motor.c 47 KB

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  1. #include "foc/motor/motor.h"
  2. #include "foc/motor/current.h"
  3. #include "foc/foc_config.h"
  4. #include "foc/mc_error.h"
  5. #include "foc/samples.h"
  6. #include "math/fast_math.h"
  7. #include "bsp/bsp_driver.h"
  8. #include "libs/time_measure.h"
  9. #include "foc/commands.h"
  10. #include "libs/logger.h"
  11. #include "foc/samples.h"
  12. #include "foc/motor/motor_param.h"
  13. #include "foc/core/foc_observer.h"
  14. #include "foc/core/F_Calc.h"
  15. #include "foc/core/etcs.h"
  16. #include "app/nv_storage.h"
  17. #include "app/factory.h"
  18. #include "foc/motor/mot_params_ind.h"
  19. #include "foc/motor/throttle.h"
  20. #include "foc/limit.h"
  21. extern u32 enc_pwm_err_ms;
  22. extern s16 enc_delta_err1, enc_delta_err2;
  23. static bool mc_detect_hwbrake(void);
  24. static bool mc_is_gpio_mlock(void);
  25. static void _pwm_brake_prot_timer_handler(shark_timer_t *);
  26. static shark_timer_t _brake_prot_timer = TIMER_INIT(_brake_prot_timer, _pwm_brake_prot_timer_handler);
  27. static void _fan_det_timer_handler(shark_timer_t *);
  28. static shark_timer_t _fan_det_timer1 = TIMER_INIT(_fan_det_timer1, _fan_det_timer_handler);
  29. static shark_timer_t _fan_det_timer2 = TIMER_INIT(_fan_det_timer2, _fan_det_timer_handler);
  30. static void _encoder_zero_off_timer_handler(shark_timer_t *);
  31. static shark_timer_t _encoder_zero_off_timer = TIMER_INIT(_encoder_zero_off_timer, _encoder_zero_off_timer_handler);
  32. static void _led_off_timer_handler(shark_timer_t *);
  33. static shark_timer_t _led_off_timer = TIMER_INIT(_led_off_timer, _led_off_timer_handler);
  34. motor_t motor = {
  35. .s_direction = POSITIVE,
  36. .n_gear = 0,
  37. .b_high_vol_mode = false,
  38. .mode = CTRL_MODE_OPEN,
  39. .mos_lim = 0,
  40. .motor_lim = 0,
  41. .b_ind_start = false,
  42. .s_target_speed = MAX_S16,
  43. .s_force_torque = MAX_S16,
  44. .u_set.idc_lim = IDC_USER_LIMIT_NONE,
  45. .u_set.rpm_lim = RPM_USER_LIMIT_NONE,
  46. .u_set.ebrk_lvl = 0,
  47. .u_set.n_brkShutPower = CONFIG_Settings_BrkShutPower,
  48. .u_set.b_tcs = CONFIG_Settings_TcsEnable,
  49. };
  50. /* 无感运行的挡位,限制速度,母线电流,最大扭矩 */
  51. static gear_t sensorless_gear = {
  52. .max_speed = CONFIG_SENSORLESS_MAX_SPEED,
  53. .max_torque = CONFIG_SENSORLESS_MAX_TORQUE,
  54. .max_idc = CONFIG_SENSORLESS_MAX_IDC,
  55. .zero_accl = 1500,
  56. .accl_time = 1500,
  57. .torque = {100, 80, 60, 50, 40, 30, 0, 0, 0, 0},
  58. };
  59. static runtime_node_t mc_error;
  60. static void MC_Check_MosVbusThrottle(void) {
  61. int count = 1000;
  62. float ibus_adc = 0;
  63. float vref_adc = 0;
  64. float vref_5v_adc = 0;
  65. gpio_phase_u_detect(true);
  66. while(count-- > 0) {
  67. task_udelay(20);
  68. sample_uvw_phase();
  69. sample_throttle();
  70. sample_vbus();
  71. vref_adc += adc_get_vref();
  72. vref_5v_adc += adc_get_5v_ref();
  73. }
  74. adc_set_vref_calc(vref_adc/1000.0f);
  75. adc_set_5vref_calc(vref_5v_adc/1000.0f);
