main.c 52 KB

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  1. /**
  2. * @mainpage
  3. * Project Name:
  4. * Author:
  5. * Complier:
  6. * CPU_TYPE:
  7. * @section Project description:
  8. * -项目详细描述
  9. * @section function description:
  10. * -#功能描述
  11. * @section Usage description:
  12. * -#用法描述
  13. * @attention
  14. * -#注意事项
  15. */
  16. #ifndef _MAIN_C_
  17. #define _MAIN_C_
  18. #endif
  19. /************************************************************************
  20. Included File
  21. *************************************************************************/
  22. #include "syspar.h"
  23. #include "user.h"
  24. #include "TimeTask_Event.h"
  25. #include "CadAssist.h"
  26. #include "bikeinformation.h"
  27. #include "FSM_1st.h"
  28. #include "FSM_2nd.h"
  29. #include "FuncLayerAPI.h"
  30. #include "usart.h"
  31. #include "cmdgennew.h"
  32. #include "canAppl.h"
  33. #include "flash_master.h"
  34. #include "string.h"
  35. //#include "at32f421_wk_config.h"
  36. //#include "SEGGER_RTT.h"
  37. #include "UserGpio_Config.h"
  38. //#include "api_rt.h"
  39. //#include "profiler.h"
  40. #include "ti_msp_dl_config.h"
  41. /************************************************************************
  42. Exported Functions:
  43. ************************************************************************/
  44. void AppInit();
  45. void AppLoop();
  46. void LED_ResDispaly(void);
  47. //void delay_125us(void);
  48. void delay_125us(int count)
  49. {
  50. for(int i=0;i<count;i++)
  51. {
  52. delay_cycles(10000);
  53. }
  54. }
  55. /* This results in approximately 0.25s of delay assuming 80MHz CPU_CLK */
  56. #define DELAY (40000000)
  57. unsigned int ACnt; // Variable: speed control period counter
  58. /***************************************************************
  59. Function: main;
  60. Description:main function
  61. Call by:
  62. Input Variables: N/A
  63. Output/Return Variables: N/A
  64. Subroutine Call: N/A;
  65. Reference: N/A
  66. ****************************************************************/
  67. /*
  68. * Timer clock configuration to be sourced by / 1 (72000000 Hz)
  69. * timerClkFreq = (timerClkSrc / (timerClkDivRatio * (timerClkPrescale + 1)))
  70. * 72000000 Hz = 72000000 Hz / (1 * (0 + 1))
  71. */
  72. static const DL_TimerA_ClockConfig gPWM_0_COPYClockConfig = {
  73. .clockSel = DL_TIMER_CLOCK_BUSCLK,
  74. .divideRatio = DL_TIMER_CLOCK_DIVIDE_1,
  75. .prescale = 0U
  76. };
  77. static const DL_TimerA_PWMConfig gPWM_0_COPYConfig = {
  78. .pwmMode = DL_TIMER_PWM_MODE_CENTER_ALIGN,
  79. .period = 4500,
  80. .isTimerWithFourCC = false,
  81. .startTimer = DL_TIMER_STOP,
  82. };
  83. SYSCONFIG_WEAK void SYSCFG_DL_PWM_0_COPY_init(void) {
  84. DL_TimerA_reset(TIMA1);
  85. DL_TimerA_enablePower(TIMA1);
  86. delay_cycles(POWER_STARTUP_DELAY);
  87. DL_TimerA_setClockConfig(
  88. TIMA1, (DL_TimerA_ClockConfig *) &gPWM_0_COPYClockConfig);
  89. DL_TimerA_initPWMMode(
  90. TIMA1, (DL_TimerA_PWMConfig *) &gPWM_0_COPYConfig);
  91. DL_TimerA_setCaptureCompareOutCtl(TIMA1, DL_TIMER_CC_OCTL_INIT_VAL_LOW,
  92. DL_TIMER_CC_OCTL_INV_OUT_DISABLED, DL_TIMER_CC_OCTL_SRC_FUNCVAL,
  93. DL_TIMERA_CAPTURE_COMPARE_0_INDEX);
  94. DL_TimerA_setCaptCompUpdateMethod(TIMA1, DL_TIMER_CC_UPDATE_METHOD_IMMEDIATE, DL_TIMERA_CAPTURE_COMPARE_0_INDEX);
  95. DL_TimerA_setCaptureCompareValue(TIMA1, 2250, DL_TIMER_CC_0_INDEX);
  96. DL_TimerA_enableClock(TIMA1);
  97. DL_TimerA_enableInterrupt(TIMA1 , DL_TIMER_INTERRUPT_LOAD_EVENT |
  98. DL_TIMER_INTERRUPT_ZERO_EVENT);
  99. NVIC_SetPriority(TIMA1_INT_IRQn, 2);
  100. DL_TimerA_setCCPDirection(TIMA1 , DL_TIMER_CC0_OUTPUT );
  101. /* DL_TIMER_CROSS_TRIG_SRC is a Don't Care field when Cross Trigger Source is set to Software */
  102. DL_TimerA_configCrossTrigger(TIMA1, DL_TIMER_CROSS_TRIG_SRC_FSUB0,
  103. DL_TIMER_CROSS_TRIGGER_INPUT_DISABLED, DL_TIMER_CROSS_TRIGGER_MODE_ENABLED
  104. );
  105. DL_TimerA_setCaptureCompareInput(TIMA1, DL_TIMER_CC_INPUT_INV_NOINVERT, DL_TIMER_CC_IN_SEL_TRIG, DL_TIMER_CC_0_INDEX);
  106. /*
  107. * Determines the external triggering event to trigger the module (self-triggered in main configuration)
  108. * and triggered by specific timer in secondary configuration
  109. */
  110. DL_TimerA_setExternalTriggerEvent(TIMA1,DL_TIMER_EXT_TRIG_SEL_TRIG_1);
  111. DL_TimerA_enableExternalTrigger(TIMA1);
  112. uint32_t temp;
  113. temp = DL_TimerA_getCaptureCompareCtl(TIMA1, DL_TIMER_CC_0_INDEX);
  114. DL_TimerA_setCaptureCompareCtl(TIMA1, DL_TIMER_CC_MODE_COMPARE, temp | (uint32_t) DL_TIMER_CC_LCOND_TRIG_RISE, DL_TIMER_CC_0_INDEX);
  115. }
  116. int main(void)
  117. {
  118. SCB->VTOR =0x00006000;//
  119. /* Disable all interrupts */
  120. DISABLE_IRQ;
  121. /* MCU Core and GPIO configuration */
  122. SYSCFG_DL_init();
  123. SYSCFG_DL_PWM_0_COPY_init();
  124. //TIMA0 MOTOR_PWM
  125. DL_Timer_setCaptCompUpdateMethod(MOTOR_PWM_INST,DL_TIMER_CC_UPDATE_METHOD_ZERO_EVT,DL_TIMERA_CAPTURE_COMPARE_0_INDEX);
  126. DL_Timer_setCaptCompUpdateMethod(MOTOR_PWM_INST,DL_TIMER_CC_UPDATE_METHOD_ZERO_EVT,DL_TIMERA_CAPTURE_COMPARE_1_INDEX);
  127. DL_Timer_setCaptCompUpdateMethod(MOTOR_PWM_INST,DL_TIMER_CC_UPDATE_METHOD_ZERO_EVT,DL_TIMERA_CAPTURE_COMPARE_2_INDEX);
  128. NVIC_EnableIRQ(ADC12_0_INST_INT_IRQN);
  129. DL_Timer_setCaptCompUpdateMethod(PWM_F_INST,DL_TIMER_CC_UPDATE_METHOD_ZERO_EVT,DL_TIMER_CC_1_INDEX);
  130. NVIC_EnableIRQ(HALLTIMER_INST_INT_IRQN); //
  131. DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 0, DL_TIMER_CC_0_INDEX);
  132. DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 0, DL_TIMER_CC_1_INDEX);
  133. DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 0, DL_TIMER_CC_2_INDEX);
  134. DL_Timer_clearInterruptStatus(MOTOR_PWM_INST,DL_TIMER_INTERRUPT_FAULT_EVENT|DL_TIMER_INTERRUPT_ZERO_EVENT);
  135. DL_Timer_clearEventsStatus(MOTOR_PWM_INST,1,DL_TIMER_EVENT_FAULT_EVENT);
  136. //HALL IO
  137. NVIC_EnableIRQ(GPIOA_INT_IRQn); //HALL GPIO
  138. NVIC_EnableIRQ(GPIOB_INT_IRQn); //HALL GPIO
  139. #if(EMCDEAL_EN!=0) //霍尔定时换相计时中断
  140. NVIC_EnableIRQ(HALL_CNT_INST_INT_IRQN);
  141. DL_TimerG_startCounter(HALL_CNT_INST);
  142. #endif
  143. //LED 前灯比较器
  144. // NVIC_EnableIRQ(COMP_FLEDCHECK_INST_INT_IRQN);
  145. // DL_COMP_enable(COMP_FLEDCHECK_INST);
  146. // over Cur CMP
  147. // DL_COMP_enable(COMP_0_INST);
  148. // NVIC_EnableIRQ(COMP_0_INST_INT_IRQN);
  149. //Start MOTOR 计数
  150. DL_TimerA_startCounter(MOTOR_PWM_INST);
  151. // DL_TimerA_startCounter(TIMER_0_INST);
  152. DL_TimerA_generateCrossTrigger(TIMA1);
  153. NVIC_EnableIRQ(TIMA1_INT_IRQn); //MOTOR PWM
