Hlw8110.c 33 KB

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  1. /*=========================================================================================================
  2. * File Name : HLW8110.c
  3. * Describe : HLW8110 UART 通讯程序,使用USATR2.(HLW8110 code,use USATE2)
  4. * Author : Tuqiang
  5. * Version : V1.3
  6. * Record : 2019/04/16,V1.2
  7. * Record : 2020/04/02, V1.3
  8. ==========================================================================================================*/
  9. #include "Hlw8110.h"
  10. #include "stdio.h"
  11. #include "Config.h"
  12. #include "SysTick.h"
  13. #include "Uart1.h"
  14. #include "Timer.h"
  15. #if HLW8110
  16. #define HIGH 1
  17. #define LOW 0
  18. /*---------------------------------------------------------------------------------------------------------*/
  19. /*---------------------------------------------------------------------------------------------------------*/
  20. /*---------------------------------------------------------------------------------------------------------*/
  21. /*---------------------------------------------------------------------------------------------------------*/
  22. union IntData
  23. {
  24. unsigned int inte;
  25. unsigned char byte[2];
  26. };
  27. union LongData
  28. {
  29. unsigned long int word;
  30. unsigned int inte[2];
  31. unsigned char byte[4];
  32. };
  33. /*---------------------------------------------------------------------------------------------------------*/
  34. /*---------------------------------------------------------------------------------------------------------*/
  35. unsigned char u8_TxBuf[10];
  36. unsigned char u8_RxBuf[10];
  37. unsigned char u8_TX_Length;
  38. unsigned char u8_RX_Length;
  39. unsigned char u8_RX_Index;
  40. //unsigned char B_ReadReg_Time_EN; // 串口读取寄存器数据,时间计数器标志位,1--开启计数,0--关闭计数
  41. //unsigned char B_Tx_Finish;
  42. unsigned char B_Rx_Finish;
  43. unsigned char B_Rx_Data_ING; // 接收数据标志位 , < 1:接收数据中,0:未接收到数据 >
  44. unsigned char B_Read_Error; // UART读取出据校验和出错,< 1:数据读错,0:数据读取正确 >
  45. //unsigned char u8_ReadReg_Index;
  46. //unsigned char u8_ReadReg_Time; // 串口读取寄存器数据的时间
  47. /*---------------------------------------------------------------------------------------------------------*/
  48. /*---------------------------------------------------------------------------------------------------------*/
  49. unsigned int U16_TempData;
  50. unsigned int U16_IFData;
  51. unsigned int U16_RIFData;
  52. unsigned int U16_LineFData;
  53. unsigned int U16_AngleData;
  54. unsigned int U16_PFData;
  55. unsigned int U16_HFConst_RegData;
  56. /*---------------------------------------------------------------------------------------------------------*/
  57. /*---------------------------------------------------------------------------------------------------------*/
  58. unsigned int U16_RMSIAC_RegData; // A通道电流转换系数
  59. unsigned int U16_RMSIBC_RegData; // B通道电流转换系数
  60. unsigned int U16_RMSUC_RegData; // 电压通道转换系数
  61. unsigned int U16_PowerPAC_RegData; // A通道功率转换系数
  62. unsigned int U16_PowerPBC_RegData; // B通道功率转换系数
  63. unsigned int U16_PowerSC_RegData; // 视在功率转换系数,如果选择A通道,则是A通道视在功率转换系数。A和B通道只能二者选其一
  64. unsigned int U16_EnergyAC_RegData; // A通道有功电能(量)转换系数
  65. unsigned int U16_EnergyBC_RegData; // A通道有功电能(量)转换系数
  66. unsigned int U16_CheckSUM_RegData; // 转换系数的CheckSum
  67. unsigned int U16_CheckSUM_Data; // 转换系数计算出来的CheckSum
  68. unsigned int U16_Check_SysconReg_Data;
  69. unsigned int U16_Check_EmuconReg_Data;
  70. unsigned int U16_Check_Emucon2Reg_Data;
  71. /*---------------------------------------------------------------------------------------------------------*/
  72. /*---------------------------------------------------------------------------------------------------------*/
  73. unsigned long U32_RMSIA_RegData; // A通道电流有效值寄存器
  74. unsigned long U32_RMSU_RegData; // 电压有效值寄存器
  75. unsigned long U32_POWERPA_RegData; // A通道功率有效值寄存器
  76. unsigned long U32_ENERGY_PA_RegData; // A通道有功电能(量)有效值寄存器
  77. unsigned long U32_RMSIB_RegData; // B通道电流有效值寄存器
  78. unsigned long U32_POWERPB_RegData; // B通道功率有效值寄存器
  79. unsigned long U32_ENERGY_PB_RegData; // B通道有功电能(量)有效值寄存器
  80. /*---------------------------------------------------------------------------------------------------------*/
  81. /*---------------------------------------------------------------------------------------------------------*/