  76. sys_debug("5v ref %f\n", vref_5v_adc/1000.0f);
  77. count = 50;
  78. while(count-- >0) {
  79. task_udelay(300);
  80. ibus_adc += adc_get_ibus();
  81. }
  82. u16 offset = ((float)ibus_adc)/50.0f;
  83. sys_debug("ibus offset %d\n", offset);
  84. sample_ibus_offset(offset);
  85. if (factory_is_running()) {
  86. return;
  87. }
  88. gpio_phase_u_detect(false);
  89. float abc[3];
  90. get_phase_vols_filtered(abc);
  91. int vbus_vol = get_vbus_int();
  92. if (vbus_vol > mc_conf()->c.max_dc_vol) {
  93. mc_set_critical_error(FOC_CRIT_OV_Vol_Err);
  94. }
  95. if (vbus_vol <= mc_conf()->c.min_dc_vol) {
  96. mc_set_critical_error(FOC_CRIT_UN_Vol_Err);
  97. }
  98. vbus_vol = get_acc_vol();
  99. sys_debug("acc vol %d\n", vbus_vol);
  100. if (vbus_vol >= mc_conf()->c.max_dc_vol) {
  101. mc_set_critical_error(FOC_CRIT_ACC_OV_Err);
  102. }
  103. if (vbus_vol <= mc_conf()->c.min_dc_vol) {
  104. mc_set_critical_error(FOC_CRIT_ACC_Un_Err);
  105. }
  106. if (throttle_is_all_error()) {
  107. if (!motor.b_ignor_throttle) {
  108. mc_set_critical_error(FOC_CRIT_THRO_Err);
  109. mc_set_critical_error(FOC_CRIT_THRO2_Err);
  110. }
  111. }
  112. if (abc[0] > vbus_vol/2 || abc[1] > vbus_vol/2 || abc[2] > vbus_vol/2) {
  113. mc_set_critical_error(FOC_CRIT_H_MOS_Err);
  114. }else if (abc[0] < 0.001f){
  115. mc_set_critical_error(FOC_CRIT_L_MOS_Err);
  116. }else if ((abc[0] > 0.5f) && (abc[1] < 0.001f || abc[2] < 0.001f)) {
  117. mc_set_critical_error(FOC_CRIT_Phase_Conn_Err);
  118. }
  119. sys_debug("phase vol %f, %f, %f\n", abc[0], abc[1], abc[2]);
  120. }
  121. static int hw_brk_err_cnt = 0;
  122. static int hw_brk_no_err_cnt = 0;
  123. static u32 _self_check_task(void *p) {
  124. if (factory_is_running()) {
  125. return 1000;
  126. }
  127. if (get_tick_ms() < 500) { //启动500ms内检测刹车状态是否正常,应该是没有刹车
  128. if (mc_detect_hwbrake() && hw_brk_err_cnt++ >= 60) {
  129. mc_set_critical_error(FOC_CRIT_BRK_Err);
  130. }
  131. }else {
  132. if (mc_critical_err_is_set(FOC_CRIT_BRK_Err) && !mc_detect_hwbrake()) {
  133. if (hw_brk_no_err_cnt++ >= 100) {
  134. mc_clr_critical_error(FOC_CRIT_BRK_Err);
  135. }
  136. }else {
  137. hw_brk_no_err_cnt = 0;
  138. }
  139. }
  140. if (ENC_Check_error()) {
  141. if (mc_set_critical_error(FOC_CRIT_Encoder_Err)) {
  142. mc_crit_err_add_s16(FOC_CRIT_Encoder_Err, -1);
  143. }
  144. }
  145. if (get_tick_ms() < 5000) { //启动后5s内检测锁电机线
  146. if (mc_is_gpio_mlock()) {
  147. mc_lock_motor(true);
  148. }
  149. }
  150. if (motor.b_lock_motor) {
  151. if (!mc_is_gpio_mlock()) {
  152. mc_lock_motor(false);
  153. }
  154. }
  155. if (!motor.b_ignor_throttle) {
  156. if (throttle_is_all_error()) {
  157. mc_set_critical_error(FOC_CRIT_THRO_Err);
  158. mc_set_critical_error(FOC_CRIT_THRO2_Err);
  159. }else if (throttle1_is_error()) {
  160. mc_set_critical_error(FOC_CRIT_THRO_Err);
  161. }else if (throttle2_is_error()) {
  162. mc_set_critical_error(FOC_CRIT_THRO2_Err);
  163. }
  164. }
  165. if (fan_pwm_is_running()) {
  166. #ifdef GPIO_FAN1_IN_GROUP
