TimeTask_Event.c 17 KB

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  1. /**
  2. * @file TimeTask_Event.c
  3. * @author Zhang, Kai(zhangkai71@midea.com)
  4. * @brief Time task control
  5. * @version 0.1
  6. * @date 2021-09-27
  7. *
  8. * @copyright Copyright (c) 2021
  9. *
  10. */
  11. /******************************
  12. *
  13. * Included File
  14. *
  15. ******************************/
  16. #include "TimeTask_Event.h"
  17. #include "AssistCurve.h"
  18. #include "FSM_1st.h"
  19. #include "FuncLayerAPI.h"
  20. #include "can.h"
  21. #include "canAppl.h"
  22. #include "gd32f30x.h"
  23. #include "syspar.h"
  24. #include "user.h"
  25. #include "STLmain.h"
  26. /******************************
  27. *
  28. * Parameter
  29. *
  30. ******************************/
  31. _op_ Op[proc_cnt] = {{Event_5ms, EVE1MSCNT_5ms, EVE1MSCNT_5ms},
  32. {Event_10ms, EVE1MSCNT_10ms, EVE1MSCNT_10ms},
  33. {Event_20ms, EVE1MSCNT_20ms, EVE1MSCNT_20ms},
  34. {Event_100ms, EVE1MSCNT_100ms, EVE1MSCNT_100ms},
  35. {Event_200ms, EVE1MSCNT_200ms, EVE1MSCNT_200ms}};
  36. static SQWORD TimingTaskTimerTick = 0;
  37. static SQWORD TimingTaskTimerTickTemp = 0;
  38. static SQWORD TimingTaskTimerTickTempOld = 0;
  39. static SQWORD TimingTaskTimerTickPassed = 0;
  40. static UWORD LoopServerExecutedFlag = 0;
  41. static UWORD Event_pvt_uwAssistCnt = 0;
  42. static BOOL Event_pvt_blMafClrFlg = FALSE;
  43. static UWORD Event_pvt_uwBikeSpdRefTarget = 0, Event_pvt_uwBikeSpdRef = 0, Event_pvt_uwBikeSpdRefTargetZ1 = 0;
  44. static SWORD Event_pvt_swIqRefTarget = 0, Event_pvt_swIqRef = 0, Event_pvt_swIqRefTargetZ1 = 0;
  45. static BOOL Event_pvt_blBikeThroFlg = FALSE, Event_pvt_blBikeThroFlgZ1 = FALSE;
  46. /******************************
  47. *
  48. * Function
  49. *
  50. ******************************/
  51. void Event_1ms(void) /* parasoft-suppress METRICS-28 "本项目圈复杂度无法更改,后续避免" */
  52. {
  53. /* 1st FSM control */
  54. FSM_1st_Main();
  55. FSM1st_Sys_state.Event_hook();
  56. /* Power control */
  57. power_voPowerManagement(ass_stParaCong.uwAutoPowerOffTime * 60, cp_ulSystickCnt, OBC_ButtonStatus.ulButtonSetTimeCnt, \
  58. MC_RunInfo.Torque, MC_RunInfo.Cadence, MC_RunInfo.BikeSpeed, \
  59. cp_stFlg.ParaHistorySaveEEFinishFlg, cp_stFlg.ParaSaveEEFlg);
  60. /* cp_history info update */
  61. Can_voMC_Run_1ms();
  62. if(switch_flg.SysCoef_Flag == TRUE)
  63. {
  64. /* Torque move average filter */
  65. if (cadence_stFreGetOut.uwForwardCnt > 0)
  66. {
  67. cadence_stFreGetOut.uwForwardCnt = 0;
  68. ass_stTorqMafValue.swValue =(SWORD)torsensor_stTorSensorOut.uwTorquePu;