  154. // DL_Timer_setCoreHaltBehavior(TIMA0,DL_TIMER_CORE_HALT_IMMEDIATE);
  155. NVIC_EnableIRQ(MOTOR_PWM_INST_INT_IRQN); //MOTOR PWM
  156. //LED pwm 开始计数
  157. // DL_TimerG_startCounter(TIMG12);
  158. // DL_TimerG_startCounter(PWM_R_INST);
  159. DL_TimerG_startCounter(PWM_F_INST);
  160. DL_TimerG_startCounter(PWM_B_L_INST);
  161. // DL_GPIO_clearPins(OUTPUT_CAN_STB_PORT, OUTPUT_CAN_STB_PIN);
  162. // DL_GPIO_setPins(OUTPUT_CAN_STB_PORT, OUTPUT_CAN_STB_PIN);
  163. // DL_GPIO_togglePins(OUTPUT_CAN_STB_PORT, OUTPUT_CAN_STB_PIN);
  164. //
  165. // /* Set output voltage:
  166. // * DAC value (12-bits) = DesiredOutputVoltage x 4095
  167. // * -----------------------
  168. // * ReferenceVoltage
  169. DL_DAC12_output12(DAC0, 2048);
  170. DL_DAC12_enable(DAC0);
  171. //---over Cur of Valut
  172. #if((IPM_POWER_SEL == IPM_POWER_250W_6G) ||(IPM_POWER_SEL ==IPM_POWER_350W_6G))
  173. DL_COMP_setDACCode0(COMP_0_INST, 0xb5);//12G-100A-0x99-1.97V 6G-70A--0xb5-2.33V
  174. #else
  175. DL_COMP_setDACCode0(COMP_0_INST, 0x99);//12G-100A-0x99-1.97V 6G-60A--0xb5-2.33V
  176. #endif
  177. // hw_voHardwareSetup1();
  178. /* Api Init*/
  179. // iRt_Init();
  180. /* Api App Init*/
  181. AppInit();
  182. /* Peripheral configuration */
  183. hw_voHardwareSetup2();
  184. /* Timer enable */
  185. hw_voTimEn();
  186. /* Interrupts of peripherals enable*/
  187. hw_voEnInt();
  188. /* self test init */
  189. //stl_voRunTimeChecksInit();
  190. /* watchdog 1s */
  191. // wk_wdt_init();// hw_voIWDGInit(IWDG_Prescaler_32,2500);//1s 看门狗
  192. // que_voInit(&stFlashErrorLog);
  193. /* Error Log Read */
  194. // flash_voErrorRead();
  195. /* Enable all interrupts */
  196. NVIC_ClearPendingIRQ(UART_HMI_INST_INT_IRQN);
  197. NVIC_EnableIRQ(UART_HMI_INST_INT_IRQN);
  198. NVIC_ClearPendingIRQ(MCAN0_INST_INT_IRQN);
  199. NVIC_EnableIRQ(MCAN0_INST_INT_IRQN);
  200. ENABLE_IRQ;
  201. // DL_GPIO_setPins(LED_PORT, LED_LED1_PIN);
  202. // DL_GPIO_setPins(LED_PORT, LED_LED2_PIN);
  203. // delay_cycles(DELAY);
  204. // delay_cycles(DELAY);
  205. // delay_cycles(DELAY);
  206. // delay_cycles(DELAY);
  207. // delay_cycles(DELAY);
  208. // delay_cycles(DELAY);
  209. // delay_cycles(DELAY);
  210. // delay_cycles(DELAY);
  211. // delay_cycles(DELAY);
  212. // delay_cycles(DELAY);
  213. /* Enter infinite loop */
  214. #if(JSCOPE_EN!=0)
  215. Jscope_Init();
  216. #endif
  217. #if(EMCDEAL_EN!=0)
  218. // LED_ResDispaly();
  219. #endif
  220. // flash_voSysParaWrite();
  221. uwFlash_IRQ_Enble=1;
  222. // hw_voPWMOn();
  223. // DL_TimerG_setCaptureCompareValue(PWM_B_INST, 1000, GPIO_PWM_B_C1_IDX);
  224. while (1)
  225. {
  226. // DL_GPIO_togglePins(LED_PORT, LED_LED1_PIN);
  227. // DL_GPIO_togglePins(LED_PORT, LED_LED2_PIN);
  228. AppLoop();
  229. // PROFILER_BG();
  230. ACnt++;
  231. // delay_cycles(DELAY);
  232. // DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 1875, DL_TIMER_CC_0_INDEX);
  233. // DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 1250, DL_TIMER_CC_2_INDEX);
  234. // DL_TimerA_setCaptureCompareValue(MOTOR_PWM_INST, 625, DL_TIMER_CC_3_INDEX);
  235. //
  236. // DL_TimerG_setCaptureCompareValue(LED_PWM_INST, 100, DL_TIMER_CC_0_INDEX);
  237. // DL_TimerG_setCaptureCompareValue(LED_PWM_INST, 100, DL_TIMER_CC_1_INDEX);
  238. }
  239. }
  240. /***************************************************************
  241. Function: mn_voParaSet;
  242. Description:software intial
  243. Call by:
  244. Input Variables: N/A
  245. Output/Return Variables: N/A
  246. Subroutine Call: N/A;
  247. Reference: N/A
  248. ****************************************************************/
  249. void mn_voParaSet(void)
  250. {
  251. flash_voSysParaRead();//i2c_voSysparaReadFromEE(&i2c_stRXCRCOut);
  252. flash_voErrorRead();
  253. flash_HistoryRead();
  254. flash_voProductParaRead();
  255. //flash_voMosResParaRead();
  256. i2c_stRXCRCOut.ReadFinishFlg = TRUE;
  257. if (i2c_stRXCRCOut.blHistoryParaFltFlg == FALSE)
  258. {
  259. ass_ParaSet.uwAsssistSelectNum =stHistoryPara.uwAssModSelect.uwReal; // I2C_uwHistoryParaRead[0];
  260. cp_stHistoryPara.uwOpenTimes = stHistoryPara.uwOpenTimes.uwReal ;//I2C_uwHistoryParaRead[1];
  261. cp_stHistoryPara.ulUsedTime =(((ULONG)stHistoryPara.uwUsedTimeH.uwReal)<<16) + stHistoryPara.uwUsedTimeL.uwReal ;// (((ULONG)I2C_uwHistoryParaRead[2]) << 16) + I2C_uwHistoryParaRead[3];
  262. cp_stHistoryPara.swNTCTempMaxCe = stHistoryPara.swNTCTempMaxCe.swReal ;//I2C_uwHistoryParaRead[4];
  263. cp_stHistoryPara.swNTCTempMinCe = stHistoryPara.swNTCTempMinCe.swReal ;//I2C_uwHistoryParaRead[5];
  264. cp_stHistoryPara.uwAlamHOcurTimes =stHistoryPara.uwAlamHOcurTimes.uwReal ;// I2C_uwHistoryParaRead[6];
  265. cp_stHistoryPara.uwAlamSOcurTimes =stHistoryPara.uwAlamSOcurTimes.uwReal ;// I2C_uwHistoryParaRead[7];
  266. cp_stHistoryPara.uwAlamOHeatTimes = stHistoryPara.uwAlamOHeatTimes.uwReal ;//I2C_uwHistoryParaRead[8];
  267. cp_stHistoryPara.uwAlamRotorLockTimes =stHistoryPara.uwAlamRotorLockTimes.uwReal ;// I2C_uwHistoryParaRead[9];
  268. cp_stHistoryPara.uwAlamPhsLossTimes =stHistoryPara.uwAlamPhsLossTimes.uwReal ;// I2C_uwHistoryParaRead[10];
  269. cp_stHistoryPara.uwAlamOVolTimes =stHistoryPara.uwAlamOVolTimes.uwReal ;// I2C_uwHistoryParaRead[11];
  270. cp_stHistoryPara.uwAlamUVolTimes = stHistoryPara.uwAlamUVolTimes.uwReal ;//I2C_uwHistoryParaRead[12];
  271. cp_stHistoryPara.uwAlamComOTimeTimes =stHistoryPara.uwAlamComOTimeTimes.uwReal ;// I2C_uwHistoryParaRead[13];
  272. cp_stHistoryPara.uwG1AvgPwrConsumption =stHistoryPara.uwG1AvgPwrConsumption.uwReal ;// I2C_uwHistoryParaRead[14];
  273. cp_stHistoryPara.uwG2AvgPwrConsumption =stHistoryPara.uwG2AvgPwrConsumption.uwReal ;// I2C_uwHistoryParaRead[15];
  274. cp_stHistoryPara.uwG3AvgPwrConsumption =stHistoryPara.uwG3AvgPwrConsumption.uwReal ;// I2C_uwHistoryParaRead[16];
  275. cp_stHistoryPara.uwG4AvgPwrConsumption =stHistoryPara.uwG4AvgPwrConsumption.uwReal ;// I2C_uwHistoryParaRead[17];
  276. cp_stHistoryPara.uwG5AvgPwrConsumption =stHistoryPara.uwG5AvgPwrConsumption.uwReal ;// I2C_uwHistoryParaRead[18];
  277. cp_stHistoryPara.ulODOTrip =(((ULONG)stHistoryPara.uwODOTripH.uwReal)<<16) + stHistoryPara.uwODOTripL.uwReal ;// (((ULONG)I2C_uwHistoryParaRead[19]) << 16) + I2C_uwHistoryParaRead[20];
  278. cp_stHistoryPara.ulODOTime =(((ULONG)stHistoryPara.uwODOTimeH.uwReal)<<16) +stHistoryPara.uwODOTimeL.uwReal ;// (((ULONG)I2C_uwHistoryParaRead[21]) << 16) + I2C_uwHistoryParaRead[22];
  279. cp_stHistoryPara.ulTripSum =(((ULONG)stHistoryPara.uwTripSumH.uwReal)<<16) +stHistoryPara.uwTripSumL.uwReal ;// (((ULONG)I2C_uwHistoryParaRead[23]) << 16) + I2C_uwHistoryParaRead[24];