  82. float F_AC_V; // 电压有效值
  83. float F_AC_I; // A通道电流
  84. float F_AC_P; // A通道有功功率
  85. float F_AC_PS; //see power
  86. float F_AC_E; // A通道有功电能(量)
  87. float F_AC_BACKUP_E; // A通道电量备份
  88. float F_AC_PF; // 功率因素,A通道和B通道只能选其一
  89. float F_Angle; // 相角,A通道和B通道只能选其一
  90. float F_AC_I_B; // B通道电流有效值
  91. float F_AC_P_B; // B通道有功功率
  92. float F_AC_E_B; // B通道有功电能(量)
  93. float F_AC_BACKUP_E_B; // B通道电量备份
  94. float F_AC_LINE_Freq; // 市电线性频率
  95. extern AC3PPDU_RELAY_Para_Reg AC3PPDU_RL_time[Output_ChN_default + 2];//包括输入
  96. extern AC_Output_struct_Reg AC3PPDU_Output[Output_ChN_default + 2];
  97. extern uint32_t AC3PPDU_Modbus_Reg[AC3PPDU_Modbus_Reg_len];
  98. //extern uint32_t Hlw8110_Flash_value[Output_ChN_default + 1];
  99. //uint32_t Hlw8110_Flash_Backup[Output_ChN_default + 1] = {0};
  100. /*---------------------------------------------------------------------------------------------------------*/
  101. /*---------------------------------------------------------------------------------------------------------*/
  102. /*---------------------------------------------------------------------------------------------------------*/
  103. /*---------------------------------------------------------------------------------------------------------*/
  104. /*=========================================================================================================
  105. * Function : void Clear_RxBuf(void)
  106. * Describe : 在准备接收串口数据前,清空接收缓存器的数据
  107. * Input : none
  108. * Output : none
  109. * Return : none
  110. * Record : 2019/04/03
  111. =========================================================================================================*/
  112. void Clear_RxBuf(void)
  113. {
  114. unsigned char i;
  115. for(i = 0;i<10;i++)
  116. {
  117. u8_RxBuf[i] = 0x00;
  118. }
  119. B_Rx_Data_ING = 0;
  120. B_Rx_Finish = FALSE;
  121. u8_RX_Index = 0;
  122. }
  123. /*=========================================================================================================
  124. * Function : unsigned char HLW8110_checkSum_Write(unsigned char u8_Reg_length)
  125. * Describe :
  126. * Input : none
  127. * Output : none
  128. * Return : none
  129. * Record : 2019/04/03
  130. =========================================================================================================*/
  131. unsigned char HLW8110_checkSum_Write(unsigned char u8_Reg_length)
  132. {
  133. unsigned char i;
  134. unsigned char Temp_u8_checksum;
  135. unsigned int a;
  136. a = 0x0000;
  137. Temp_u8_checksum = 0;
  138. for (i = 0; i< (u8_Reg_length-1); i++)
  139. {
  140. a += u8_TxBuf[i];
  141. }
  142. a = ~a;
  143. Temp_u8_checksum = a & 0xff;
  144. return Temp_u8_checksum;
  145. }
  146. /*=========================================================================================================
  147. * Function : unsigned char HLW8110_checkSum_Read(void)
  148. * Describe :
  149. * Input : none
  150. * Output : none
  151. * Return : none
  152. * Record : 2019/04/03
  153. ==========================================================================================================*/
  154. unsigned char HLW8110_checkSum_Read(unsigned char u8_Reg_length)
  155. {
  156. unsigned char i;
  157. unsigned char Temp_u8_checksum;
  158. unsigned int a;
  159. a = 0x0000;
  160. Temp_u8_checksum = 0;
  161. for (i = 0; i< (u8_Reg_length-1); i++)
  162. {
  163. a += u8_RxBuf[i];
  164. }
  165. a = a + u8_TxBuf[0] + u8_TxBuf[1];
  166. a = ~a;
  167. Temp_u8_checksum = a & 0xff;
  168. return Temp_u8_checksum;
  169. }
  170. /*=========================================================================================================
  171. * Function : void Uart_HLW8110_WriteREG_EN(void)
  172. * Describe :
  173. * Input : none
  174. * Output : none
  175. * Return : none
  176. * Record : 2019/04/03
  177. ==========================================================================================================*/
  178. void Uart_HLW8110_WriteREG_EN(void)
  179. {
  180. u8_TX_Length = 4;
  181. u8_RX_Length = 0;
  182. u8_TxBuf[0] = 0xa5;
  183. u8_TxBuf[1] = 0xea;
  184. u8_TxBuf[2] = 0xe5;
  185. // u8_TxBuf[3] = 0x8b; //checksum
  186. u8_TxBuf[3] = HLW8110_checkSum_Write(u8_TX_Length);
  187. Start_Send_UartData(u8_TX_Length);
  188. }
  189. /*=========================================================================================================