  69. ass_voMoveAverageFilter(&ass_stTorqMafValue);
  70. /* Iqref maf test, dont add torq obs */
  71. if(ass_stCalOut.blTorqPIFlg)
  72. {
  73. ass_stUqLimMafValue.swValue = ass_stTorqPIOut.swIRefPu;
  74. ass_voMoveAverageFilter(&ass_stUqLimMafValue);
  75. Event_pvt_blMafClrFlg = FALSE;
  76. }
  77. else if((!ass_stCalOut.blTorqPIFlg) && (Event_pvt_blMafClrFlg == FALSE))
  78. {
  79. ass_voMoveAverageFilterClear(&ass_stUqLimMafValue);
  80. Event_pvt_blMafClrFlg = TRUE;
  81. }
  82. else
  83. {
  84. //do noting
  85. }
  86. }
  87. /* Torque info update */
  88. torsensor_voTorADC();
  89. torsensor_voOffsetUpdate();
  90. /* Bike brake info update */
  91. bikebrake_voBikeBrakeDetect();
  92. /* Torque assist calculation*/
  93. //ass_stCalIn.SOCValue = 100;
  94. ass_stCalIn.SOCValue = MC_RunInfo.SOC;
  95. if(cp_stFlg.RunModelSelect == CityBIKE )
  96. {
  97. ass_stCalIn.swDirection = -1;
  98. }
  99. else if(cp_stFlg.RunModelSelect == MountainBIKE)
  100. {
  101. ass_stCalIn.swDirection = 1;
  102. }
  103. else
  104. {
  105. ass_stCalIn.swDirection = 1;
  106. }
  107. ass_stCalIn.swFlxIqLimit = (SWORD)abs(flx_stCtrlOut.swIqLimPu);
  108. ass_stCalIn.swPwrIqLimit = (SWORD)abs(pwr_stPwrLimOut2.swIqLimPu);
  109. ass_stCalIn.uwbikespeed = bikespeed_stFreGetOut.uwLPFFrequencyPu;
  110. ass_stCalIn.uwcadancelast = ass_stCalIn.uwcadance;
  111. ass_stCalIn.uwcadance = cadence_stFreGetOut.uwLPFFrequencyPu;
  112. ass_stCalIn.uwcadancePer = cadence_stFreGetOut.uwFreqPercent;
  113. ass_stCalIn.uwcadanceFWCnt = cadence_stFreGetOut.uwForwardCnt;
  114. ass_stCalIn.uwGearSt = (cp_stBikeRunInfoPara.uwBikeGear <= 6) ? cp_stBikeRunInfoPara.uwBikeGear : 0;
  115. ass_stCalIn.uwSpdFbkAbsPu = scm_uwSpdFbkLpfAbsPu;
  116. ass_stCalIn.swSpdFbkPu = scm_stSpdFbkLpf.slY.sw.hi;
  117. ass_stCalIn.uwBaseSpdrpm = cof_uwVbRpm;
  118. ass_stCalIn.uwtorque = (UWORD)ass_stTorqMafValue.slAverValue; //torsensor_stTorSensorOut.uwTorqueLPFPu;
  119. ass_stCalIn.uwtorquelpf = torsensor_stTorSensorOut.uwTorqueLPFPu;
  120. ass_stCalIn.uwtorquePer = torsensor_stTorSensorOut.uwTorquePu;
  121. ass_stCalIn.swCurFdbPu = scm_swIqFdbLpfPu;
  122. ass_stCalIn.swCurRefPu = scm_swIqRefPu;
  123. ass_voAssist();
  124. /* Select Bike Torque or Throttle Assist */
  125. if(Event_pvt_blBikeThroFlg == FALSE)
  126. {
  127. if (ass_stCalCoef.blAssistflag == TRUE && cp_stFlg.RunPermitFlg == TRUE && cp_stFlg.SpiOffsetFirstSetFlg ==1)
  128. {
  129. signal_state.Sensor = TRUE;
  130. }
  131. else if( cp_stFlg.SpiOffsetFirstSetFlg == 0 && cp_stFlg.RunPermitFlg == TRUE && cp_stFlg.SpiOffsetFirstSetFinishFlg == FALSE)
  132. {
