributionBoxCircuitBreaker);
c.unit4InstrumentDC48VCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.unit4InstrumentDC48VCircuitBreaker); // c.unit4InstrumentDC48VCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.unit4InstrumentDC48VCircuitBreaker);
c.dcC1DCDistributionPanelCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.dcC1DCDistributionPanelCircuitBreaker); // c.dcC1DCDistributionPanelCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.dcC1DCDistributionPanelCircuitBreaker);
c.reservedCircuitBreaker1 = getBreakerOption(m_targetDisBreakerState.bus3Breaker.reservedCircuitBreaker1); // c.reservedCircuitBreaker1 = getBreakerOption(m_targetDisBreakerState.bus3Breaker.reservedCircuitBreaker1);
c.reservedCircuitBreaker2 = getBreakerOption(m_targetDisBreakerState.bus3Breaker.reservedCircuitBreaker2); // c.reservedCircuitBreaker2 = getBreakerOption(m_targetDisBreakerState.bus3Breaker.reservedCircuitBreaker2);
c.emergencyLithiumBatteryGroup2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.emergencyLithiumBatteryGroup2CircuitBreaker); // c.emergencyLithiumBatteryGroup2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus3Breaker.emergencyLithiumBatteryGroup2CircuitBreaker);
m_udpComm.sendDisSysCmd(c); // m_udpComm.sendDisSysCmd(c);
//d. 闭合低压汇流排断路器 // //d. 闭合低压汇流排断路器
disLowBusCmd d; // disLowBusCmd d;
d.unit1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit1CircuitBreaker); // d.unit1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit1CircuitBreaker);
d.unit2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit2CircuitBreaker); // d.unit2CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit2CircuitBreaker);
d.unit3CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit3CircuitBreaker); // d.unit3CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit3CircuitBreaker);
d.unit5CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit5CircuitBreaker); // d.unit5CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.unit5CircuitBreaker);
d.bowPZDeviceCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.bowPZDeviceCircuitBreaker); // d.bowPZDeviceCircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.bowPZDeviceCircuitBreaker);
d.reservedCircuitBreaker1 = getBreakerOption(m_targetDisBreakerState.bus4Breaker.reservedCircuitBreaker1); // d.reservedCircuitBreaker1 = getBreakerOption(m_targetDisBreakerState.bus4Breaker.reservedCircuitBreaker1);
d.reservedCircuitBreaker2 = getBreakerOption(m_targetDisBreakerState.bus4Breaker.reservedCircuitBreaker2); // d.reservedCircuitBreaker2 = getBreakerOption(m_targetDisBreakerState.bus4Breaker.reservedCircuitBreaker2);
d.emergencyLithiumBatteryGroup1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.emergencyLithiumBatteryGroup1CircuitBreaker); // d.emergencyLithiumBatteryGroup1CircuitBreaker = getBreakerOption(m_targetDisBreakerState.bus4Breaker.emergencyLithiumBatteryGroup1CircuitBreaker);
m_udpComm.sendDisSysCmd(d); // m_udpComm.sendDisSysCmd(d);
//将指令写入数据库 // //将指令写入数据库
m_db->insertDisSysCmd(a); // m_db->insertDisSysCmd(a);
m_db->insertDisSysCmd(b); // m_db->insertDisSysCmd(b);
m_db->insertDisSysCmd(c); // m_db->insertDisSysCmd(c);
m_db->insertDisSysCmd(d); // m_db->insertDisSysCmd(d);
} // }
bool PowerManger::saveStringToJsonFile(const string &strJson, const string &filePath) bool PowerManger::saveStringToJsonFile(const string &strJson, const string &filePath)
@@ -568,7 +558,6 @@ bool PowerManger::saveStringToJsonFile(const string &strJson, const string &file
bool PowerManger::writeDataToDB() bool PowerManger::writeDataToDB()
{ {
// //写入配电系统状态 // //写入配电系统状态
// if(!m_db->insertDisCcuData(m_pmCurrentState)) // if(!m_db->insertDisCcuData(m_pmCurrentState))