  190. * Function : void Uart_HLW8110_WriteREG_DIS(void)
  191. * Describe :
  192. * Input : none
  193. * Output : none
  194. * Return : none
  195. * Record : 2019/04/03
  196. ==========================================================================================================*/
  197. void Uart_HLW8110_WriteREG_DIS(void)
  198. {
  199. u8_TX_Length = 4;
  200. u8_RX_Length = 0;
  201. u8_TxBuf[0] = 0xa5;
  202. u8_TxBuf[1] = 0xea;
  203. u8_TxBuf[2] = 0xdc;
  204. // u8_TxBuf[3] = 0x94; //checksum
  205. u8_TxBuf[3] = HLW8110_checkSum_Write(u8_TX_Length);
  206. Start_Send_UartData(u8_TX_Length);
  207. }
  208. /*=========================================================================================================
  209. * Function : void Uart_HLW8110_Set_Channel_A(void)
  210. * Describe :
  211. * Input : none
  212. * Output : none
  213. * Return : none
  214. * Record : 2019/04/03
  215. ==========================================================================================================*/
  216. void Uart_HLW8110_Set_Channel_A(void)
  217. {
  218. u8_TX_Length = 4;
  219. u8_RX_Length = 0;
  220. u8_TxBuf[0] = 0xa5;
  221. u8_TxBuf[1] = 0xea;
  222. u8_TxBuf[2] = 0x5a;
  223. // u8_TxBuf[3] = 0x16; //checksum
  224. u8_TxBuf[3] = HLW8110_checkSum_Write(u8_TX_Length);
  225. Start_Send_UartData(u8_TX_Length);
  226. }
  227. /*=========================================================================================================
  228. * Function : void Uart_Read_HLW8110_Reg(unsigned char ADDR_Reg,unsigned char u8_reg_length)
  229. * Describe :
  230. * Input :
  231. * Output :
  232. * Return :
  233. * Record : 2019/04/04
  234. ==========================================================================================================*/
  235. void Uart_Read_HLW8110_Reg(unsigned char ADDR_Reg,unsigned char u8_reg_length)
  236. {
  237. u8_TxBuf[0] = 0xa5;
  238. u8_TxBuf[1] = ADDR_Reg;
  239. u8_TX_Length = 2;
  240. u8_RX_Length = u8_reg_length + 1; // +1,是因为接收的数据长度,除了REG值,还有一个校验和数据
  241. Clear_RxBuf(); //清空接收缓冲区
  242. Start_Send_UartData(u8_TX_Length);
  243. }
  244. /*=========================================================================================================
  245. * Function : void Uart_Write_HLW8110_Reg(unsigned char ADDR_Reg,unsigned char u8_reg_length,unsigned long u32_data)
  246. * Describe : 写寄存器命令,u8_reg_length:写入的寄存器数据字节长度
  247. * Input :
  248. * Output :
  249. * Return :
  250. * Record : 2019/04/03
  251. ==========================================================================================================*/
  252. void Uart_Write_HLW8110_Reg(unsigned char ADDR_Reg,unsigned char u8_reg_length,unsigned long u32_data)
  253. {
  254. unsigned char i;
  255. union LongData Temp_u32_a;
  256. u8_TxBuf[0] = 0xa5;
  257. u8_TxBuf[1] = ADDR_Reg|0x80;
  258. Temp_u32_a.word = u32_data;
  259. for (i = 0; i< u8_reg_length; i++)
  260. {
  261. u8_TxBuf[i+2] = Temp_u32_a.byte[u8_reg_length-1-i]; //STM32,32位MCU,union定义,是低位在前
  262. //u8_TxBuf[i+2] = Temp_u32_a.byte[4-u8_reg_length + i]; //STM8,STC MCU, union定义,是高位在前
  263. }
  264. u8_TX_Length = 3 + u8_reg_length ;
  265. u8_RX_Length = 0;
  266. u8_TxBuf[u8_TX_Length-1] = HLW8110_checkSum_Write(u8_TX_Length);
  267. Start_Send_UartData(u8_TX_Length);
  268. }
  269. /*=========================================================================================================
  270. * Function : void Uart_HLW8110_Reset(void)
  271. * Describe :
  272. * Input : none
  273. * Output : none
  274. * Return : none
  275. * Record : 2019/04/03
  276. ==========================================================================================================*/
  277. void Uart_HLW8110_Reset(void)
  278. {
  279. u8_TX_Length = 4;
  280. u8_RX_Length = 0;
  281. u8_TxBuf[0] = 0xa5;
  282. u8_TxBuf[1] = 0xea;
  283. u8_TxBuf[2] = 0x96;
  284. // u8_TxBuf[3] = 0xda; //checksum
  285. u8_TxBuf[3] = HLW8110_checkSum_Write(u8_TX_Length);
  286. Start_Send_UartData(u8_TX_Length);
  287. }
  288. /*=========================================================================================================
  289. * Function : void Judge_CheckSum_HLW8110_Calfactor(void)
  290. * Describe : 验证地址0x70-0x77地址的系数和
  291. * Input : none
  292. * Output : none
  293. * Return : none
  294. * Record : 2019/03/18
  295. ==========================================================================================================*/