  167. if ((get_delta_ms(motor.fan[0].start_ts) >= 5000) && (motor.fan[0].rpm == 0)) {
  168. mc_set_critical_error(FOC_CRIT_Fan_Err);
  169. }else if (motor.fan[0].rpm > 0) {
  170. mc_clr_critical_error(FOC_CRIT_Fan_Err);
  171. }
  172. #endif
  173. }
  174. return 5;
  175. }
  176. static bool mc_detect_vbus_mode(void) {
  177. #ifdef CONFIG_FORCE_HIGH_VOL_MODE
  178. motor.b_high_vol_mode = true;
  179. return false;
  180. #else
  181. bool is_96mode = motor.b_high_vol_mode;
  182. motor.b_high_vol_mode = get_vbus_int() >= CONFIG_HIGH_VOL_MODE_MIN_VOL;
  183. return (is_96mode != motor.b_high_vol_mode);
  184. #endif
  185. }
  186. static void mc_internal_init(u8 mode, bool start) {
  187. motor.mode = mode;
  188. motor.throttle = 0;
  189. motor.b_start = start;
  190. motor.b_runStall = false;
  191. motor.runStall_time = 0;
  192. motor.b_epm = false;
  193. motor.b_epm_cmd_move = false;
  194. motor.epm_dir = EPM_Dir_None;
  195. motor.n_autohold_time = 0;
  196. motor.b_auto_hold = 0;
  197. motor.b_break = false;
  198. motor.b_wait_brk_release = false;
  199. motor.b_force_run = false;
  200. motor.b_cruise = false;
  201. motor.b_limit_pending = false;
  202. motor.f_epm_trq = 0;
  203. motor.f_epm_vel = 0;
  204. motor.vbus_le_cnt = motor.vbus_he_cnt = 0;
  205. motor.s_vbus_hw_min = mc_conf()->c.min_dc_vol;
  206. motor.s_vbus_hw_max = mc_conf()->c.max_dc_vol;
  207. }
  208. static void _led_off_timer_handler(shark_timer_t *t) {
  209. gpio_led_enable(false);
  210. }
  211. static void mc_gear_mode_set(void) {
  212. gear_t *gears = mc_gear_conf();
  213. if (gears != &sensorless_gear) {
  214. sensorless_gear.max_torque = gears->max_torque;
  215. }else { //slowly changed
  216. line_ramp_set_time(&motor.controller.ramp_vel_lim, CONFIG_SENSORLESS_RAMP_TIME);
  217. line_ramp_set_time(&motor.controller.ramp_dc_curr_lim, CONFIG_SENSORLESS_RAMP_TIME);
  218. }
  219. mot_contrl_set_vel_limit(&motor.controller, (float)min(gears->max_speed, motor.u_set.rpm_lim));
  220. mot_contrl_set_dccurr_limit(&motor.controller, (float)min(gears->max_idc, motor.u_set.idc_lim));
  221. mot_contrl_set_torque_limit(&motor.controller, (float)gears->max_torque);
  222. }
  223. void mc_init(void) {
  224. mc_internal_init(CTRL_MODE_OPEN, false);
  225. fan_pwm_init();
  226. adc_init();
  227. pwm_3phase_init();
  228. samples_init();
  229. motor_encoder_init();
  230. foc_command_init();
  231. throttle_init();
  232. mc_detect_vbus_mode();
  233. mot_contrl_init(&motor.controller);
  234. mc_gpio_init();
  235. MC_Check_MosVbusThrottle();
  236. sched_timer_enable(CONFIG_SPD_CTRL_US);
  237. shark_task_create(_self_check_task, NULL);
  238. pwm_up_enable(true);
  239. gpio_led_enable(true);
  240. shark_timer_post(&_led_off_timer, 5000);
  241. }
  242. motor_t * get_motor(void) {
  243. return &motor;
  244. }
  245. gear_t *mc_gear_conf_by_gear(u8 n_gear) {
  246. gear_t *gears;
  247. if (!foc_observer_is_encoder()) { //无感模式,受限运行
  248. return &sensorless_gear;
  249. }
  250. if (motor.b_high_vol_mode) {
  251. gears = &mc_conf()->g_n[0];