  280. cp_stHistoryPara.ulTripSumTime =(((ULONG)stHistoryPara.uwTripSumTimeH.uwReal)<<16) +stHistoryPara.uwTripSumTimeL.uwReal ;// (((ULONG)I2C_uwHistoryParaRead[25]) << 16) + I2C_uwHistoryParaRead[26];
  281. cp_stHistoryPara.uwTorSensorAlamTimes =stHistoryPara.uwTorSensorAlamTimes.uwReal ;// I2C_uwHistoryParaRead[27];
  282. cp_stHistoryPara.uwCadSensorAlamTimes =stHistoryPara.uwCadSensorAlamTimes.uwReal ;// I2C_uwHistoryParaRead[28];
  283. cp_stHistoryPara.uwBikeSpdSensorAlamTimes = stHistoryPara.uwBikeSpdSensorAlamTimes.uwReal ;//I2C_uwHistoryParaRead[29];
  284. cp_stHistoryPara.uwPosSensorAlamTimes =stHistoryPara.uwPosSensorAlamTimes.uwReal ;// I2C_uwHistoryParaRead[30];
  285. }
  286. else
  287. {}
  288. // peripheral Para Set
  289. cadence_stFreGetCof.uwTorque_NumbersPulses = TORQUE_NUMBERS_PULSES;
  290. cadence_stFreGetCof.uwCad_NumbersPulses = CADENCE_NUMBERS_PULSES;
  291. bikespeed_stFreGetCof.uwNumbersPulses = BIKESPEED_NUMBERS_PULSES;
  292. torsensor_stTorSensorCof.uwMaxSensorTorquePu = ((ULONG)TORQUE_MAX_RANGE << 14) / TORQUEBASE; // Q14
  293. /////////////////////////////////
  294. if (cp_stFlg.ParaUseEEFlg == TRUE)
  295. {
  296. if (i2c_stRXCRCOut.ReadFinishFlg == TRUE)
  297. {
  298. if (i2c_stRXCRCOut.blMotorParaFltFlg == FALSE)
  299. {
  300. cp_stMotorPara.swMotrPolePairs =Syspara2.stMotorPara.uwPolePairs.uwReal;// I2C_uwMotorParaRead[0];
  301. cp_stMotorPara.swRsOhm =Syspara2.stMotorPara.uwRsmOhm.uwReal; // I2C_uwMotorParaRead[1];
  302. cp_stMotorPara.uwLdmH = Syspara2.stMotorPara.uwLduH.uwReal ;//I2C_uwMotorParaRead[2];
  303. cp_stMotorPara.uwLqmH = Syspara2.stMotorPara.uwLquH.uwReal ;//I2C_uwMotorParaRead[3];
  304. cp_stMotorPara.swFluxWb = Syspara2.stMotorPara.uwFluxmWb.uwReal ;//I2C_uwMotorParaRead[4];
  305. cp_stMotorPara.swIdMaxA = Syspara2.stMotorPara.uwIdMaxA.uwReal ;//I2C_uwMotorParaRead[5];
  306. cp_stMotorPara.swIdMinA =Syspara2.stMotorPara.uwIdMinA.uwReal ;// I2C_uwMotorParaRead[6];
  307. cp_stMotorPara.swRSpeedRpm = Syspara2.stMotorPara.uwRSpdRpm.uwReal ;//I2C_uwMotorParaRead[7];
  308. cp_stMotorPara.swRPwrWt = Syspara2.stMotorPara.uwRPwrWt.uwReal ;//I2C_uwMotorParaRead[8];
  309. cp_stMotorPara.swRIarmsA =Syspara2.stMotorPara.uwRCurA.uwReal ;// I2C_uwMotorParaRead[9];
  310. cp_stMotorPara.swRUdcV = Syspara2.stMotorPara.uwRVolV.uwReal ;//I2C_uwMotorParaRead[10];
  311. cp_stMotorPara.swJD = Syspara2.stMotorPara.uwJD.uwReal ;//I2C_uwMotorParaRead[11];
  312. cp_stMotorPara.swTorMax = Syspara2.stMotorPara.uwTorMaxNm.uwReal ;//I2C_uwMotorParaRead[12];
  313. }
  314. else
  315. {}
  316. if (i2c_stRXCRCOut.blBikeParaFltFlg == FALSE)
  317. {
  318. ass_ParaCong.uwWheelPerimeter =Syspara2.stBikePara.uwWheelPerimeter.uwReal ;// I2C_uwBikeParaRead[0];
  319. ass_ParaCong.swDeltPerimeter = Syspara2.stBikePara.swDeltPerimeter.swReal ;//I2C_uwBikeParaRead[1];
  320. ass_ParaCong.uwMechRationMotorEEPROM=Syspara2.stBikePara.uwMechRationMotor.uwReal;
  321. ass_ParaCong.uwMechRationMotor = (UWORD)(((ULONG)ass_ParaCong.uwMechRationMotorEEPROM*1024)/1000);//(UWORD)(((ULONG)I2C_uwBikeParaRead[2]*1024)/1000);
  322. ass_ParaCong.uwThrottleMaxSpdKmH =Syspara2.stBikePara.uwThrottleMaxSpdKmH.uwReal ;// I2C_uwBikeParaRead[3];
  323. ass_ParaCong.uwCartSpdKmH =Syspara2.stBikePara.uwCartSpdKmH.uwReal ;// I2C_uwBikeParaRead[4];
  324. ass_ParaCong.uwNmFrontChainring =Syspara2.stBikePara.uwNmFrontChainring.uwReal ;// I2C_uwBikeParaRead[5];
  325. ass_ParaCong.uwNmBackChainring =Syspara2.stBikePara.uwNmBackChainring.uwReal ;// I2C_uwBikeParaRead[6];
  326. ass_ParaCong.uwAssistSelect1 =Syspara2.stBikePara.uwAssistSelect1.uwReal ;// I2C_uwBikeParaRead[7];
  327. ass_ParaCong.uwAssistSelect2 =Syspara2.stBikePara.uwAssistSelect2.uwReal ;// I2C_uwBikeParaRead[8];
  328. ass_ParaCong.uwLightConfig =Syspara2.stBikePara.uwLightConfig.uwReal ;// I2C_uwBikeParaRead[9];
  329. ass_ParaCong.uwStartMode =Syspara2.stBikePara.uwStartMode.uwReal ;// I2C_uwBikeParaRead[10];
  330. ass_ParaCong.uwAutoPowerOffTime =Syspara2.stBikePara.uwAutoPowerOffTime.uwReal ;// I2C_uwBikeParaRead[11];
  331. }
  332. else
  333. {}
  334. if (i2c_stRXCRCOut.blMControlParaFltFlg == FALSE)
  335. {
  336. cp_stFlg.ParaFirstSetFlg =Syspara2.stMControlPara.ParaFirstSetFlg.uwReal ;// I2C_uwMControlRead[0];
  337. // cp_stFlg.SpiOffsetFirstSetFlg =Syspara2.stMControlPara.SpiOffsetFirstSetFlg ;// I2C_uwMControlRead[1];
  338. // spi_stResolverOut.swSpiThetaOffsetOrignPu =Syspara2.stMControlPara.uwSPIPosOffsetOrigin ;// I2C_uwMControlRead[2];
  339. // spi_stResolverOut.swSpiThetaOffsetPu =Syspara2.stMControlPara.uwSPIPosOffsetNow ;// I2C_uwMControlRead[3];
  340. cp_stMotorPara.swIpeakMaxA = Syspara2.stMControlPara.uwIPeakMaxA.uwReal ;//I2C_uwMControlRead[4];
  341. cp_stControlPara.swAlmOverCurrentVal =Syspara2.stMControlPara.uwAlamOCurA.uwReal ;// I2C_uwMControlRead[5];
  342. cp_stControlPara.swAlmOverVolVal1 =Syspara2.stMControlPara.uwAlamOVolV.uwReal ;// I2C_uwMControlRead[6];
  343. cp_stControlPara.swAlmUnderVolVal1 =Syspara2.stMControlPara.uwAlamUVolV.uwReal ;//I2C_uwMControlRead[7];
  344. cp_stControlPara.swAlmOverSpdVal =Syspara2.stMControlPara.uwAlamOverSpdRpm.uwReal ;// I2C_uwMControlRead[8];
  345. cp_stControlPara.swAlmOverHeatCeVal =Syspara2.stMControlPara.uwAlamOverHeatCe.uwReal ;// I2C_uwMControlRead[9];
  346. cp_stControlPara.swAlmRecOHeatVal =Syspara2.stMControlPara.uwAlamRecHeatCe.uwReal ;// I2C_uwMControlRead[10];
  347. cp_stControlPara.swAlmPwrLimitStartTempVal =Syspara2.stMControlPara.uwPwrLimitStartCe.uwReal ;// I2C_uwMControlRead[11];
  348. cp_stControlPara.swAlmMotorOverHeatCeVal =Syspara2.stMControlPara.uwAlamMotorOverHeatCe.uwReal ;// I2C_uwMControlRead[12];
  349. cp_stControlPara.swAlmMotorRecOHeatVal = Syspara2.stMControlPara.uwAlamMotorRecHeatCe.uwReal ;//I2C_uwMControlRead[13];
  350. cp_stControlPara.swAlmPwrLimitMotorStartTempVal =Syspara2.stMControlPara.uwPwrLimitMotorStartCe.uwReal ;// I2C_uwMControlRead[14];
  351. }
  352. else
  353. {
  354. cp_stFlg.RunPermitFlg = FALSE;
  355. }
  356. if (i2c_stRXCRCOut.blSensorParaFltFlg == FALSE)
  357. {
  358. torsensor_stTorSensorCof.uwTorqueOffsetOrign =Syspara2.stSensorPara.uwTorSensorOffsetOrigin.uwReal ;// I2C_uwSensorRead[0];
  359. torsensor_stTorSensorCof.uwTorqueOffsetNow1 =Syspara2.stSensorPara.uwTorSensorOffsetNow1.uwReal ;// I2C_uwSensorRead[1];
  360. torsensor_stTorSensorCof.uwTorqueOffsetNow2 =Syspara2.stSensorPara.uwTorSensorOffsetNow2.uwReal ;// I2C_uwSensorRead[2];
  361. torsensor_stTorSensorCof.uwTorqueOffsetNow3 =Syspara2.stSensorPara.uwTorSensorOffsetNow3.uwReal ;// I2C_uwSensorRead[3];