  296. unsigned char Judge_CheckSum_HLW8110_Calfactor(void)
  297. {
  298. unsigned long a;
  299. //unsigned int b;
  300. //unsigned int c;
  301. unsigned char d;
  302. //读取RmsIAC、RmsIBC、RmsUC、PowerPAC、PowerPBC、PowerSC、EnergAc、EnergBc的值
  303. Uart_Read_HLW8110_Reg(REG_RMS_IAC_ADDR,2);
  304. DelayNms(50);
  305. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  306. {
  307. U16_RMSIAC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  308. // printf("A通道电流转换系数:%x\n " ,U16_RMSIAC_RegData);
  309. }
  310. Uart_Read_HLW8110_Reg(REG_RMS_IBC_ADDR,2);
  311. DelayNms(50);
  312. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  313. {
  314. U16_RMSIBC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  315. // printf("B通道电流转换系数:%x\n " ,U16_RMSIBC_RegData);
  316. }
  317. Uart_Read_HLW8110_Reg(REG_RMS_UC_ADDR,2);
  318. DelayNms(50);
  319. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  320. {
  321. U16_RMSUC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  322. // printf("电压通道转换系数:%x\n " ,U16_RMSUC_RegData);
  323. }
  324. Uart_Read_HLW8110_Reg(REG_POWER_PAC_ADDR,2);
  325. DelayNms(50);
  326. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  327. {
  328. U16_PowerPAC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  329. // printf("A通道功率转换系数:%x\n " ,U16_PowerPAC_RegData);
  330. }
  331. Uart_Read_HLW8110_Reg(REG_POWER_PBC_ADDR,2);
  332. DelayNms(50);
  333. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  334. {
  335. U16_PowerPBC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  336. // printf("B通道功率转换系数:%x\n " ,U16_PowerPAC_RegData);
  337. }
  338. Uart_Read_HLW8110_Reg(REG_POWER_SC_ADDR,2);
  339. DelayNms(50);
  340. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  341. {
  342. U16_PowerSC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  343. // printf("视在功率转换系数:%x\n " ,U16_PowerSC_RegData);
  344. }
  345. Uart_Read_HLW8110_Reg(REG_ENERGY_AC_ADDR,2);
  346. DelayNms(50);
  347. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  348. {
  349. U16_EnergyAC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  350. // printf("A通道电量转换系数:%x\n " ,U16_EnergyAC_RegData);
  351. }
  352. Uart_Read_HLW8110_Reg(REG_ENERGY_BC_ADDR,2);
  353. DelayNms(50);
  354. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  355. {
  356. U16_EnergyBC_RegData = (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  357. // printf("B通道电量转换系数:%x\n " ,U16_EnergyBC_RegData);
  358. }
  359. Uart_Read_HLW8110_Reg(REG_CHECKSUM_ADDR,2);
  360. DelayNms(50);
  361. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  362. {
  363. U16_CheckSUM_RegData= (u8_RxBuf[0]<<8) + u8_RxBuf[1] ;
  364. // printf("系数校验和:%x\n " ,U16_CheckSUM_RegData);
  365. }
  366. a = 0;
  367. a = ~(0xffff+U16_RMSIAC_RegData + U16_RMSIBC_RegData + U16_RMSUC_RegData +
  368. U16_PowerPAC_RegData + U16_PowerPBC_RegData + U16_PowerSC_RegData +
  369. U16_EnergyAC_RegData + U16_EnergyBC_RegData );
  370. U16_CheckSUM_Data = a & 0xffff;
  371. // printf("计算系数校验和:%x\n " ,U16_CheckSUM_Data);
  372. if ( U16_CheckSUM_Data == U16_CheckSUM_RegData)
  373. {
  374. d = 1;
  375. // printf("校验和正确\r\n ");
  376. }
  377. else
  378. {
  379. d = 0;
  380. // printf("校验和出错\r\n ");
  381. }
  382. return d;
  383. }
  384. /*=========================================================================================================
  385. * Function : void Init_HLW8110(void)
  386. * Describe :
  387. * Input : none
  388. * Output : none
  389. * Return : none
  390. * Record : 2019/04/03
  391. ==========================================================================================================*/
  392. void Init_HLW8110(void)
  393. {
  394. Uart_HLW8110_WriteREG_EN();
  395. DelayNms(10);
  396. //电流通道A设置命令,指定当前用于计算视在功率、功率因数、相角、瞬时有功功率、瞬时视在功率和有功功率过载的信号指示 的通道为通道A
  397. Uart_HLW8110_Set_Channel_A();
  398. DelayNms(10);
  399. Uart_Write_HLW8110_Reg(REG_SYSCON_ADDR,2,0x0a04); //开启A通道,关闭B通道,电压通道PGA = 1,电流通道PGA = 16
  400. DelayNms(10);
  401. Uart_Write_HLW8110_Reg(REG_EMUCON_ADDR,2,0x0001); //1,使能PFA 脉冲输出和有功电能寄存器累加;
  402. // Uart_Write_HLW8110_Reg(REG_EMUCON_ADDR,2,0x0018); //正向和负向过零点均发生变化,ZXD0 = 1,ZXD1 = 1
  403. Uart_Write_HLW8110_Reg(REG_EMUCON2_ADDR,2,0x0465); //0x0001是EMUCON2的默认值,waveEn = 1,zxEn = 1,A通道电量寄存器,读后不清0,EPA_CB = 1;打开功率因素检测
  404. DelayNms(10);
  405. Uart_HLW8110_WriteREG_DIS();
  406. // DelayNms(3);