// return false; // return false;
+31 -22
View File
@@ -36,6 +36,7 @@ class PowerManagerFsm;
#include "PowerManagerFsm.hpp" #include "PowerManagerFsm.hpp"
#include "SQLiteDB.h" #include "SQLiteDB.h"
#include "driver.h" #include "driver.h"
#include "LowerCommManager.h"
#define VAR_TO_STR(var) #var #define VAR_TO_STR(var) #var
@@ -99,34 +100,44 @@ class PowerManger : public AppCastingMOOSApp
double msg_disHighAVolBusFbMsg_Update_time; double msg_disHighAVolBusFbMsg_Update_time;
double msg_disHighBVolBusFbMsg_Update_time; double msg_disHighBVolBusFbMsg_Update_time;
double msg_disLowBusFbMsg_Update_time; double msg_disLowBusFbMsg_Update_time;
/************************************************************/
/* |<------------FEEDBACK--------<-- */
/* | | */
/* IN-->+-------[STATE CONTROL]---------+--->OUT */
/* */
/************************************************************/
public: public:
//===========================交互状态变量================================== //===========================IN============================================
Driver m_driver; //设备驱动 DriverTable m_MSDriverCmd;
MSControlCmd m_msCmd;
//===========================OUT===========================================
DriverTable m_subDisSysCmd;
ccuColCmd m_CcuColCmd;
disSysBreakerList m_targetDisBreakerState;
//===========================FEEDBACK======================================
pmState m_pmCurrentState; //能源系统的当前状态 pmState m_pmCurrentState; //能源系统的当前状态
disSysBreakerList m_currentDisBreakerState; //配电断路器状态 disSysBreakerList m_currentDisBreakerState; //配电断路器状态
disSysBreakerList m_targetDisBreakerState;
DriverTable m_currentDriverState; DriverTable m_currentDriverState;
DriverTable m_MSDriverCmd;
DriverTable m_subDisSysCmd;
DriverTable m_subDisSysState; DriverTable m_subDisSysState;
std::string m_pmEvent; // 状态机事件描述 //===========================STATE=========================================
//=============================运行变量====================================== unsigned char workCondition;
unsigned char currentMod;
unsigned char powerState;
unsigned char falutLevel;
vector<unsigned int> faultCode;
unsigned int soc;
unsigned int sustainableTime;
//===========================CONFIG========================================
long m_lPort; long m_lPort;
unsigned int m_nReceiveBufferSizeKB; unsigned int m_nReceiveBufferSizeKB;
unsigned int m_nSendBufferSizeKB; unsigned int m_nSendBufferSizeKB;
double m_current_time; double m_current_time;
unsigned int m_faultNum; unsigned int m_faultNum;
unsigned int m_ticker; unsigned int m_ticker;
//=========================================================================== //===========================交互状态变量==================================
//系统运行状态 Driver m_driver; //设备驱动
unsigned char workCondition; std::string m_pmEvent; // 状态机事件描述
unsigned char currentMod; //=============================运行变量======================================
unsigned char powerState;
unsigned char falutLevel;
vector<unsigned int> faultCode;
unsigned int soc;
unsigned int sustainableTime;
// 配电和CCU的反馈状态 // 配电和CCU的反馈状态
msg_CcuStateFbMsg m_CcuCurrentState; msg_CcuStateFbMsg m_CcuCurrentState;
msg_disHighVolBusFbMsg m_disHighVolBusCurrentState; msg_disHighVolBusFbMsg m_disHighVolBusCurrentState;
@@ -135,7 +146,6 @@ class PowerManger : public AppCastingMOOSApp
msg_disLowBusFbMsg m_disLowBusState; msg_disLowBusFbMsg m_disLowBusState;
//下位机操作函数 //下位机操作函数
ccuColCmd m_CcuColCmd;
void disSysOption(); void disSysOption();
void ccuOption(); void ccuOption();
@@ -143,16 +153,15 @@ class PowerManger : public AppCastingMOOSApp
void initControlCmd(); void initControlCmd();
//上位机操作函数 //上位机操作函数
MSControlCmd m_msCmd;