  252. }else {
  253. gears = &mc_conf()->g_l[0];
  254. }
  255. return &gears[n_gear];
  256. }
  257. gear_t *mc_gear_conf(void) {
  258. return mc_gear_conf_by_gear(motor.n_gear);
  259. }
  260. static __INLINE float gear_rpm_2_torque(u8 torque, s16 max) {
  261. return (float)torque/100.0f * max;
  262. }
  263. float mc_gear_max_torque(s16 vel, u8 gear_n) {
  264. gear_t *gear = mc_gear_conf_by_gear(gear_n);
  265. if (gear == NULL) {
  266. return 0;
  267. }
  268. vel = ABS(vel);
  269. if (vel <= 1000) {
  270. return gear_rpm_2_torque(gear->torque[0], gear->max_torque);
  271. }
  272. int vel_idx = vel / 1000;
  273. if (vel_idx >= CONFIG_GEAR_SPEED_TRQ_NUM -1 ) {
  274. return gear_rpm_2_torque(gear->torque[CONFIG_GEAR_SPEED_TRQ_NUM-1], gear->max_torque);
  275. }
  276. float torque_1 = gear_rpm_2_torque(gear->torque[vel_idx-1], gear->max_torque);
  277. float min_rpm = vel_idx * 1000;
  278. float torque_2 = gear_rpm_2_torque(gear->torque[vel_idx], gear->max_torque);
  279. float max_rpm = min_rpm + 1000;
  280. return f_map((float)vel, min_rpm, max_rpm, torque_1, torque_2);
  281. }
  282. /* 必须立即停机 */
  283. bool mc_critical_need_stop(void) {
  284. u32 mask = FOC_Cri_Err_Mask(FOC_CRIT_IDC_OV) | FOC_Cri_Err_Mask(FOC_CRIT_Angle_Err) | FOC_Cri_Err_Mask(FOC_CRIT_Phase_Err) |
  285. FOC_Cri_Err_Mask(FOC_CRIT_Vol_HW_Err) | FOC_Cri_Err_Mask(FOC_CRIT_OV_Vol_Err);
  286. u32 err = motor.n_CritiCalErrMask & mask;
  287. return (err != 0);
  288. }
  289. bool mc_critical_can_not_run(void) {
  290. u32 mask = FOC_Cri_Err_Mask(FOC_CRIT_MOTOR_TEMP_Lim) | FOC_Cri_Err_Mask(FOC_CRIT_MOS_TEMP_Lim);
  291. u32 err = motor.n_CritiCalErrMask & mask;
  292. bool crit_err = (err != 0) || mc_critical_need_stop();
  293. if (!motor.b_ignor_throttle) {
  294. crit_err = crit_err || throttle_is_all_error();
  295. }
  296. return crit_err;
  297. }
  298. bool mc_unsafe_critical_error(void) {
  299. u32 err = motor.n_CritiCalErrMask & (~(FOC_Cri_Err_Mask(FOC_CRIT_Fan_Err)));
  300. #ifdef CONFIG_DQ_STEP_RESPONSE
  301. sys_debug("err=0x%x\n", err);
  302. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_Encoder_Err)));
  303. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO_Err)));
  304. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO2_Err)));
  305. sys_debug("err=0x%x\n", err);
  306. #else
  307. if (!throttle_is_all_error()) {//不是两个转把都有问题,忽略出问题的转把错误
  308. if (throttle1_is_error()) {
  309. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO_Err)));
  310. }else if (throttle2_is_error()) {
  311. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO2_Err)));
  312. }
  313. }
  314. #endif
  315. if (motor.b_ignor_throttle) {
  316. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO_Err)));
  317. err = err & (~(FOC_Cri_Err_Mask(FOC_CRIT_THRO2_Err)));
  318. }
  319. return (err != 0);
  320. }
  321. bool mc_start(u8 mode) {
  322. if (motor.b_start) {
  323. return true;
  324. }
  325. #ifdef CONFIG_DQ_STEP_RESPONSE
  326. mode = CTRL_MODE_CURRENT;
  327. #endif
  328. motor.s_force_torque = MAX_S16;