  362. torsensor_stTorSensorCof.uwTorqueOffsetNow4 =Syspara2.stSensorPara.uwTorSensorOffsetNow4.uwReal ;// I2C_uwSensorRead[4];
  363. torsensor_stTorSensorCof.uwMaxSensorTorquePu =Syspara2.stSensorPara.uwBikeTorMaxNm.uwReal ;// I2C_uwSensorRead[5];
  364. torsensor_stTorSensorCof.uwBikeTorStep1RealNm =Syspara2.stSensorPara.uwBikeTor1StepRealNm.uwReal ;// I2C_uwSensorRead[6];
  365. torsensor_stTorSensorCof.uwBikeTorStep1ADC =Syspara2.stSensorPara.uwBikeTor1StepADC.uwReal ;// I2C_uwSensorRead[7];
  366. torsensor_stTorSensorCof.uwBikeTorStep2RealNm =Syspara2.stSensorPara.uwBikeTor2StepRealNm.uwReal ;// I2C_uwSensorRead[8];
  367. torsensor_stTorSensorCof.uwBikeTorStep2ADC =Syspara2.stSensorPara.uwBikeTor2StepADC.uwReal ;// I2C_uwSensorRead[9];
  368. torsensor_stTorSensorCof.uwBikeTorStep3RealNm = Syspara2.stSensorPara.uwBikeTor3StepRealNm.uwReal ;//I2C_uwSensorRead[10];
  369. torsensor_stTorSensorCof.uwBikeTorStep3ADC =Syspara2.stSensorPara.uwBikeTor3StepADC.uwReal ;// I2C_uwSensorRead[11];
  370. torsensor_stTorSensorCof.uwBikeTorStep4RealNm =Syspara2.stSensorPara.uwBikeTor4StepRealNm.uwReal ;// I2C_uwSensorRead[12];
  371. torsensor_stTorSensorCof.uwBikeTorStep4ADC = Syspara2.stSensorPara.uwBikeTor4StepADC.uwReal ;//I2C_uwSensorRead[13];
  372. cadence_stFreGetCof.uwTorque_NumbersPulses = Syspara2.stSensorPara.uwTorque_SensorPulseNm.uwReal ;//I2C_uwSensorRead[14];
  373. bikespeed_stFreGetCof.uwNumbersPulses =Syspara2.stSensorPara.uwBikeSpdSensorPulseNm.uwReal ;// I2C_uwSensorRead[15];
  374. cadence_stFreGetCof.uwCad_NumbersPulses =Syspara2.stSensorPara.uwCad_SensorPulseNm.uwReal;// I2C_uwSensorRead[16];
  375. }
  376. else
  377. {
  378. cp_stFlg.RunPermitFlg = FALSE;
  379. }
  380. if (i2c_stRXCRCOut.blAssistParaFltFlg == FALSE)
  381. {
  382. ass_ParaSet.uwStartupCoef = Syspara2.stAssistPara.uwStartupGain.uwReal ;//I2C_uwAssistParaRead[0];
  383. ass_ParaSet.uwStartupCruiseCoef =Syspara2.stAssistPara.uwStartcruiseGain.uwReal ;// I2C_uwAssistParaRead[1];
  384. ass_ParaSet.uwAssistStartNm =Syspara2.stAssistPara.uwAssistStartNm.uwReal ;// I2C_uwAssistParaRead[2];
  385. ass_ParaSet.uwAssistStopNm =Syspara2.stAssistPara.uwAssistStopNm.uwReal ;// I2C_uwAssistParaRead[3];
  386. ass_ParaSet.uwStartUpGainStep =Syspara2.stAssistPara.uwStartUpGainStep.uwReal ;// I2C_uwAssistParaRead[4];
  387. ass_ParaSet.uwStartUpCadNm =Syspara2.stAssistPara.uwStartUpCadNm.uwReal ;// I2C_uwAssistParaRead[5];
  388. ass_ParaSet.uwTorLPFCadNm =Syspara2.stAssistPara.uwTorLPFCadNm.uwReal ;// I2C_uwAssistParaRead[6];
  389. ass_ParaSet.uwSpeedAssistSpdRpm =Syspara2.stAssistPara.uwSpeedAssistSpdRpm.uwReal ;// I2C_uwAssistParaRead[7];
  390. ass_ParaSet.uwSpeedAssistIMaxA =Syspara2.stAssistPara.uwSpeedAssistIMaxA.uwReal ;// I2C_uwAssistParaRead[8];
  391. ass_ParaSet.uwAssistLimitBikeSpdStart =Syspara2.stAssistPara.uwAssistLimitBikeSpdStart.uwReal ;// I2C_uwAssistParaRead[9];
  392. ass_ParaSet.uwAssistLimitBikeSpdStop =Syspara2.stAssistPara.uwAssistLimitBikeSpdStop.uwReal ;// I2C_uwAssistParaRead[10];
  393. ass_ParaSet.uwCadenceWeight =Syspara2.stAssistPara.uwCadenceAssistWeight.uwReal ;// I2C_uwAssistParaRead[11];
  394. ass_stCadAssSpdCtl.uwPidKp =Syspara2.stAssistPara.uwCadenceAssKp.uwReal ;// I2C_uwAssistParaRead[12];
  395. ass_stCadAssSpdCtl.swPidLimMax =Syspara2.stAssistPara.swCadenceVolStep.swReal ;// I2C_uwAssistParaRead[13];
  396. ass_stCadAssSpdCtl.swPidVolDec =Syspara2.stAssistPara.swCadenceVolDecStep.swReal ;// I2C_uwAssistParaRead[14];
  397. ass_stCadAssParaPro.swTargetAssCurAcc =Syspara2.stAssistPara.swCadenceCurStep.swReal ;// I2C_uwAssistParaRead[15];
  398. ass_stCadAssCoef.uwMaxCadRpm =Syspara2.stAssistPara.uwMaxCadRpm.uwReal ;// I2C_uwAssistParaRead[16];
  399. ass_stReservePara.uwReserve2 =Syspara2.stAssistPara.uwReserve2.uwReal ;// I2C_uwAssistParaRead[17];
  400. ass_stReservePara.uwReserve3 =Syspara2.stAssistPara.uwReserve3.uwReal ;// I2C_uwAssistParaRead[18];
  401. ass_stReservePara.uwReserve4 =Syspara2.stAssistPara.uwReserve4.uwReal ;// I2C_uwAssistParaRead[19];
  402. }
  403. else
  404. {}
  405. }
  406. // mn_voControlPareSet();
  407. cp_stFlg.ParaUseEEFinishFlg = TRUE;
  408. }
  409. else
  410. {}
  411. }
  412. void mn_voControlPareSet(void)
  413. {
  414. if (cp_stFlg.ParaUseEEFlg == TRUE)
  415. {
  416. cp_stFlg.RunModelSelect = Syspara2.flash_stPara.stTestParaInfo.RunModelSelect;
  417. cp_stFlg.ThetaGetModelSelect = Syspara2.flash_stPara.stTestParaInfo.ThetaGetModelSelect;
  418. cp_stFlg.CurrentSampleModelSelect = Syspara2.flash_stPara.stTestParaInfo.CurrentSampleModelSelect;
  419. cp_stFlg.RotateDirectionSelect = Syspara2.flash_stPara.stTestParaInfo.RotateDirectionSelect;
  420. cp_stControlPara.swAlignCurAp = Syspara2.flash_stPara.stTestParaInfo.uwInitPosCurAmp;
  421. cp_stControlPara.swDragVolAp = Syspara2.flash_stPara.stTestParaInfo.uwVFControlVolAmp;
  422. cp_stControlPara.swDragCurAp = Syspara2.flash_stPara.stTestParaInfo.uwIFControlCurAmp;
  423. cp_stControlPara.swDragSpdHz = Syspara2.flash_stPara.stTestParaInfo.uwVFIFTargetFreHz;
  424. cp_stControlPara.swSpeedAccRate = Syspara2.flash_stPara.stTestParaInfo.uwSpeedLoopAccRate;
  425. cp_stControlPara.swSpeedDccRate =Syspara2.flash_stPara.stTestParaInfo.uwSpeedLoopDecRate;
  426. cp_stControlPara.swAsrPIBandwidth = Syspara2.flash_stPara.stTestParaInfo.uwSpeedLoopBandWidthHz;
  427. cp_stControlPara.swAsrPIM = Syspara2.flash_stPara.stTestParaInfo.uwSpeedLoopCoefM;
  428. cp_stControlPara.swAcrPIBandwidth = Syspara2.flash_stPara.stTestParaInfo.uwCuerrentLoopBandWidthHz;
  429. cp_stControlPara.swAcrRaCoef = Syspara2.flash_stPara.stTestParaInfo.uwCurrentLoopCoefM;
  430. cp_stControlPara.swObsFluxPIDampratio =Syspara2.flash_stPara.stTestParaInfo.uwFluxObsCoefM ;
  431. cp_stControlPara.swObsFluxPICrossfreHz =Syspara2.flash_stPara.stTestParaInfo.uwFluxObsBandWidthHz ;
  432. cp_stControlPara.swObsSpdPLLM = Syspara2.flash_stPara.stTestParaInfo.uwThetaObsPLLCoefM;
  433. cp_stControlPara.swObsSpdPLLBandWidthHz = Syspara2.flash_stPara.stTestParaInfo.uwThetaObsPLLBandWidthHz;
  434. cp_stControlPara.swPWMMaxDuty = Syspara2.flash_stPara.stTestParaInfo.uwPWMMaxDuty;
  435. cp_stControlPara.swPWM7to5Duty = Syspara2.flash_stPara.stTestParaInfo.uwPWM7to5Duty;
  436. cp_stControlPara.swPwrLimitValWt = Syspara2.flash_stPara.stTestParaInfo.uwPwrLimit;
  437. cp_stControlPara.swPwrLimitErrWt = Syspara2.flash_stPara.stTestParaInfo.uwPwrLimitError;
  438. cp_stControlPara.swPwrLimitKpPu = Syspara2.flash_stPara.stTestParaInfo.uwPwrLimitKp;
  439. cp_stControlPara.swPwrLimitKiPu = Syspara2.flash_stPara.stTestParaInfo.uwPwrLimitKi;
  440. }
  441. }
  442. /***************************************************************