  407. //读取地址是0x6F至0x77的寄存器,验证系数是否正确
  408. Judge_CheckSum_HLW8110_Calfactor();
  409. }
  410. /*=========================================================================================================
  411. * Function : void Check_WriteReg_Success(void)
  412. * Describe : 检验写入的REG是否正确写入
  413. * Input : none
  414. * Output : none
  415. * Return : none
  416. * Record : 2020/04/02
  417. ==========================================================================================================*/
  418. void Check_WriteReg_Success(void)
  419. {
  420. Uart_Read_HLW8110_Reg(REG_SYSCON_ADDR,2);
  421. DelayNms(10);
  422. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  423. {
  424. U16_Check_SysconReg_Data = (u8_RxBuf[0]<<8) + (u8_RxBuf[1]);
  425. // printf("写入的SysconReg寄存器:%lx\n " ,U16_Check_SysconReg_Data);
  426. }
  427. else
  428. {
  429. // printf("SysconReg寄存器读取出错\r\n");
  430. B_Read_Error = 1;
  431. }
  432. Uart_Read_HLW8110_Reg(REG_EMUCON_ADDR,2);
  433. DelayNms(10);
  434. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  435. {
  436. U16_Check_EmuconReg_Data = (u8_RxBuf[0]<<8) + (u8_RxBuf[1]);
  437. // printf("写入的EmuconReg寄存器:%lx\n " ,U16_Check_EmuconReg_Data);
  438. }
  439. else
  440. {
  441. // printf("EmuconReg寄存器读取出错\r\n");
  442. B_Read_Error = 1;
  443. }
  444. Uart_Read_HLW8110_Reg(REG_EMUCON2_ADDR,2);
  445. DelayNms(10);
  446. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  447. {
  448. U16_Check_Emucon2Reg_Data = (u8_RxBuf[0]<<8) + (u8_RxBuf[1]);
  449. // printf("写入的Emucon2Reg寄存器寄存器:%lx\n " ,U16_Check_Emucon2Reg_Data);
  450. }
  451. else
  452. {
  453. // printf("Emucon2Reg寄存器读取出错\r\n");
  454. B_Read_Error = 1;
  455. }
  456. }
  457. /*=========================================================================================================
  458. * Function : void Read_HLW8112_IA(void)
  459. * Describe : 读取A通道电流
  460. * Input : none
  461. * Output : none
  462. * Return : none
  463. * Record : 2019/04/03
  464. ==========================================================================================================*/
  465. void Read_HLW8110_IA(void)
  466. {
  467. float a;
  468. Uart_Read_HLW8110_Reg(REG_RMSIA_ADDR,3);
  469. DelayNms(10);
  470. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  471. {
  472. U32_RMSIA_RegData = (unsigned long)(u8_RxBuf[0]<<16) + (unsigned long)(u8_RxBuf[1]<<8) + (unsigned long)(u8_RxBuf[2]);
  473. // printf("A通道电流寄存器:%lx\n " ,U32_RMSIA_RegData);
  474. }
  475. else
  476. {
  477. // printf("A通道电流寄存器读取出错\r\n");
  478. B_Read_Error = 1;
  479. }
  480. //A通道电流PGA = 16,电压通道PGA = 1;电流采样电阻1mR,电压采样电阻1M
  481. //计算公式,U16_AC_I = (U32_RMSIA_RegData * U16_RMSIAC_RegData)/(电流系数* 2^23)
  482. if ((U32_RMSIA_RegData & 0x800000) == 0x800000)
  483. {
  484. F_AC_I = 0;
  485. }
  486. else
  487. {
  488. a = (float)U32_RMSIA_RegData;
  489. a = a * U16_RMSIAC_RegData;
  490. a = a/0x800000; //电流计算出来的浮点数单位是mA,比如5003.12
  491. a = a/1; // 1 = 电流系数
  492. a = a/1000; //a= 5003ma,a/1000 = 5.003A,单位转换成A
  493. a = a * D_CAL_A_I; //D_CAL_A_I是校正系数,默认是1
  494. F_AC_I = a;
  495. }
  496. }
  497. /*=========================================================================================================
  498. * Function : void Read_HLW8110_U(void)
  499. * Describe : 读取电压
  500. * Input : none
  501. * Output : none
  502. * Return : none
  503. * Record : 2019/04/03
  504. ==========================================================================================================*/
  505. void Read_HLW8110_U(void)
  506. {
  507. float a;
  508. Uart_Read_HLW8110_Reg(REG_RMSU_ADDR,3);
  509. DelayNms(10);
  510. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  511. {
  512. U32_RMSU_RegData = (unsigned long)(u8_RxBuf[0]<<16) + (unsigned long)(u8_RxBuf[1]<<8) + (unsigned long)(u8_RxBuf[2]);
  513. // printf("电压通道寄存器:%lx\n " ,U32_RMSU_RegData);
  514. }
  515. else
  516. {
  517. // printf("电压通道寄存器读取出错\r\n");
  518. B_Read_Error = 1;
  519. }
  520. //电压
  521. //计算:U16_AC_V = (U32_RMSU_RegData * U16_RMSUC_RegData)/2^23
  522. if ((U32_RMSU_RegData &0x800000) == 0x800000)
  523. {
  524. F_AC_V = 0;
  525. }
  526. else
  527. {
  528. a = (float)U32_RMSU_RegData;
  529. a = a*U16_RMSUC_RegData;
  530. a = a/0x400000;
  531. a = a/1; // 1 = 电压系数
  532. a = a/100; //计算出a = 22083.12mV,a/100表示220.8312V,电压转换成V
  533. a = a*D_CAL_U; //D_CAL_U是校正系数,默认是1,
  534. F_AC_V = a;
  535. }
  536. }