  329. mc_detect_vbus_mode();
  330. etcs_enable(&motor.controller.etcs, motor.u_set.b_tcs);
  331. if (motor.b_lock_motor) {
  332. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  333. return false;
  334. }
  335. MC_Check_MosVbusThrottle();
  336. if (mc_unsafe_critical_error()) {
  337. mot_contrl_set_error(&motor.controller, FOC_Have_CritiCal_Err);
  338. return false;
  339. }
  340. if (mode > CTRL_MODE_CURRENT) {
  341. mot_contrl_set_error(&motor.controller, FOC_Param_Err);
  342. return false;
  343. }
  344. if (mot_contrl_get_speed(&motor.controller) > CONFIG_ZERO_SPEED_RPM) {
  345. mot_contrl_set_error(&motor.controller, FOC_NowAllowed_With_Speed);
  346. return false;
  347. }
  348. if (!mc_throttle_released()) {
  349. mot_contrl_set_error(&motor.controller, FOC_Throttle_Err);
  350. return false;
  351. }
  352. pwm_up_enable(false);
  353. u32 mask = cpu_enter_critical();
  354. mc_internal_init(mode, true);
  355. throttle_torque_reset();
  356. motor_encoder_start(true);
  357. mot_contrl_start(&motor.controller, mode);
  358. mot_contrl_set_torque_ramp_time(&motor.controller, mc_gear_conf()->zero_accl, mc_conf()->c.thro_dec_time);
  359. mc_set_ebrk_level(motor.u_set.ebrk_lvl);
  360. mc_gear_mode_set();
  361. cpu_exit_critical(mask);
  362. pwm_turn_on_low_side();
  363. delay_ms(10);
  364. phase_current_offset_calibrate();
  365. pwm_start();
  366. delay_us(10); //wait for ebrake error
  367. if (mc_unsafe_critical_error()) {
  368. mc_stop();
  369. return false;
  370. }
  371. adc_start_convert();
  372. phase_current_calibrate_wait();
  373. if (phase_curr_offset_check()) {
  374. mot_contrl_set_error(&motor.controller, FOC_CRIT_CURR_OFF_Err);
  375. mc_stop();
  376. return false;
  377. }
  378. if (mc_detect_hwbrake()) {
  379. mot_contrl_set_hw_brake(&motor.controller, true);
  380. }
  381. return true;
  382. }
  383. bool mc_stop(void) {
  384. if (!motor.b_start) {
  385. return true;
  386. }
  387. if (motor.b_lock_motor) {
  388. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  389. return false;
  390. }
  391. if (mot_contrl_get_speed(&motor.controller) > CONFIG_ZERO_SPEED_RPM) {
  392. mot_contrl_set_error(&motor.controller, FOC_NowAllowed_With_Speed);
  393. return false;
  394. }
  395. if (!mc_throttle_released()) {
  396. mot_contrl_set_error(&motor.controller, FOC_Throttle_Err);
  397. return false;
  398. }
  399. u32 mask = cpu_enter_critical();
  400. mc_internal_init(CTRL_MODE_OPEN, false);
  401. adc_stop_convert();
  402. pwm_stop();
  403. mot_contrl_stop(&motor.controller);
  404. motor_encoder_start(false);
  405. pwm_up_enable(true);
  406. cpu_exit_critical(mask);
  407. return true;
  408. }
  409. void mc_set_mos_lim_level(u8 l) {
  410. if (motor.mos_lim != l) {
  411. mc_crit_err_add(FOC_EV_MOS_Limit_L, l, get_mos_temp_raw());
  412. }
  413. motor.mos_lim = l;
  414. }
  415. void mc_set_motor_lim_level(u8 l) {
  416. if (motor.motor_lim != l) {
  417. mc_crit_err_add(FOC_EV_MOT_Limit_L, l, get_motor_temp_raw());
  418. }
  419. motor.motor_lim = l;