  133. signal_state.Sensor = TRUE; //for Spi Theta Offset
  134. }
  135. else
  136. {
  137. signal_state.Sensor = FALSE;
  138. }
  139. /* Throttle to Torque */
  140. if(Event_pvt_blBikeThroFlgZ1 == TRUE)
  141. {
  142. /* Initial Value of Torque Assit Output */
  143. ass_stCalOut.swAssitCurRef = scm_swIqFdbLpfPu;
  144. ass_pvt_stCurLpf.slY.sw.hi = scm_swIqFdbLpfPu;
  145. ass_stCalOut.swTorRefEnd = (SWORD)abs(scm_swIqFdbLpfPu);
  146. }
  147. uart_swTorqRefNm = ass_stCalOut.swAssitCurRef;
  148. }
  149. else
  150. {
  151. signal_state.Sensor = TRUE;
  152. ass_stCalOut.swVoltLimitPu = scm_swVsDcpLimPu;
  153. /* Torque to Throttle */
  154. if(Event_pvt_blBikeThroFlgZ1 == FALSE)
  155. {
  156. /* Initial Value of Throttle Assit Output */
  157. Event_pvt_swIqRef = scm_swIqFdbLpfPu;
  158. Event_pvt_swIqRefTarget = scm_swIqFdbLpfPu;
  159. bikespeed_stPIOut.slIqRefPu = scm_swIqFdbLpfPu << 16;
  160. }
  161. /* Bike Throttle Assist Iqref Ramp */
  162. if(Event_pvt_swIqRef< Event_pvt_swIqRefTarget - 100)
  163. {
  164. if(Event_pvt_swIqRefTarget >= Event_pvt_swIqRefTargetZ1)
  165. {
  166. Event_pvt_swIqRef += 100;
  167. }
  168. }
  169. else
  170. {
  171. Event_pvt_swIqRef = Event_pvt_swIqRefTarget;
  172. }
  173. Event_pvt_swIqRefTargetZ1 = Event_pvt_swIqRefTarget;
  174. uart_swTorqRefNm = Event_pvt_swIqRef * ass_stCalIn.swDirection;
  175. }
  176. Event_pvt_blBikeThroFlgZ1 = Event_pvt_blBikeThroFlg;
  177. /* Speed assist mode flag */
  178. if((cp_stFlg.RunModelSelect == CityBIKE) || (cp_stFlg.RunModelSelect == MountainBIKE))
  179. {
  180. // if(cp_stBikeRunInfoPara.uwBikeGear == 0x22)
  181. // {
  182. // Event_pvt_uwAssistCnt ++;
  183. // if(Event_pvt_uwAssistCnt > 200 && cp_stFlg.RunPermitFlg == TRUE)
  184. // {
  185. // signal_state.Assist = TRUE;
  186. // Event_pvt_uwAssistCnt = 200;
  187. // }
  188. // }
  189. // else
  190. // {
  191. // Event_pvt_uwAssistCnt = 0;
  192. // signal_state.Assist = FALSE;
  193. // }
  194. //
  195. // if(signal_state.Assist == TRUE)
  196. // {
  197. // //6km/H = 100m/min = 1.67m/s
  198. // if(cp_stFlg.RunModelSelect == CityBIKE)
  199. // {
  200. // uart_slSpdRefRpm = -(10000/(ass_stParaCong.uwWheelPerimeter))*ass_stParaCong.uwNmBackChainring*ass_stParaCong.uwMechRationMotor/ass_stParaCong.uwNmFrontChainring;
  201. // // cp_stBikeRunInfoPara.BikeSpeedKmH = 60; //constant display of 6km/h
  202. // }
  203. // else if(cp_stFlg.RunModelSelect == MountainBIKE)
  204. // {
  205. // uart_slSpdRefRpm = (10000/(ass_stParaCong.uwWheelPerimeter))*ass_stParaCong.uwNmBackChainring*ass_stParaCong.uwMechRationMotor/ass_stParaCong.uwNmFrontChainring;