  443. Function: mn_voParaUpdate;
  444. Description:update pra from upper PC
  445. Call by:
  446. Input Variables: N/A
  447. Output/Return Variables: N/A
  448. Subroutine Call: N/A;
  449. Reference: N/A
  450. ****************************************************************/
  451. void mn_voParaUpdate(void)
  452. {
  453. if (cp_stFlg.ParaUpdateFlg == TRUE)
  454. {
  455. if (cp_stFlg.ParaMInfoUpdateFlg == TRUE)
  456. {
  457. cp_stMotorPara.swMotrPolePairs = MC_UpcInfo.stMotorInfo.uwPolePairs;
  458. cp_stMotorPara.swRsOhm = MC_UpcInfo.stMotorInfo.uwRsmOhm;
  459. cp_stMotorPara.uwLdmH = MC_UpcInfo.stMotorInfo.uwLduH;
  460. cp_stMotorPara.uwLqmH = MC_UpcInfo.stMotorInfo.uwLquH;
  461. cp_stMotorPara.swFluxWb = MC_UpcInfo.stMotorInfo.uwFluxmWb;
  462. cp_stMotorPara.swIdMaxA = MC_UpcInfo.stMotorInfo.uwIdMaxA;
  463. cp_stMotorPara.swIdMinA = MC_UpcInfo.stMotorInfo.uwIdMinA;
  464. cp_stMotorPara.swRSpeedRpm = MC_UpcInfo.stMotorInfo.uwRSpdRpm;
  465. cp_stMotorPara.swRPwrWt = MC_UpcInfo.stMotorInfo.uwRPwrWt;
  466. cp_stMotorPara.swRIarmsA = MC_UpcInfo.stMotorInfo.uwRCurA;
  467. cp_stMotorPara.swRUdcV = MC_UpcInfo.stMotorInfo.uwRVolV;
  468. cp_stMotorPara.swJD = MC_UpcInfo.stMotorInfo.uwJD;
  469. cp_stMotorPara.swTorMax = MC_UpcInfo.stMotorInfo.uwTorMaxNm;
  470. cp_stFlg.ParaMotorDriveUpdateFinishFlg = TRUE;
  471. cp_stFlg.ParaMInfoUpdateFlg = FALSE;
  472. }
  473. if (cp_stFlg.ParaBikeInfoUpdateFlg == TRUE)
  474. {
  475. ass_ParaCong.uwWheelPerimeter = MC_UpcInfo.stBikeInfo.uwWheelPerimeter;
  476. ass_ParaCong.uwMechRationMotorEEPROM=MC_UpcInfo.stBikeInfo.uwMechRationMotor;
  477. ass_ParaCong.uwMechRationMotor = (UWORD)(((ULONG)ass_ParaCong.uwMechRationMotorEEPROM*1024)/1000);
  478. ass_ParaCong.uwThrottleMaxSpdKmH = MC_UpcInfo.stBikeInfo.uwThrottleMaxSpdKmH;
  479. ass_ParaCong.uwCartSpdKmH = MC_UpcInfo.stBikeInfo.uwCartSpdKmH;
  480. ass_ParaCong.uwNmFrontChainring = MC_UpcInfo.stBikeInfo.uwNmFrontChainring;
  481. ass_ParaCong.uwNmBackChainring = MC_UpcInfo.stBikeInfo.uwNmBackChainring;
  482. ass_ParaCong.uwAssistSelect1 = MC_UpcInfo.stBikeInfo.uwAssistSelect1;
  483. ass_ParaCong.uwAssistSelect2 = MC_UpcInfo.stBikeInfo.uwAssistSelect2;
  484. ass_ParaCong.uwLightConfig = MC_UpcInfo.stBikeInfo.uwLightConfig;
  485. ass_ParaCong.swDeltPerimeter = MC_UpcInfo.stBikeInfo.swWheelSizeAdjust;
  486. ass_ParaCong.uwStartMode = MC_UpcInfo.stBikeInfo.uwStartMode;
  487. ass_ParaCong.uwAutoPowerOffTime = MC_UpcInfo.stBikeInfo.uwAutoPowerOffTime;
  488. cp_stFlg.ParaAssistUpdateFinishFlg = TRUE;
  489. cp_stFlg.ParaBikeInfoUpdateFlg = FALSE;
  490. }
  491. if (cp_stFlg.ParaMCInfoUpdateFlg == TRUE)
  492. {
  493. cp_stFlg.ParaFirstSetFlg = MC_UpcInfo.stTestParaInfo.uwEEFirstDefaultSetFlg;
  494. // cp_stFlg.SpiOffsetFirstSetFlg = MC_UpcInfo.stTestParaInfo.uwSPIOffsetFirstSetFlg;
  495. // spi_stResolverOut.swSpiThetaOffsetOrignPu = MC_UpcInfo.stMContorlInfo.uwSPIPosOffsetOrigin;
  496. // spi_stResolverOut.swSpiThetaOffsetPu = MC_UpcInfo.stMContorlInfo.uwSPIPosOffsetNow;
  497. cp_stMotorPara.swIpeakMaxA = MC_UpcInfo.stMContorlInfo.uwIPeakMaxA;
  498. cp_stControlPara.swAlmOverCurrentVal = MC_UpcInfo.stMContorlInfo.uwAlamOCurA;
  499. cp_stControlPara.swAlmOverVolVal1 = MC_UpcInfo.stMContorlInfo.uwAlamOVolV;
  500. cp_stControlPara.swAlmUnderVolVal1 = MC_UpcInfo.stMContorlInfo.uwAlamUVolV;
  501. cp_stControlPara.swAlmOverSpdVal = MC_UpcInfo.stMContorlInfo.uwAlamOverSpdRpm;
  502. cp_stControlPara.swAlmOverHeatCeVal = MC_UpcInfo.stMContorlInfo.uwAlamOverHeatCe;
  503. cp_stControlPara.swAlmRecOHeatVal = MC_UpcInfo.stMContorlInfo.uwAlamRecHeatCe;
  504. cp_stControlPara.swAlmPwrLimitStartTempVal = MC_UpcInfo.stMContorlInfo.uwPwrLimitStartCe;
  505. cp_stControlPara.swAlmMotorOverHeatCeVal = MC_UpcInfo.stMContorlInfo.uwAlamMotorOverHeatCe;
  506. cp_stControlPara.swAlmMotorRecOHeatVal = MC_UpcInfo.stMContorlInfo.uwAlamMotorRecHeatCe;
  507. cp_stControlPara.swAlmPwrLimitMotorStartTempVal = MC_UpcInfo.stMContorlInfo.uwPwrLimitMotorStartCe;
  508. cp_stFlg.ParaMotorDriveUpdateFinishFlg = TRUE;
  509. cp_stFlg.ParaMCInfoUpdateFlg = FALSE;
  510. }
  511. if (cp_stFlg.ParaSensorInfoUpdateFlg == TRUE)
  512. {
  513. torsensor_stTorSensorCof.uwTorqueOffsetOrign = MC_UpcInfo.stSensorInfo.uwTorSensorOffsetOrigin;
  514. torsensor_stTorSensorCof.uwMaxSensorTorquePu = MC_UpcInfo.stSensorInfo.uwBikeTorMaxNm;
  515. torsensor_stTorSensorCof.uwBikeTorStep1RealNm = MC_UpcInfo.stSensorInfo.uwBikeTor1StepRealNm;
  516. torsensor_stTorSensorCof.uwBikeTorStep1ADC = MC_UpcInfo.stSensorInfo.uwBikeTor1StepADC;
  517. torsensor_stTorSensorCof.uwBikeTorStep2RealNm = MC_UpcInfo.stSensorInfo.uwBikeTor2StepRealNm;
  518. torsensor_stTorSensorCof.uwBikeTorStep2ADC = MC_UpcInfo.stSensorInfo.uwBikeTor2StepADC;
  519. torsensor_stTorSensorCof.uwBikeTorStep3RealNm = MC_UpcInfo.stSensorInfo.uwBikeTor3StepRealNm;
  520. torsensor_stTorSensorCof.uwBikeTorStep3ADC = MC_UpcInfo.stSensorInfo.uwBikeTor3StepADC;
  521. torsensor_stTorSensorCof.uwBikeTorStep4RealNm = MC_UpcInfo.stSensorInfo.uwBikeTor4StepRealNm;
  522. torsensor_stTorSensorCof.uwBikeTorStep4ADC = MC_UpcInfo.stSensorInfo.uwBikeTor4StepADC;
  523. cadence_stFreGetCof.uwTorque_NumbersPulses = MC_UpcInfo.stSensorInfo.uwTorque_SensorPulseNm;
  524. bikespeed_stFreGetCof.uwNumbersPulses = MC_UpcInfo.stSensorInfo.uwBikeSpdSensorPulseNm;
  525. cadence_stFreGetCof.uwCad_NumbersPulses=MC_UpcInfo.stSensorInfo.uwCad_SensorPulseNm;
  526. cp_stFlg.ParaAssistUpdateFinishFlg = TRUE;
  527. cp_stFlg.ParaSensorInfoUpdateFlg = FALSE;
  528. }
  529. if (cp_stFlg.ParaAInfoUpdateFlg == TRUE)
  530. {
  531. ass_ParaSet.uwStartupCoef = MC_UpcInfo.stAssistInfo.swStartupGain;
  532. ass_ParaSet.uwStartupCruiseCoef = MC_UpcInfo.stAssistInfo.swStartcruiseGain;
  533. ass_ParaSet.uwAssistStartNm = MC_UpcInfo.stAssistInfo.uwAssistStartNm;
  534. ass_ParaSet.uwAssistStopNm = MC_UpcInfo.stAssistInfo.uwAssistStopNm;
  535. ass_ParaSet.uwStartUpGainStep = MC_UpcInfo.stAssistInfo.uwStartUpGainStep;
  536. ass_ParaSet.uwStartUpCadNm = MC_UpcInfo.stAssistInfo.uwStartUpCadNm;
  537. ass_ParaSet.uwTorLPFCadNm = MC_UpcInfo.stAssistInfo.uwTorLPFCadNm;
  538. ass_ParaSet.uwSpeedAssistSpdRpm = MC_UpcInfo.stAssistInfo.uwSpeedAssistSpdRpm;
  539. ass_ParaSet.uwSpeedAssistIMaxA = MC_UpcInfo.stAssistInfo.uwSpeedAssistIMaxA;
  540. ass_ParaSet.uwAssistLimitBikeSpdStart = MC_UpcInfo.stAssistInfo.uwAssistLimitBikeSpdStart;
  541. ass_ParaSet.uwAssistLimitBikeSpdStop = MC_UpcInfo.stAssistInfo.uwAssistLimitBikeSpdStop;
  542. ass_ParaSet.uwCadenceWeight = MC_UpcInfo.stAssistInfo.uwCadenceAssistWeight;
