130 lines
6.0 KiB
C
130 lines
6.0 KiB
C
#ifndef BL_PARAMETER_H_
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#define BL_PARAMETER_H_
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#include "main.h"
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#include "comm_types.h"
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#include "chargControlTypes.h"
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#include "configParameter.h"
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// #pragma pack(push,1)
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/* 主要有配置文件读取出来的数据 */
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typedef struct _config_parameter{
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uint8_t uniqueDeviceID[7]; /* 设备唯一ID */
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uint32_t gw485_Baud; /* 串口波特率 */
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uint32_t bat485_Baud; /* 串口波特率,为0代表bms不支持通信 */
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uint8_t powerBoxType; /* 是否只充当电源板:0x00:不是;0xFF:是*/
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float constantVoltageV; /* 恒压充电阈值电压(V) */
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float floatI; /* 浮充充电阈值电流(A) */
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float startSolarOpenCircuitV; /* 启动充电太阳能板开路电压(V) */
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float stopSolarOutputCircuitV; /* 停止充电太阳能板输出电压(V) */
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uint16_t checkCanStartTime; /* 检测能否启动间隔时间(S) */
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uint16_t shortCircuitJudgmentDelay; /* 短路判断延时(S) */
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uint16_t inputPowerLowJudgmentDelay; /* 前端输入功率不足判断延时(S) */
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uint16_t inputPowerLowAgainOutputDelay; /* 前端输入功率不足再次输出延时(S) */
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uint16_t firstStageProtectionDelay; /* 第一段保护延时(10uS) */
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float firstStageProtectionCurr; /* 第一段保护电流(A) */
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uint16_t firstStageProtectionValue; /* 第一段保护ADC值 */
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uint16_t secondStageProtectionDelay; /* 第二段保护延时(100uS) */
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float secondStageProtectionCurr; /* 第二段保护电流(A) */
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uint32_t thirdStageProtectionDelay; /* 第三段保护延时(100uS) */
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float thirdStageProtectionCurr; /* 第三段保护电流(A) */
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uint16_t inputPowerLowDetectionDelay; /* 前端输入功率不足检测延时(100uS) */
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float inputPowerLowDetectionVolt; /* 前端输入功率不足检测电压(V) */
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float maxOpenSolarOutputCircuitV; /* 最大太阳能板输出电压(V) */
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float maxChargCurr; /* 最大充电电流(A) */
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float minCheckLoopImpedanceChargCurr; /* 检测回路阻抗时的最小充电电流(A) */
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float fullPowerOutputTemperature; /* 满功率输出温度(℃) */
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float reducePowerOutputTemperature; /* 降功率输出温度(℃) */
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float stopPowerOutputTemperature; /* 停止输出温度(℃) */
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float constantVoltageChargeV; /* 恒压充电时的输出电压(V) */
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float FloatChargeV; /* 浮充充电时的输出电压(V) */
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uint16_t collectOpenCircuitVoltageTime; /* 充电时采集开路电压的间隔时间 */
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float reverseChargProtectionCurr; /* 反向充电保护电流 */
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/* SL */
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uint16_t Access_Node_Type; /* 接入节点类型 */
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uint16_t Communication_Methods; /* 通信方式 */
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uint8_t startFlagSL[2]; /* 起始标志 */
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uint8_t endFlagSL; /* 结束标志 */
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} config_parameter;
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extern config_parameter g_cfgParameter;
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typedef struct _otherParameter{
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float Battery_Voltage; /* 电池电压 (V) */
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float Output_Voltage; /* 输出电压 */
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float Charg_Current; /* 充电电流(流向电池+负载) (A) */
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float Discharg_Current; /* 放电电流(流向负载) (A) */
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float Input_Voltage; /* 系统输入电压 (V) */
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float Solar_Open_Circuit_Voltage; /* 太阳能板开路电压 (V) */
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float HighSideMos_Temperature; /* 高端mos的温度 (°C) */
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float Solar_In_Circuit_Voltage; /* 太阳能板输入电压 (V) */
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float totalElectricityConsumption; /* 总电量消耗(W*H) */
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float totalChargCapacity; /* 总充电电量(W*H) */
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float SOC; /* 剩余电量 */
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int MPPT_Mode; /* 工作模式 */
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uint8_t versionInformation[13]; /* 软件版本信息 */
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float loopImpedance; /* 回路阻抗大小 (Ω) */
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uint16_t Registration_Status; /* 注册状态 */
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}otherParameter;
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// #pragma pack(pop)
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BOOL getBatteryState(void);
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void setBatteryState(BOOL state);
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float getDutyRatio(void);
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void setDutyRatio(float DutyRatio);
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void setDutyRatioToZero(void);
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uint8_t getMosTemperState(void);
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void setMosTemperState(uint8_t state);
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BOOL getCheckImpedanceState(void);
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void setCheckImpedanceState(void);
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void setLastTime(timeInfo time);
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timeInfo getLastTime(void);
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float getBatteryVoltage(void);
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void setBatteryVoltage(void);
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float getOutputVoltage(void);
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void setOutputVoltage(void);
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float getChargCurrent(void);
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void setChargCurrent(void);
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float getDischargCurrent(void);
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void setDischargCurrent(void);
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float getInputVoltage(void);
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void setInputVoltage(void);
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float getSolarOpenCircuitVoltage(void);
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void setSolarOpenCircuitVoltage(void);
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float getHighSideMosTemperature(void);
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void setHighSideMosTemperature(void);
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float getSolarInCircuitVoltage(void);
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void setSolarInCircuitVoltage(void);
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float getTotalElectricityConsumption(void);
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void setTotalElectricityConsumption(void);
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void totalElectricityConsumptionInt(float totalPower);
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float getTotalChargCapacity(void);
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void setTotalChargCapacity(void);
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void totalChargCapacityInt(float totalPower);
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float getSOC(void);
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void setSOC(void);
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int getMPPT_Mode(void);
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void setMPPT_Mode(int MPPT_Mode);
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float getChargBatteryCurrent(void);
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BOOL getChargMosState(void);
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void setChargMosState(BOOL state);
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BOOL getDischargMosState(void);
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uint8_t *getVersionnInformation(void);
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float getLoopImpedance(void);
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BOOL setLoopImpedance(float loopImpedance);
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uint16_t getRegistrationStatus(void);
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void setRegistrationStatus(uint16_t status);
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void setExChargeCurr(void);
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float getExChargeCurr(void);
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#endif |