  206. // // cp_stBikeRunInfoPara.BikeSpeedKmH = 60; //constant display of 6km/h
  207. // }
  208. // else
  209. // {
  210. // //do nothing
  211. // }
  212. //
  213. // }
  214. // else
  215. // {
  216. // uart_slSpdRefRpm = 0;
  217. // }
  218. }
  219. else
  220. {
  221. if ((uart_slSpdRefRpm >= 10 || uart_slSpdRefRpm <= -10) && cp_stFlg.RunPermitFlg == TRUE )
  222. {
  223. signal_state.Assist = TRUE;
  224. }
  225. else
  226. {
  227. signal_state.Assist = FALSE;
  228. }
  229. }
  230. }
  231. }
  232. void Event_5ms(void)
  233. {
  234. /* Upper Computer Info Update */
  235. Can_voMC_Run_5ms();
  236. }
  237. void Event_10ms(void)
  238. {
  239. if(switch_flg.SysCoef_Flag == TRUE)
  240. {
  241. /* Throttle ADC voltage update */
  242. bikethrottle_voBikeThrottleADC();
  243. /* Speed command set */
  244. if(cp_stFlg.RunModelSelect != CityBIKE && cp_stFlg.RunModelSelect != MountainBIKE )
  245. {
  246. /* Use instrument */
  247. // Signal_detect();
  248. /* Use upper computer */
  249. if(cp_stFlg.RotateDirectionSelect == ForwardRotate)
  250. {
  251. uart_slSpdRefRpm = ((SLONG)MC_MotorSPD_rpm_Percent*5000)/100;
  252. }
  253. else if(cp_stFlg.RotateDirectionSelect == BackwardRotate)
  254. {
  255. uart_slSpdRefRpm = -((SLONG)MC_MotorSPD_rpm_Percent*5000)/100;
  256. }
  257. else
  258. {
  259. //do nothing
  260. }
  261. if(abs((int32_t)uart_slSpdRefRpm) < 300)
  262. {
  263. uart_slSpdRefRpm = 0;
  264. }
  265. }
  266. /* Bike light control */
  267. Can_Light_switch();
  268. bikelight_voBikeLightControl(cp_stBikeRunInfoPara.uwLightSwitch, BikeBrake_blGetstate(),(UBYTE)one_byte);
  269. /* Trip cal when open */
  270. bikespeed_votempTripCal();
  271. }
  272. }
  273. void Event_20ms(void)
  274. {
  275. /* MCU Self Check */
  276. stl_voDoRunTimeChecks();
  277. }
  278. void Event_100ms(void)
  279. {
  280. SWORD swIqLowerPu;
  281. if(switch_flg.SysCoef_Flag == TRUE)
  282. {
  283. if(cp_stBikeRunInfoPara.uwBikeGear == 0x22)
  284. {
  285. Event_pvt_uwAssistCnt ++;
  286. if(Event_pvt_uwAssistCnt >= 2 && cp_stFlg.RunPermitFlg == TRUE)
  287. {
  288. Event_pvt_uwAssistCnt = 2;
  289. }
  290. }
  291. else
  292. {
  293. Event_pvt_uwAssistCnt = 0;
  294. }
  295. /* Bike Speed LPF */
  296. bikespeed_stFreGetOut.uwLPFFrequencyPu = (bikespeed_stFreGetOut.uwLPFFrequencyPu * bikespeed_stFreGetCof.uwBikeSpeedLPFGain +
  297. bikespeed_stFreGetOut.uwFrequencyPu * (100 - bikespeed_stFreGetCof.uwBikeSpeedLPFGain)) /
  298. 100;
  299. /* Bike Throttle Assist */