  537. /*=========================================================================================================
  538. * Function : void Read_HLW8110_PA(void)
  539. * Describe : 读取A通道功率
  540. * Input : none
  541. * Output : none
  542. * Return : none
  543. * Record : 2019/04/03
  544. ==========================================================================================================*/
  545. void Read_HLW8110_PA(void)
  546. {
  547. float a;
  548. float b;
  549. Uart_Read_HLW8110_Reg(REG_POWER_PA_ADDR,4);
  550. DelayNms(10);
  551. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  552. {
  553. U32_POWERPA_RegData = (unsigned long)(u8_RxBuf[0]<<24) + (unsigned long)(u8_RxBuf[1]<<16) + (unsigned long)(u8_RxBuf[2]<<8) + (unsigned long)(u8_RxBuf[3]);
  554. // printf("A通道功率寄存器:%lx\n " ,U32_POWERPA_RegData);
  555. }
  556. else
  557. {
  558. // printf("A通道功率寄存器读取出错\r\n");
  559. B_Read_Error = 1;
  560. }
  561. if (U32_POWERPA_RegData > 0x80000000)
  562. {
  563. b = ~U32_POWERPA_RegData;
  564. a = (float)b;
  565. }
  566. else
  567. a = (float)U32_POWERPA_RegData;
  568. //功率需要分正功和负功
  569. //计算,U16_AC_P = (U32_POWERPA_RegData * U16_PowerPAC_RegData)/(2^31*电压系数*电流系数)
  570. //单位为W,比如算出来5000.123,表示5000.123W
  571. a = a*U16_PowerPAC_RegData;
  572. a = a/0x80000000;
  573. a = a/1; // 1 = 电流系数
  574. a = a/1; // 1 = 电压系数
  575. a = a * D_CAL_A_P; //D_CAL_A_P是校正系数,默认是1
  576. F_AC_P = a; //单位为W,比如算出来5000.123,表示5000.123W
  577. }
  578. /*=========================================================================================================
  579. * Function : void Read_HLW8110_PSA(void)
  580. * Describe : 读取A通道功率
  581. * Input : none
  582. * Output : none
  583. * Return : none
  584. * Record : 2019/04/03
  585. ==========================================================================================================*/
  586. void Read_HLW8110_PSA(void)
  587. {
  588. float a;
  589. float b;
  590. Uart_Read_HLW8110_Reg(REG_POWER_PAS_ADDR,4);
  591. DelayNms(10);
  592. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  593. {
  594. U32_POWERPA_RegData = (unsigned long)(u8_RxBuf[0]<<24) + (unsigned long)(u8_RxBuf[1]<<16) + (unsigned long)(u8_RxBuf[2]<<8) + (unsigned long)(u8_RxBuf[3]);
  595. // printf("A通道功率寄存器:%lx\n " ,U32_POWERPA_RegData);
  596. }
  597. else
  598. {
  599. // printf("A通道功率寄存器读取出错\r\n");
  600. B_Read_Error = 1;
  601. }
  602. if (U32_POWERPA_RegData > 0x80000000)
  603. {
  604. b = ~U32_POWERPA_RegData;
  605. a = (float)b;
  606. }
  607. else
  608. a = (float)U32_POWERPA_RegData;
  609. //功率需要分正功和负功
  610. //计算,U16_AC_P = (U32_POWERPA_RegData * U16_PowerPAC_RegData)/(2^31*电压系数*电流系数)
  611. //单位为W,比如算出来5000.123,表示5000.123W
  612. a = a*U16_PowerPAC_RegData;
  613. a = a/0x80000000;
  614. a = a/1; // 1 = 电流系数
  615. a = a/1; // 1 = 电压系数
  616. a = a * D_CAL_A_P; //D_CAL_A_P是校正系数,默认是1
  617. F_AC_PS = a; //单位为W,比如算出来5000.123,表示5000.123W
  618. }
  619. /*=========================================================================================================
  620. * Function : void void Read_HLW8112_EA(void)
  621. * Describe : 读取A通道有功电量
  622. * Input : none
  623. * Output : none
  624. * Return : none
  625. * Record : 2019/04/03
  626. ==========================================================================================================*/
  627. void Read_HLW8110_EA(void)
  628. {
  629. float a;
  630. Uart_Read_HLW8110_Reg(REG_ENERGY_PA_ADDR,3);
  631. DelayNms(10);
  632. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  633. {
  634. U32_ENERGY_PA_RegData = (unsigned long)(u8_RxBuf[0]<<16) + (unsigned long)(u8_RxBuf[1]<<8) + (unsigned long)(u8_RxBuf[2]);
  635. // printf("A通道有功电量寄存器:%lx\n " ,U32_ENERGY_PA_RegData);
  636. }
  637. else
  638. {
  639. // printf("A通道有功电量寄存器读取出错\r\n");
  640. B_Read_Error = 1;
  641. }
  642. Uart_Read_HLW8110_Reg(REG_HFCONST_ADDR,2);
  643. DelayNms(10);
  644. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  645. {
  646. U16_HFConst_RegData = (unsigned int)(u8_RxBuf[0]<<8) + (unsigned int)(u8_RxBuf[1]);
  647. // printf("HFCONST常数 = :%d\n " ,U16_HFConst_RegData);
  648. }
  649. else
  650. {
  651. // printf("HFCONST常数寄存器读取出错\r\n");
  652. B_Read_Error = 1;
  653. }
  654. //电量计算,电量 = (U32_ENERGY_PA_RegData * U16_EnergyAC_RegData * HFCONST) /(K1*K2 * 2^29 * 4096)
  655. //HFCONST:默认值是0x1000, HFCONST/(2^29 * 4096) = 0x20000000
  656. a = (float)U32_ENERGY_PA_RegData;