  543. ass_stCadAssSpdCtl.uwPidKp = MC_UpcInfo.stAssistInfo.uwCadAssPidKp;
  544. ass_stCadAssSpdCtl.swPidLimMax = MC_UpcInfo.stAssistInfo.swCadAssPidLimMax;
  545. ass_stCadAssSpdCtl.swPidVolDec = MC_UpcInfo.stAssistInfo.swCadAssPidVolDec;
  546. ass_stCadAssParaPro.swTargetAssCurAcc = MC_UpcInfo.stAssistInfo.swCadAssTargetAssCurAcc;
  547. ass_stCadAssCoef.uwMaxCadRpm = MC_UpcInfo.stAssistInfo.uwMaxCadRpm;
  548. ass_stReservePara.uwReserve2 = MC_UpcInfo.stAssistInfo.reserve2;
  549. ass_stReservePara.uwReserve3 = MC_UpcInfo.stAssistInfo.reserve3;
  550. ass_stReservePara.uwReserve4 = MC_UpcInfo.stAssistInfo.reserve4;
  551. cp_stFlg.ParaAssistUpdateFinishFlg = TRUE;
  552. cp_stFlg.ParaAInfoUpdateFlg = FALSE;
  553. }
  554. if(cp_stFlg.TestParaInfoUpdateFlg == TRUE)
  555. {
  556. cp_stFlg.RunModelSelect = MC_UpcInfo.stTestParaInfo.RunModelSelect;
  557. cp_stFlg.ThetaGetModelSelect = MC_UpcInfo.stTestParaInfo.ThetaGetModelSelect;
  558. cp_stFlg.CurrentSampleModelSelect = MC_UpcInfo.stTestParaInfo.CurrentSampleModelSelect;
  559. cp_stFlg.RotateDirectionSelect = MC_UpcInfo.stTestParaInfo.RotateDirectionSelect;
  560. cp_stControlPara.swAlignCurAp = MC_UpcInfo.stTestParaInfo.uwInitPosCurAmp;
  561. cp_stControlPara.swDragVolAp = MC_UpcInfo.stTestParaInfo.uwVFControlVolAmp;
  562. cp_stControlPara.swDragCurAp = MC_UpcInfo.stTestParaInfo.uwIFControlCurAmp;
  563. cp_stControlPara.swDragSpdHz = MC_UpcInfo.stTestParaInfo.uwVFIFTargetFreHz;
  564. cp_stControlPara.swSpeedAccRate = MC_UpcInfo.stTestParaInfo.uwSpeedLoopAccRate;
  565. cp_stControlPara.swSpeedDccRate = MC_UpcInfo.stTestParaInfo.uwSpeedLoopDecRate;
  566. cp_stControlPara.swAsrPIBandwidth = MC_UpcInfo.stTestParaInfo.uwSpeedLoopBandWidthHz;
  567. cp_stControlPara.swAsrPIM = MC_UpcInfo.stTestParaInfo.uwSpeedLoopCoefM;
  568. cp_stControlPara.swAcrPIBandwidth = MC_UpcInfo.stTestParaInfo.uwCuerrentLoopBandWidthHz;
  569. cp_stControlPara.swAcrRaCoef = MC_UpcInfo.stTestParaInfo.uwCurrentLoopCoefM;
  570. cp_stControlPara.swObsFluxPICrossfreHz = MC_UpcInfo.stTestParaInfo.uwFluxObsBandWidthHz;
  571. cp_stControlPara.swObsFluxPIDampratio = MC_UpcInfo.stTestParaInfo.uwFluxObsCoefM;
  572. cp_stControlPara.swObsSpdPLLBandWidthHz = MC_UpcInfo.stTestParaInfo.uwThetaObsPLLBandWidthHz;
  573. cp_stControlPara.swObsSpdPLLM = MC_UpcInfo.stTestParaInfo.uwThetaObsPLLCoefM;
  574. cp_stMotorPara.swJD = MC_UpcInfo.stTestParaInfo.uwJm;
  575. cp_stControlPara.swPWMMaxDuty = MC_UpcInfo.stTestParaInfo.uwPWMMaxDuty;
  576. cp_stControlPara.swPWM7to5Duty = MC_UpcInfo.stTestParaInfo.uwPWM7to5Duty;
  577. cp_stControlPara.swPwrLimitValWt = MC_UpcInfo.stTestParaInfo.uwPwrLimit;
  578. cp_stControlPara.swPwrLimitErrWt = MC_UpcInfo.stTestParaInfo.uwPwrLimitError;
  579. cp_stControlPara.swPwrLimitKpPu = MC_UpcInfo.stTestParaInfo.uwPwrLimitKp;
  580. cp_stControlPara.swPwrLimitKiPu = MC_UpcInfo.stTestParaInfo.uwPwrLimitKi;
  581. cp_stFlg.ParaMotorDriveUpdateFinishFlg = TRUE;
  582. cp_stFlg.TestParaInfoUpdateFlg = FALSE;
  583. }
  584. cp_stFlg.ParaUpdateFlg = FALSE;
  585. }
  586. }
  587. /***************************************************************
  588. Function: mn_voEEUperParaUpdate;
  589. Description:software intial
  590. Call by:
  591. Input Variables: N/A
  592. Output/Return Variables: N/A
  593. Subroutine Call: N/A;
  594. Reference: N/A
  595. ****************************************************************/
  596. void mn_voEEUperParaUpdate(void)
  597. {
  598. if (MC_UpcInfo.stMotorInfo.uwSaveFlg == TRUE)
  599. {
  600. Syspara2.stMotorPara.uwPolePairs.uwReal = cp_stMotorPara.swMotrPolePairs;
  601. Syspara2.stMotorPara.uwRsmOhm.uwReal = cp_stMotorPara.swRsOhm;
  602. Syspara2.stMotorPara.uwLduH.uwReal = cp_stMotorPara.uwLdmH;
  603. Syspara2.stMotorPara.uwLquH.uwReal = cp_stMotorPara.uwLqmH;
  604. Syspara2.stMotorPara.uwFluxmWb.uwReal = cp_stMotorPara.swFluxWb;
  605. Syspara2.stMotorPara.uwIdMaxA.uwReal = cp_stMotorPara.swIdMaxA;
  606. Syspara2.stMotorPara.uwIdMinA.uwReal = cp_stMotorPara.swIdMinA;
  607. Syspara2.stMotorPara.uwRSpdRpm.uwReal = cp_stMotorPara.swRSpeedRpm;
  608. Syspara2.stMotorPara.uwRPwrWt.uwReal = cp_stMotorPara.swRPwrWt;
  609. Syspara2.stMotorPara.uwRCurA.uwReal = cp_stMotorPara.swRIarmsA;
  610. Syspara2.stMotorPara.uwRVolV.uwReal = cp_stMotorPara.swRUdcV;
  611. Syspara2.stMotorPara.uwJD.uwReal = cp_stMotorPara.swJD;
  612. Syspara2.stMotorPara.uwTorMaxNm.uwReal = cp_stMotorPara.swTorMax;
  613. }
  614. Syspara2.stBikePara.swDeltPerimeter.swReal = ass_ParaCong.swDeltPerimeter;
  615. if (MC_UpcInfo.stBikeInfo.uwSaveFlg == TRUE)
  616. {
  617. Syspara2.stBikePara.uwWheelPerimeter.uwReal = ass_ParaCong.uwWheelPerimeter;
  618. Syspara2.stBikePara.swDeltPerimeter.swReal = ass_ParaCong.swDeltPerimeter;
  619. Syspara2.stBikePara.uwMechRationMotor.uwReal= ass_ParaCong.uwMechRationMotorEEPROM;
  620. //Syspara2.stBikePara.uwMechRationMotor.uwReal = (UWORD)(((ULONG)ass_ParaCong.uwMechRationMotor*1000)/1024);
  621. Syspara2.stBikePara.uwThrottleMaxSpdKmH.uwReal = ass_ParaCong.uwThrottleMaxSpdKmH;
  622. Syspara2.stBikePara.uwCartSpdKmH.uwReal = ass_ParaCong.uwCartSpdKmH;
  623. Syspara2.stBikePara.uwNmFrontChainring.uwReal = ass_ParaCong.uwNmFrontChainring;
  624. Syspara2.stBikePara.uwNmBackChainring.uwReal = ass_ParaCong.uwNmBackChainring;
  625. Syspara2.stBikePara.uwAssistSelect1.uwReal = ass_ParaCong.uwAssistSelect1;
  626. Syspara2.stBikePara.uwAssistSelect2.uwReal = ass_ParaCong.uwAssistSelect2;
  627. Syspara2.stBikePara.uwLightConfig.uwReal = ass_ParaCong.uwLightConfig;
  628. Syspara2.stBikePara.uwStartMode.uwReal = ass_ParaCong.uwStartMode;
  629. Syspara2.stBikePara.uwAutoPowerOffTime.uwReal = ass_ParaCong.uwAutoPowerOffTime;
  630. }
  631. if (MC_UpcInfo.stMContorlInfo.uwSaveFlg == TRUE)
  632. {
  633. Syspara2.stMControlPara.ParaFirstSetFlg.uwReal = cp_stFlg.ParaFirstSetFlg;
  634. // Syspara2.stMControlPara.SpiOffsetFirstSetFlg.uwReal = cp_stFlg.SpiOffsetFirstSetFlg;
  635. // Syspara2.stMControlPara.uwSPIPosOffsetOrigin.uwReal = spi_stResolverOut.swSpiThetaOffsetOrignPu;
  636. // Syspara2.stMControlPara.uwSPIPosOffsetNow.uwReal = spi_stResolverOut.swSpiThetaOffsetPu;
  637. Syspara2.stMControlPara.uwIPeakMaxA.uwReal = cp_stMotorPara.swIpeakMaxA;
  638. Syspara2.stMControlPara.uwAlamOCurA.uwReal = cp_stControlPara.swAlmOverCurrentVal;
  639. Syspara2.stMControlPara.uwAlamOVolV.uwReal = cp_stControlPara.swAlmOverVolVal1;
  640. Syspara2.stMControlPara.uwAlamUVolV.uwReal = cp_stControlPara.swAlmUnderVolVal1;
  641. Syspara2.stMControlPara.uwAlamOverSpdRpm.uwReal = cp_stControlPara.swAlmOverSpdVal;
  642. Syspara2.stMControlPara.uwAlamOverHeatCe.uwReal = cp_stControlPara.swAlmOverHeatCeVal;