bool buildPowerSysReport(); bool buildPowerSysReport();
bool getMsCmdFromJson(MSControlCmd &cmd,const string &strJson); bool getMsCmdFromJson(MSControlCmd &cmd,const string &strJson);
private: private:
udpComm m_udpComm;
XPCUdpSocket *m_pCcuUdpComm;
CMOOSThread m_ListenThread; CMOOSThread m_ListenThread;
CMOOSThread m_FsmThread; CMOOSThread m_FsmThread;
LowerCommManager* m_lowerCommManager;
// 状态机实例 // 状态机实例
PowerManagerFsm m_fsm; PowerManagerFsm m_fsm;
+45
View File
@@ -0,0 +1,45 @@
#include "UpperCommManager.h"
#include "PowerManger.h"
#include "driver.h"
UpperCommManager::UpperCommManager(PowerManger* pm) : m_pm(pm) {}
bool UpperCommManager::processUpperMsg(const string& key, const string& strJson) {
if(key == DB_TO_PM_MSCMD) {
if(m_pm->getMsCmdFromJson(m_pm->m_msCmd, strJson)) {
cout << "get ms cmd:" << strJson << endl;
return true;
} else {
cout << MOOS::ConsoleColours::Red << "get ms cmd error:" << strJson
<< MOOS::ConsoleColours::reset << endl;
}
}
else if(key == DB_TO_PM_EQUIPMENTCMD) {
if(m_pm->m_driver.loadDriverTableFromJson(strJson, m_pm->m_subDisSysCmd) < 0) {
cout << MOOS::ConsoleColours::Red << "get sub dis cmd error:" << strJson
<< MOOS::ConsoleColours::reset << endl;
}
return true;
}
else if(key == DB_TO_PM_SUBDISSTATE) {
if(m_pm->m_driver.loadDriverTableFromJson(strJson, m_pm->m_subDisSysState) < 0) {
cout << MOOS::ConsoleColours::Red << "get sub dis state error:" << strJson
<< MOOS::ConsoleColours::reset << endl;
}
return true;
}
return false;
}
void UpperCommManager::processPeriodicTasks() {
buildPowerSysReport();
Notify(PM_TO_DB_SUBDISCMD,
m_pm->m_driver.saveDriverTableToJson(&m_pm->m_subDisSysCmd));
Notify(PM_TO_DB_EQUIPMENTSTATE,
m_pm->m_driver.saveDriverTableToJson(&m_pm->m_currentDriverState));
}
void UpperCommManager::buildPowerSysReport() {
// 原有buildPowerSysReport实现
// 需要从PowerManger.cpp迁移过来
}
+37
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@@ -0,0 +1,37 @@
#ifndef UPPER_COMM_MANAGER_H
#define UPPER_COMM_MANAGER_H
#include "MOOS/libMOOS/Thirdparty/AppCasting/AppCastingMOOSApp.h"
#include "pmSysvariable.h"
#include "driver.h"
#include "json/json.h"
class PowerManger; // 前向声明
class UpperCommManager {
public:
UpperCommManager(PowerManger* powerManager);
~UpperCommManager();
// 处理上位机消息
bool processUpperMsg(const std::string& key, const std::string& msg);
// 生成系统报告
bool buildSystemReport();
// 获取控制命令
const MSControlCmd& getControlCmd() const { return m_msCmd; }
// 更新设备命令状态
void updateEquipmentCmd(const DriverTable& cmd);
private:
PowerManger* m_powerManager;
MSControlCmd m_msCmd;
Driver m_driver;
// 从JSON解析控制命令
bool parseControlCmdFromJson(MSControlCmd &cmd, const std::string &strJson);
};
#endif // UPPER_COMM_MANAGER_H
+15 -2
View File
@@ -4,10 +4,17 @@
udpComm::udpComm() udpComm::udpComm()
{ {
udpScoket = nullptr;
ccuHost = "";
ccuPort = 0;
} }
udpComm::~udpComm() {} udpComm::~udpComm() {
if (udpScoket) {
delete udpScoket;
udpScoket = nullptr;
}
}
Checksum udpComm::calculateChecksum(const unsigned char* data, int size) Checksum udpComm::calculateChecksum(const unsigned char* data, int size)
@@ -490,6 +497,12 @@ bool udpComm::sendCcuColCmd(const ccuColCmd cmd)
msg->checkCode = static_cast<cChecksum>(cc & 0xFF); msg->checkCode = static_cast<cChecksum>(cc & 0xFF);
try try
{ {
if(udpScoket == nullptr) {
throw std::runtime_error("UDP socket not initialized");
}
if(ccuHost.empty() || ccuPort <= 0 || ccuPort > 65535) {
throw std::runtime_error("Invalid CCU address: " + ccuHost + ":" + std::to_string(ccuPort));
}
sendMsg(msgBuf,sizeof(msg_CcuColCmdMsg)); sendMsg(msgBuf,sizeof(msg_CcuColCmdMsg));
} }
catch(const std::exception& e) catch(const std::exception& e)