  657. a = a*U16_EnergyAC_RegData;
  658. a = a/0x20000000; //电量单位是0.001KWH,比如算出来是2.002,表示2.002KWH
  659. a = a/1; // 1 = 电流系数
  660. a = a/1; // 1 = 电压系数
  661. a = a * D_CAL_A_E; //D_CAL_A_E是校正系数,默认是1
  662. F_AC_E = a;
  663. F_AC_BACKUP_E = F_AC_E;
  664. }
  665. /*=========================================================================================================
  666. * Function : void Read_HLW8110_LineFreq(void)
  667. * Describe : 读取A通道的线性频率
  668. * Input : none
  669. * Output : none
  670. * Return : none
  671. * Record : 2019/04/12
  672. ==========================================================================================================*/
  673. void Read_HLW8110_LineFreq(void)
  674. {
  675. float a;
  676. unsigned long b;
  677. Uart_Read_HLW8110_Reg(REG_UFREQ_ADDR,2);
  678. DelayNms(10);
  679. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  680. {
  681. b = (unsigned long)(u8_RxBuf[0]<<8) + (unsigned long)(u8_RxBuf[1]);
  682. // printf("A通道线性频率寄存器:%ld\n " ,b);
  683. }
  684. else
  685. {
  686. // printf("A通道线性频率寄存器读取出错\r\n");
  687. B_Read_Error = 1;
  688. }
  689. a = (float)b;
  690. a = 3579545/(8*a);
  691. if(a > 100)
  692. a =0.0;
  693. F_AC_LINE_Freq = a;
  694. }
  695. /*=========================================================================================================
  696. * Function : void Read_HLW8110_PF(void)
  697. * Describe : 读取功率因素
  698. * Input : none
  699. * Output : none
  700. * Return : none
  701. * Record : 2019/03/18
  702. ==========================================================================================================*/
  703. void Read_HLW8110_PF(void)
  704. {
  705. float a;
  706. unsigned long b;
  707. //测量A通道的功率因素,需要发送EA+5A命令
  708. //测量B通道的功率因素,需要发送EA+A5命令
  709. Uart_Read_HLW8110_Reg(REG_PF_ADDR,3);
  710. DelayNms(10);
  711. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  712. {
  713. b = (unsigned long)(u8_RxBuf[0]<<16) + (unsigned long)(u8_RxBuf[1]<<8) + (unsigned long)(u8_RxBuf[2]);
  714. // printf("A通道功率因素寄存器:%ld\n " ,b);
  715. }
  716. else
  717. {
  718. // printf("读取A通道功率因素寄存器出错\r\n");
  719. B_Read_Error = 1;
  720. }
  721. if (b>0x800000) //为负,容性负载
  722. {
  723. a = (float)(0xffffff-b + 1)/0x7fffff;
  724. }
  725. else
  726. {
  727. a = (float)b/0x7fffff;
  728. }
  729. if (F_AC_P < 0.3) // 小于0.3W,空载或小功率,PF不准
  730. a = 0;
  731. //功率因素*100,最大为100,最小负100
  732. F_AC_PF = a;
  733. }
  734. /*=========================================================================================================
  735. * Function : void Read_HLW8110_Angle(void)
  736. * Describe : 读取相位角
  737. * Input : none
  738. * Output : none
  739. * Return : none
  740. * Record : 2019/04/12
  741. ==========================================================================================================*/
  742. void Read_HLW8110_Angle(void)
  743. {
  744. float a;
  745. unsigned long b;
  746. Uart_Read_HLW8110_Reg(REG_ANGLE_ADDR,2);
  747. DelayNms(10);
  748. if ( u8_RxBuf[u8_RX_Length-1] == HLW8110_checkSum_Read(u8_RX_Length) )
  749. {
  750. b =(unsigned long)(u8_RxBuf[0]<<8) + (unsigned long)(u8_RxBuf[1]);
  751. // printf("A通道线相角寄存器:%ld\n " ,b);
  752. }
  753. else
  754. {
  755. // printf("A通道线相角寄存器出错\r\n");
  756. B_Read_Error = 1;
  757. }
  758. if ( F_AC_PF < 55) //线性频率50HZ
  759. {
  760. a = b;
  761. a = a * 0.0805;
  762. F_Angle = a;
  763. }
  764. else
  765. {
  766. //线性频率60HZ
  767. a = b;
  768. a = a * 0.0965;
  769. F_Angle = a;
  770. }
  771. if (F_AC_P < 0.5) //功率小于0.5时,说明没有负载,相角为0
  772. {
  773. F_Angle = 0;
  774. }
  775. if (F_Angle < 90)
  776. {
  777. a = F_Angle;
  778. // printf("电流超前电压:%f\n " ,a);
  779. }
  780. else if (F_Angle < 180)
  781. {
  782. a = 180-F_Angle;
  783. // printf("电流滞后电压:%f\n " ,a);
  784. }
  785. else if (F_Angle < 360)
  786. {
  787. a = 360 - F_Angle;
  788. // printf("电流滞后电压:%f\n " ,a);
  789. }
  790. else
  791. {
  792. a = F_Angle -360;
  793. // printf("电流超前电压:%f\n " ,a);
  794. }
  795. }
  796. /*=========================================================================================================
  797. * Function : void Calculate_HLW8110_MeterData(void);
  798. * Describe :
  799. * Input : none
  800. * Output : none
  801. * Return : none
  802. * Record : 2018/05/10
  803. ==========================================================================================================*/