  300. if(((bikethrottle_stBikeThrottleOut.uwThrottlePercent > 200) || Event_pvt_uwAssistCnt == 2)&& (cp_stBikeRunInfoPara.uwBikeGear > 0) && (cp_stFlg.RunPermitFlg == TRUE) && (BikeBrake_blGetstate() == FALSE))
  301. {
  302. Event_pvt_blBikeThroFlg = TRUE;
  303. /* Bike Speed Ref, 200-890Percent: 4-25km/h */
  304. if(Event_pvt_uwAssistCnt == 2)
  305. {
  306. Event_pvt_uwBikeSpdRefTarget = (UWORD)BIKESPEED_KMPERH2FREQPU * 6; // Q20
  307. }
  308. else
  309. {
  310. Event_pvt_uwBikeSpdRefTarget = (UWORD)((((ULONG)25 - (ULONG)4) *(bikethrottle_stBikeThrottleOut.uwThrottlePercent - 200)/690 + 4) * BIKESPEED_KMPERH2FREQPU); // Q20
  311. }
  312. /* Bike Speed Ref Ramp */
  313. if(Event_pvt_uwBikeSpdRef < Event_pvt_uwBikeSpdRefTarget - 80)
  314. {
  315. if(Event_pvt_uwBikeSpdRefTarget >= Event_pvt_uwBikeSpdRefTargetZ1)
  316. {
  317. Event_pvt_uwBikeSpdRef += 80;
  318. }
  319. }
  320. else if(Event_pvt_uwBikeSpdRef > Event_pvt_uwBikeSpdRefTarget + 160)
  321. {
  322. Event_pvt_uwBikeSpdRef -= 160;
  323. }
  324. else
  325. {
  326. Event_pvt_uwBikeSpdRef = Event_pvt_uwBikeSpdRefTarget;
  327. }
  328. Event_pvt_uwBikeSpdRefTargetZ1 = Event_pvt_uwBikeSpdRefTarget;
  329. /* Bike Speed Closed Loop */
  330. swIqLowerPu = (SWORD)((flx_stCtrlOut.swIqLimPu < abs(pwr_stPwrLimOut2.swIqLimPu)) ? flx_stCtrlOut.swIqLimPu : abs(pwr_stPwrLimOut2.swIqLimPu));
  331. bikespeed_stPIIn.slSpdRefPu = Event_pvt_uwBikeSpdRef;
  332. bikespeed_stPIIn.slSpdFdkPu = bikespeed_stFreGetOut.uwLPFFrequencyPu; //bikespeed_stFreGetOut.uwFrequencyPu;
  333. bikespeed_stPIIn.swIqMaxPu = swIqLowerPu; // ((SLONG)55 << 14)/60;
  334. bikespeed_stPIIn.swIqMinPu = 0;
  335. bikespeed_voPI(&bikespeed_stPIIn, &bikespeed_stPIOut);
  336. Event_pvt_swIqRefTarget = bikespeed_stPIOut.swIqRefPu;
  337. }
  338. else
  339. {
  340. Event_pvt_blBikeThroFlg = FALSE;
  341. bikespeed_voPIInit();
  342. Event_pvt_swIqRef = 0;
  343. Event_pvt_swIqRefTarget = 0;
  344. Event_pvt_swIqRefTargetZ1 = 0;
  345. Event_pvt_uwBikeSpdRef = 0;
  346. Event_pvt_uwBikeSpdRefTarget = 0;
  347. Event_pvt_uwBikeSpdRefTargetZ1 = 0;
  348. }
  349. }
  350. }
  351. void Event_200ms(void)
  352. {
  353. /* Upper Computer Info Update */
  354. Can_voMC_Run_200ms();
  355. if(switch_flg.SysCoef_Flag == TRUE)
  356. {
  357. /* Bike Sesor Suply Voltage Fault Detect */
  358. display_voGetDisplayError(adc_stUpOut.uwU12VPu);
  359. bikespeed_voGetBikeSpeedPwrError(adc_stUpOut.uwU5VPu);
  360. /* Bike Sensor Faults Detect */
  361. if((cp_stFlg.RunModelSelect == MountainBIKE) || (cp_stFlg.RunModelSelect == CityBIKE))
  362. {
  363. alm_stBikeIn.uwTroqReg = torsensor_stTorSensorOut.uwTorqueReg;