  643. Syspara2.stMControlPara.uwAlamRecHeatCe.uwReal = cp_stControlPara.swAlmRecOHeatVal;
  644. Syspara2.stMControlPara.uwPwrLimitStartCe.uwReal = cp_stControlPara.swAlmPwrLimitStartTempVal;
  645. Syspara2.stMControlPara.uwAlamMotorOverHeatCe.uwReal = cp_stControlPara.swAlmMotorOverHeatCeVal;
  646. Syspara2.stMControlPara.uwAlamMotorRecHeatCe.uwReal = cp_stControlPara.swAlmMotorRecOHeatVal;
  647. Syspara2.stMControlPara.uwPwrLimitMotorStartCe.uwReal = cp_stControlPara.swAlmPwrLimitMotorStartTempVal;
  648. }
  649. if (MC_UpcInfo.stSensorInfo.uwSaveFlg == TRUE)
  650. {
  651. Syspara2.stSensorPara.uwTorSensorOffsetOrigin.uwReal = torsensor_stTorSensorCof.uwTorqueOffsetOrign;
  652. Syspara2.stSensorPara.uwTorSensorOffsetNow1.uwReal = torsensor_stTorSensorCof.uwTorqueOffsetNow1;
  653. Syspara2.stSensorPara.uwTorSensorOffsetNow2.uwReal = torsensor_stTorSensorCof.uwTorqueOffsetNow2;
  654. Syspara2.stSensorPara.uwTorSensorOffsetNow3.uwReal = torsensor_stTorSensorCof.uwTorqueOffsetNow3;
  655. Syspara2.stSensorPara.uwTorSensorOffsetNow4.uwReal = torsensor_stTorSensorCof.uwTorqueOffsetNow4;
  656. Syspara2.stSensorPara.uwBikeTorMaxNm.uwReal = torsensor_stTorSensorCof.uwMaxSensorTorquePu;
  657. Syspara2.stSensorPara.uwBikeTor1StepRealNm.uwReal = torsensor_stTorSensorCof.uwBikeTorStep1RealNm;
  658. Syspara2.stSensorPara.uwBikeTor1StepADC.uwReal = torsensor_stTorSensorCof.uwBikeTorStep1ADC;
  659. Syspara2.stSensorPara.uwBikeTor2StepRealNm.uwReal = torsensor_stTorSensorCof.uwBikeTorStep2RealNm;
  660. Syspara2.stSensorPara.uwBikeTor2StepADC.uwReal = torsensor_stTorSensorCof.uwBikeTorStep2ADC;
  661. Syspara2.stSensorPara.uwBikeTor3StepRealNm.uwReal = torsensor_stTorSensorCof.uwBikeTorStep3RealNm;
  662. Syspara2.stSensorPara.uwBikeTor3StepADC.uwReal = torsensor_stTorSensorCof.uwBikeTorStep3ADC;
  663. Syspara2.stSensorPara.uwBikeTor4StepRealNm.uwReal = torsensor_stTorSensorCof.uwBikeTorStep4RealNm;
  664. Syspara2.stSensorPara.uwBikeTor4StepADC.uwReal = torsensor_stTorSensorCof.uwBikeTorStep4ADC;
  665. Syspara2.stSensorPara.uwTorque_SensorPulseNm.uwReal = cadence_stFreGetCof.uwTorque_NumbersPulses;
  666. Syspara2.stSensorPara.uwBikeSpdSensorPulseNm.uwReal = bikespeed_stFreGetCof.uwNumbersPulses;
  667. Syspara2.stSensorPara.uwCad_SensorPulseNm.uwReal= cadence_stFreGetCof.uwCad_NumbersPulses;
  668. }
  669. if (MC_UpcInfo.stTestParaInfo.uwSaveFlg == TRUE )
  670. {
  671. memcpy(&Syspara2.flash_stPara.stTestParaInfo.uwTestParaSaveFlg, &MC_UpcInfo.stTestParaInfo.uwTestParaSaveFlg, sizeof(Syspara2.flash_stPara.stTestParaInfo));
  672. }
  673. if (MC_UpcInfo.stAssistInfo.uwSaveFlg == TRUE)
  674. {
  675. Syspara2.stAssistPara.uwStartupGain.uwReal = ass_ParaSet.uwStartupCoef;
  676. Syspara2.stAssistPara.uwStartcruiseGain.uwReal = ass_ParaSet.uwStartupCruiseCoef;
  677. Syspara2.stAssistPara.uwAssistStartNm.uwReal = ass_ParaSet.uwAssistStartNm;
  678. Syspara2.stAssistPara.uwAssistStopNm.uwReal = ass_ParaSet.uwAssistStopNm;
  679. Syspara2.stAssistPara.uwStartUpGainStep.uwReal = ass_ParaSet.uwStartUpGainStep;
  680. Syspara2.stAssistPara.uwStartUpCadNm.uwReal = ass_ParaSet.uwStartUpCadNm;
  681. Syspara2.stAssistPara.uwTorLPFCadNm.uwReal = ass_ParaSet.uwTorLPFCadNm;
  682. Syspara2.stAssistPara.uwSpeedAssistSpdRpm.uwReal = ass_ParaSet.uwSpeedAssistSpdRpm;
  683. Syspara2.stAssistPara.uwSpeedAssistIMaxA.uwReal = ass_ParaSet.uwSpeedAssistIMaxA;
  684. Syspara2.stAssistPara.uwAssistLimitBikeSpdStart.uwReal = ass_ParaSet.uwAssistLimitBikeSpdStart;
  685. Syspara2.stAssistPara.uwAssistLimitBikeSpdStop.uwReal = ass_ParaSet.uwAssistLimitBikeSpdStop;
  686. Syspara2.stAssistPara.uwCadenceAssistWeight.uwReal = ass_ParaSet.uwCadenceWeight;
  687. Syspara2.stAssistPara.uwCadenceAssKp.uwReal = ass_stCadAssSpdCtl.uwPidKp;
  688. Syspara2.stAssistPara.swCadenceVolStep.swReal = ass_stCadAssSpdCtl.swPidLimMax;
  689. Syspara2.stAssistPara.swCadenceVolDecStep.swReal = ass_stCadAssSpdCtl.swPidVolDec;
  690. Syspara2.stAssistPara.swCadenceCurStep.swReal = ass_stCadAssParaPro.swTargetAssCurAcc;
  691. Syspara2.stAssistPara.uwMaxCadRpm.uwReal = ass_stCadAssCoef.uwMaxCadRpm;
  692. Syspara2.stAssistPara.uwReserve2.uwReal = ass_stReservePara.uwReserve2;
  693. Syspara2.stAssistPara.uwReserve3.uwReal = ass_stReservePara.uwReserve3;
  694. Syspara2.stAssistPara.uwReserve4.uwReal = ass_stReservePara.uwReserve4;
  695. }
  696. }
  697. /***************************************************************
  698. Function: mn_voEEHistoryParaUpdate;
  699. Description:software intial
  700. Call by:
  701. Input Variables: N/A
  702. Output/Return Variables: N/A
  703. Subroutine Call: N/A;
  704. Reference: N/A
  705. ****************************************************************/
  706. void mn_voEEHistoryParaUpdate(void)
  707. {
  708. stHistoryPara.uwAssModSelect.uwReal = ass_ParaSet.uwAsssistSelectNum;
  709. stHistoryPara.uwOpenTimes.uwReal = cp_stHistoryPara.uwOpenTimes;
  710. stHistoryPara.uwUsedTimeH.uwReal = (UWORD)(cp_stHistoryPara.ulUsedTime >> 16);
  711. stHistoryPara.uwUsedTimeL.uwReal = (UWORD)cp_stHistoryPara.ulUsedTime;
  712. stHistoryPara.swNTCTempMaxCe.swReal = cp_stHistoryPara.swNTCTempMaxCe;
  713. stHistoryPara.swNTCTempMinCe.swReal = cp_stHistoryPara.swNTCTempMinCe;
  714. stHistoryPara.uwAlamHOcurTimes.uwReal = cp_stHistoryPara.uwAlamHOcurTimes;
  715. stHistoryPara.uwAlamSOcurTimes.uwReal = cp_stHistoryPara.uwAlamSOcurTimes;
  716. stHistoryPara.uwAlamOHeatTimes.uwReal = cp_stHistoryPara.uwAlamOHeatTimes;
  717. stHistoryPara.uwAlamRotorLockTimes.uwReal = cp_stHistoryPara.uwAlamRotorLockTimes;
  718. stHistoryPara.uwAlamPhsLossTimes.uwReal = cp_stHistoryPara.uwAlamPhsLossTimes;
  719. stHistoryPara.uwAlamOVolTimes.uwReal = cp_stHistoryPara.uwAlamOVolTimes;
  720. stHistoryPara.uwAlamUVolTimes.uwReal = cp_stHistoryPara.uwAlamUVolTimes;
  721. stHistoryPara.uwAlamComOTimeTimes.uwReal = cp_stHistoryPara.uwAlamComOTimeTimes;
  722. stHistoryPara.uwG1AvgPwrConsumption.uwReal = cp_stHistoryPara.uwG1AvgPwrConsumption;
  723. stHistoryPara.uwG2AvgPwrConsumption.uwReal = cp_stHistoryPara.uwG2AvgPwrConsumption;
  724. stHistoryPara.uwG3AvgPwrConsumption.uwReal = cp_stHistoryPara.uwG3AvgPwrConsumption;
  725. stHistoryPara.uwG4AvgPwrConsumption.uwReal = cp_stHistoryPara.uwG4AvgPwrConsumption;
  726. stHistoryPara.uwG5AvgPwrConsumption.uwReal = cp_stHistoryPara.uwG5AvgPwrConsumption;
  727. stHistoryPara.uwODOTripH.uwReal = (UWORD)(cp_stHistoryPara.ulODOTrip >> 16);
  728. stHistoryPara.uwODOTripL.uwReal = (UWORD)cp_stHistoryPara.ulODOTrip;
  729. stHistoryPara.uwODOTimeH.uwReal = (UWORD)(cp_stHistoryPara.ulODOTime >> 16);