  804. void Calculate_HLW8110_MeterData(void)
  805. {
  806. Check_WriteReg_Success();
  807. Read_HLW8110_IA();
  808. Read_HLW8110_U();
  809. Read_HLW8110_PA();
  810. Read_HLW8110_PSA();
  811. Read_HLW8110_EA();
  812. Read_HLW8110_LineFreq();
  813. Read_HLW8110_Angle();
  814. Read_HLW8110_PF();
  815. // printf("\r\n");
  816. // printf("\r\n");
  817. // printf("交流测量,uart通讯方式\r\n");
  818. // printf("A通道电流转换系数:%x\n " ,U16_RMSIAC_RegData);
  819. // printf("B通道电流转换系数:%x\n " ,U16_RMSIBC_RegData);
  820. // printf("电压通道转换系数:%x\n " ,U16_RMSUC_RegData);
  821. // printf("A通道功率转换系数:%x\n " ,U16_PowerPAC_RegData);
  822. // printf("B通道功率转换系数:%x\n " ,U16_PowerPBC_RegData);
  823. // printf("视在功率转换系数:%x\n " ,U16_PowerSC_RegData);
  824. // printf("A通道电量转换系数:%x\n " ,U16_EnergyAC_RegData);
  825. // printf("B通道电量转换系数:%x\n " ,U16_EnergyBC_RegData);
  826. // printf("转换系数校验和:%x\n " ,U16_CheckSUM_RegData);
  827. // printf("转换系数计算出的校验和:%x\n " ,U16_CheckSUM_Data);
  828. //
  829. // printf("\r\n");//插入换行
  830. // printf("A通道电流寄存器:%x\n " ,U32_RMSIA_RegData);
  831. // printf("电压寄存器:%x\n " ,U32_RMSU_RegData);
  832. // printf("A通道功率寄存器:%x\n " ,U32_POWERPA_RegData);
  833. // printf("A通道电量寄存器:%x\n " ,U32_ENERGY_PA_RegData);
  834. // printf("\r\n");//插入换行
  835. // printf("F_AC_I = %f A \n " ,F_AC_I); //电流
  836. // printf("F_AC_V = %f V \n " ,F_AC_V); //电压
  837. // printf("F_AC_P = %f W \n " ,F_AC_P); //功率
  838. // printf("F_AC_BACKUP_E = %f KWH \n " ,F_AC_BACKUP_E); //电量
  839. // printf("F_AC_LINE_Freq = %f Hz \n " ,F_AC_LINE_Freq); //市电线性频率
  840. // printf("F_Angle = %f\n " ,F_Angle); //L和N的相角
  841. // printf("F_AC_PF = %f\n " ,F_AC_PF); //功率因素
  842. //
  843. // printf("\r\n");//插入换行
  844. // printf("\r\n");//插入换行
  845. // printf("----------------------------------------------\r\n");
  846. // printf("----------------------------------------------\r\n");
  847. }
  848. void read_Hlw8110(uint8_t cs_x)
  849. {
  850. #define ACDC_V_k 1000
  851. #define ACDC_V_b 0
  852. #define ACDC_I_k 1000
  853. #define ACDC_I_b 0
  854. static uint8_t temp0 = 0;
  855. uint8_t temp1 = 0;
  856. temp1 = cs_x << 3;
  857. temp0 = cs_x + CH1_out;
  858. switch(cs_x)
  859. {
  860. case 0: //111
  861. {
  862. SEL_0_H;
  863. SEL_1_H;
  864. SEL_2_H;
  865. }
  866. break;
  867. case 1: //110
  868. {
  869. SEL_0_L;
  870. SEL_1_H;
  871. SEL_2_H;
  872. }
  873. break;
  874. case 2: //101
  875. {
  876. SEL_0_H;
  877. SEL_1_L;
  878. SEL_2_H;
  879. }
  880. break;
  881. default:
  882. return;
  883. }
  884. Calculate_HLW8110_MeterData();
  885. AC3PPDU_Output[temp0].AC_V = ((F_AC_V * ACDC_V_k) + (ACDC_V_b /1000));
  886. if(AC3PPDU_Output[temp0].AC_V <= 800)
  887. {
  888. AC3PPDU_Output[temp0].AC_V = 0;
  889. }
  890. AC3PPDU_Output[temp0].AC_I = ((F_AC_I * ACDC_I_k) + (ACDC_I_b /1000));
  891. if(AC3PPDU_Output[temp0].AC_I <=30)
  892. {
  893. AC3PPDU_Output[temp0].AC_P = 0;
  894. AC3PPDU_Output[temp0].AC_S = 0;
  895. AC3PPDU_Output[temp0].AC_I = 0;
  896. }else
  897. {
  898. AC3PPDU_Output[temp0].AC_P = F_AC_P * 1000;
  899. AC3PPDU_Output[temp0].AC_S = F_AC_PS * 1000;
  900. }
  901. if(AC3PPDU_Output[temp0].AC_P == 0)
  902. AC3PPDU_Output[temp0].AC_U = 0;
  903. else
  904. {
  905. AC3PPDU_Output[temp0].AC_U = ((F_AC_P / F_AC_PF)-F_AC_PS) *1000;
  906. }
  907. AC3PPDU_Output[temp0].AC_kWh = F_AC_E *1000;
  908. AC3PPDU_Output[temp0].AC_F = F_AC_LINE_Freq *1000;
  909. if(AC3PPDU_Output[temp0].AC_V == 0)
  910. {
  911. AC3PPDU_Output[temp0].AC_F = 0;
  912. }
  913. AC3PPDU_Output[temp0].AC_Q = F_AC_PF *1000;
  914. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 0] = AC3PPDU_Output[cs_x + CH1_out].AC_V;
  915. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 1] = AC3PPDU_Output[cs_x + CH1_out].AC_I;
  916. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 2] = AC3PPDU_Output[cs_x + CH1_out].AC_P;
  917. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 3] = AC3PPDU_Output[cs_x + CH1_out].AC_U;
  918. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 4] = AC3PPDU_Output[cs_x + CH1_out].AC_S;
  919. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 5] = AC3PPDU_Output[cs_x + CH1_out].AC_F;
  920. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 6] = AC3PPDU_Output[cs_x + CH1_out].AC_kWh;
  921. AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 7] = AC3PPDU_Output[cs_x + CH1_out].AC_Q;
  922. //
  923. }
  924. #endif