  364. alm_stBikeIn.uwTroqPu = torsensor_stTorSensorOut.uwTorqueLPFPu;//torsensor_stTorSensorOut.uwTorquePu;
  365. alm_stBikeIn.blBikeSpdOvrFlg = bikespeed_stFreGetOut.blBikeSpeedSensorPwrErrorFlg;
  366. alm_stBikeIn.blCadenceFreqOvrFlg = cadence_stFreGetOut.blCadenceSensorErrorFlg;
  367. alm_stBikeIn.swMotorSpdDir = ass_stCalIn.swDirection;
  368. alm_stBikeIn.swMotorSpdPu = scm_stSpdFbkLpf.slY.sw.hi;
  369. alm_stBikeIn.uwBikeSpdPu = bikespeed_stFreGetOut.uwFrequencyPu;
  370. alm_stBikeIn.uwCadenceFreqPu = cadence_stFreGetOut.uwFrequencyPu;
  371. alm_stBikeIn.uwMotorNTCReg = adc_stUpOut.MotorTempReg;
  372. alm_stBikeIn.uwPCBNTCReg = adc_stUpOut.PCBTempReg;
  373. alm_stBikeIn.uwThrottleReg = adc_stUpOut.uwThrottleReg;
  374. alm_stBikeIn.blThrottleExistFlg = FALSE;
  375. alm_stBikeIn.blMotorNTCExistFlg = FALSE;
  376. alm_voDetec200MS(&alm_stBikeIn, &alm_stDetect200MSCoef);
  377. }
  378. if (switch_flg.SysFault_Flag == TRUE)
  379. {
  380. SendData(ID_MC_BC, MODE_REPORT, 0x1104, (uint8_t *)&MC_ErrorCode.Code);
  381. }
  382. }
  383. }
  384. void Signal_detect(void)
  385. {
  386. SWORD sign;
  387. if(cp_stFlg.RotateDirectionSelect == ForwardRotate)
  388. {
  389. sign = 1;
  390. }
  391. else if(cp_stFlg.RotateDirectionSelect == BackwardRotate)
  392. {
  393. sign = -1;
  394. }
  395. else
  396. {
  397. sign=1;
  398. }
  399. if(MC_ControlCode.GearSt == 0x01)
  400. {
  401. uart_slSpdRefRpm = sign *785;
  402. }
  403. else if(MC_ControlCode.GearSt == 0x02)
  404. {
  405. uart_slSpdRefRpm = sign *1000;
  406. }
  407. else if(MC_ControlCode.GearSt == 0x03)
  408. {
  409. uart_slSpdRefRpm = sign *3088;
  410. }
  411. else if(MC_ControlCode.GearSt == 0x04)
  412. {
  413. uart_slSpdRefRpm = sign*3603;
  414. }
  415. else if(MC_ControlCode.GearSt == 0x33 || MC_ControlCode.GearSt == 0x05)
  416. {
  417. uart_slSpdRefRpm = sign*4500;
  418. }
  419. else
  420. {
  421. uart_slSpdRefRpm = 0;
  422. }
  423. }
  424. void TimingTaskTimerServer(void)
  425. {
  426. TimingTaskTimerTick++;
  427. LoopServerExecutedFlag = 0;
  428. }
  429. void TimingTaskLoopServer(void)
  430. {
  431. SLONG cnt;
  432. TimingTaskTimerTickTempOld = TimingTaskTimerTickTemp;
  433. TimingTaskTimerTickTemp = TimingTaskTimerTick;
  434. TimingTaskTimerTickPassed = TimingTaskTimerTickTemp - TimingTaskTimerTickTempOld;
  435. if (LoopServerExecutedFlag == 0)
  436. {
  437. for (cnt = 0; cnt < proc_cnt; cnt++)
  438. {
  439. Op[cnt].tick -= (SLONG)TimingTaskTimerTickPassed;
  440. if (Op[cnt].tick <= 0)
  441. {
  442. Op[cnt].tick += Op[cnt].timespan;
  443. Op[cnt].proc();
  444. }
  445. }
  446. LoopServerExecutedFlag = 1;
  447. }
  448. }