  730. stHistoryPara.uwODOTimeL.uwReal = (UWORD)cp_stHistoryPara.ulODOTime;
  731. stHistoryPara.uwTripSumH.uwReal = (UWORD)(cp_stHistoryPara.ulTripSum >> 16);
  732. stHistoryPara.uwTripSumL.uwReal = (UWORD)cp_stHistoryPara.ulTripSum;
  733. stHistoryPara.uwTripSumTimeH.uwReal = (UWORD)(cp_stHistoryPara.ulTripSumTime >> 16);
  734. stHistoryPara.uwTripSumTimeL.uwReal = (UWORD)cp_stHistoryPara.ulTripSumTime;
  735. stHistoryPara.uwTorSensorAlamTimes.uwReal = cp_stHistoryPara.uwTorSensorAlamTimes;
  736. stHistoryPara.uwCadSensorAlamTimes.uwReal = cp_stHistoryPara.uwCadSensorAlamTimes;
  737. stHistoryPara.uwBikeSpdSensorAlamTimes.uwReal = cp_stHistoryPara.uwBikeSpdSensorAlamTimes;
  738. stHistoryPara.uwPosSensorAlamTimes.uwReal = cp_stHistoryPara.uwPosSensorAlamTimes;
  739. }
  740. /***************************************************************
  741. Function: mn_voSoftwareInit;
  742. Description:software intial
  743. Call by:
  744. Input Variables: N/A
  745. Output/Return Variables: N/A
  746. Subroutine Call: N/A;
  747. Reference: N/A
  748. ****************************************************************/
  749. void mn_voSoftwareInit(void)
  750. {
  751. /* System coefficient calculate */
  752. cof_voSysInit();
  753. /* Event parameter init */
  754. event_voInit();
  755. /* Motor parameter init */
  756. // mn_voMtParInit();
  757. /* PowerInit */
  758. power_voPowerInit();
  759. /* Control Parameters init */
  760. mn_voMcParInit();
  761. /*cmd handle Initial */
  762. cmd_voCmdInit();
  763. /* FSM init */
  764. FSM_voInit();
  765. RUN_FSM_voInit();
  766. Switch_speed_FSMInit();
  767. /* TempInit */
  768. TempInit();
  769. /* BikeSpeedInit */
  770. bikespeed_voBikeSpeedInit();
  771. /* CadenceInit */
  772. cadence_voCadenceInit();
  773. Can_voInitMC_Run();
  774. mn_voControlPareSet();
  775. /* Alarm init */
  776. alm_voCoef();
  777. /* ADC init */
  778. adc_voSampleInit();
  779. adc_voSampleCoef(&adc_stCof);
  780. /* UART init */
  781. //uart_voMonitorInit();
  782. //profiler_init();
  783. }
  784. /************************************************************************
  785. Function: void mn_voMtParInit(void)
  786. Description:
  787. Call by:
  788. Input Variables:
  789. Output/Return Variables:
  790. Subroutine Call:
  791. Reference:
  792. ************************************************************************/
  793. void mn_voMtParInit(void)
  794. {
  795. mn_swIdTurn1Pu = ((SLONG)M_LD_TURN1_ID_AP << 14) / cof_uwIbAp; // Q14, saturation current of Ld
  796. mn_slLdTurn1Pu = ((SLONG)M_LD_TURN1_LD_MH << 10) / cof_uwLbHm; // Q10, saturation inductance of Ld
  797. mn_swIdTurn2Pu = ((SLONG)M_LD_TURN2_ID_AP << 14) / cof_uwIbAp; // Q14, saturation current of Ld
  798. mn_slLdTurn2Pu = ((SLONG)M_LD_TURN2_LD_MH << 10) / cof_uwLbHm; // Q10, saturation inductance of Ld
  799. if (mn_swIdTurn1Pu == mn_swIdTurn2Pu)
  800. {
  801. mn_swKLdSat = 0;
  802. }
  803. else
  804. {
  805. mn_swKLdSat = ((mn_slLdTurn2Pu - mn_slLdTurn1Pu) << 10) / (mn_swIdTurn2Pu - mn_swIdTurn1Pu); // Q10
  806. }
  807. mn_swIqTurn1Pu = ((SLONG)M_LQ_TURN1_IQ_AP << 14) / cof_uwIbAp; // Q14, saturation current of Lq
  808. mn_slLqTurn1Pu = ((SLONG)M_LQ_TURN1_LQ_MH << 10) / cof_uwLbHm; // Q10, saturation inductance of Lq
  809. mn_swIqTurn2Pu = ((SLONG)M_LQ_TURN2_IQ_AP << 14) / cof_uwIbAp; // Q14, saturation current of Lq
  810. mn_slLqTurn2Pu = ((SLONG)M_LQ_TURN2_LQ_MH << 10) / cof_uwLbHm; // Q10, saturation inductance of Lq
  811. if (mn_swIqTurn1Pu == mn_swIqTurn2Pu)
  812. {
  813. mn_swKLqSat = 0;
  814. }
  815. else
  816. {
  817. mn_swKLqSat = ((mn_slLqTurn2Pu - mn_slLqTurn1Pu) << 10) / (mn_swIqTurn2Pu - mn_swIqTurn1Pu); // Q10
  818. }
  819. }
  820. /************************************************************************
  821. Function: void mn_voMcParInit(void)
  822. Description:
  823. Call by:
  824. Input Variables:
  825. Output/Return Variables:
  826. Subroutine Call:
  827. Reference:
  828. ************************************************************************/
  829. void mn_voMcParInit(void)
  830. {
  831. align_voInit();
  832. // Align Parameters
  833. mn_uwAlignCurPu = CUR_AP2PU(cp_stControlPara.swAlignCurAp); // Q14
  834. mn_ulAlignRampTbcCt = TBC_MS2CT(cp_stControlPara.swAlignRampTMms);
  835. mn_ulAlignHoldTbcCt = TBC_MS2CT(cp_stControlPara.swAlignHoldTMms);
  836. if (mn_ulAlignRampTbcCt == 0)
  837. {
  838. mn_ulAlignCurIncPerTbcPu = 1;
  839. }
  840. else
  841. {
  842. mn_ulAlignCurIncPerTbcPu = ((ULONG)mn_uwAlignCurPu << 15) / mn_ulAlignRampTbcCt; // Q29
  843. if (mn_ulAlignCurIncPerTbcPu == 0)
  844. {
  845. mn_ulAlignCurIncPerTbcPu = 1;
  846. }
  847. }
  848. mn_slAlignAngInit = ANG_DEG2PU(cp_stControlPara.swAlignAngInitDeg);
  849. // Open Drag Parameters
  850. mn_uwDragCurPu = CUR_AP2PU(cp_stControlPara.swDragCurAp); // Q14
  851. mn_uwDragSpdPu = SPD_HZ2PU(cp_stControlPara.swDragSpdHz); // Q15
  852. mn_ulDragSpdRampTbcCt = TBC_MS2CT(cp_stControlPara.swDragSpdRampTMms);
  853. if (mn_ulDragSpdRampTbcCt == 0)
  854. {
  855. mn_ulDragSpdIncPerTbcPu = 1;
  856. }
  857. else
  858. {
  859. mn_ulDragSpdIncPerTbcPu = ((ULONG)mn_uwDragSpdPu << 14) / mn_ulDragSpdRampTbcCt; // Q29
  860. if (mn_ulDragSpdIncPerTbcPu == 0)
  861. {
  862. mn_ulDragSpdIncPerTbcPu = 1;
  863. }
  864. }
  865. // Open to Close Parameters
  866. mn_ulOpen2ClzCurRampTbcCt = TBC_MS2CT(cp_stControlPara.swOpen2ClzRampTMms);
  867. if (mn_ulOpen2ClzCurRampTbcCt == 0)
  868. {
  869. mn_ulOpen2ClzCurIncPerTbcPu = 1;
  870. }
  871. else
  872. {
  873. mn_ulOpen2ClzCurIncPerTbcPu = (ULONG)mn_uwDragCurPu / mn_ulOpen2ClzCurRampTbcCt;
  874. if (mn_ulOpen2ClzCurIncPerTbcPu == 0)
  875. {
  876. mn_ulOpen2ClzCurIncPerTbcPu = 1;
  877. }
  878. }
  879. // Stop Parameters
  880. mn_uwStopSpdRefPu = SPD_RPM2PU(cp_stControlPara.swStopSpdRefRpm);
  881. }
  882. void LED_ResDispaly(void)
  883. {
  884. uint32_t icnt;
  885. for(icnt=0;icnt<3;icnt++)
  886. {
  887. IO_FORWARDLED_ON();
  888. delay_125us(2000);
  889. IO_FORWARDLED_OFF();//关前灯
  890. delay_125us(2000);
  891. }
  892. }
  893. /*************************************************************************
  894. Copyright (c) 2018 Welling Motor Technology(Shanghai) Co. Ltd.
  895. All rights reserved.
  896. *************************************************************************/
  897. #ifdef _MAIN_C_
  898. #undef _MAIN_C_
  899. #endif
  900. /*************************************************************************
  901. End of this File (EOF)!
  902. Do not put anything after this part!
  903. *************************************************************************/