  420. }
  421. bool mc_set_gear(u8 gear) {
  422. if (gear >= CONFIG_MAX_GEARS) {
  423. mot_contrl_set_error(&motor.controller, FOC_Param_Err);
  424. return false;
  425. }
  426. if (motor.n_gear != gear) {
  427. #if TURBO_GEAR_AUTO_EXIT_TIME>0
  428. if (gear == TURBO_GEAR) {
  429. if (motor.mos_lim != 0 || motor.motor_lim != 0) {
  430. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  431. return false;
  432. }
  433. if (get_motor_temp_raw() >= TURBO_MIN_MOTOR_TEMP || get_mos_temp_raw() >= TURBO_MIN_MOS_TEMP) {
  434. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  435. return false;
  436. }
  437. motor.gear_last = motor.n_gear;
  438. motor.turbo_time = get_tick_ms();
  439. }
  440. #endif
  441. u32 mask = cpu_enter_critical();
  442. motor.n_gear = gear;
  443. mc_gear_mode_set();
  444. cpu_exit_critical(mask);
  445. }
  446. return true;
  447. }
  448. static void mc_turbo_auto_exit(void) {
  449. #if TURBO_GEAR_AUTO_EXIT_TIME>0
  450. if (motor.n_gear != TURBO_GEAR) {
  451. return;
  452. }
  453. if (motor.mos_lim != 0 || motor.motor_lim != 0) {
  454. mc_set_gear(motor.gear_last);
  455. return;
  456. }
  457. u32 delta_time = get_delta_ms(motor.turbo_time);
  458. if (delta_time >= TURBO_GEAR_AUTO_EXIT_TIME) {
  459. motor.turbo_remain_sec = 0;
  460. mc_set_gear(motor.gear_last);
  461. return;
  462. }else {
  463. motor.turbo_remain_sec = (TURBO_GEAR_AUTO_EXIT_TIME - delta_time) / 1000;
  464. }
  465. #endif
  466. }
  467. u8 mc_get_gear(void) {
  468. if (motor.n_gear == 3){
  469. return 0;
  470. }
  471. return motor.n_gear + 1;
  472. }
  473. u8 mc_get_internal_gear(void) {
  474. return motor.n_gear;
  475. }
  476. bool mc_hwbrk_can_shutpower(void) {
  477. if (motor.u_set.n_brkShutPower != MAX_U8) {
  478. return (motor.u_set.n_brkShutPower != 0);
  479. }
  480. return (mc_conf()->s.brk_shut_power != 0);
  481. }
  482. bool mc_enable_cruise(bool enable) {
  483. if (enable == motor.b_cruise) {
  484. return true;
  485. }
  486. if (mot_contrl_set_cruise(&motor.controller, enable)) {
  487. motor.b_cruise = enable;
  488. motor.cruise_time = enable?shark_get_seconds():0;
  489. motor.cruise_torque = 0.0f;
  490. return true;
  491. }
  492. return false;
  493. }
  494. bool mc_set_target_vel(s16 vel) {
  495. if (motor.mode != CTRL_MODE_SPD || mc_is_epm()) {
  496. return false;
  497. }
  498. motor.s_target_speed = vel;
  499. return true;
  500. }
  501. bool mc_set_force_torque(s16 torque) {
  502. if (motor.mode != CTRL_MODE_TRQ) {
  503. return false;
  504. }
  505. if (torque == MAX_S16) {
  506. motor.s_force_torque = MAX_S16;
  507. }else {
  508. motor.s_force_torque = fclamp(torque, -mc_gear_conf()->max_torque, mc_gear_conf()->max_torque);
  509. }
  510. return true;
  511. }
  512. bool mc_is_cruise_enabled(void) {
  513. return motor.b_cruise;
  514. }
  515. bool mc_set_cruise_speed(bool rpm_abs, float target_rpm) {
  516. bool ret;
  517. if (rpm_abs) {
  518. ret = mot_contrl_set_cruise_speed(&motor.controller, target_rpm);
  519. }else {
  520. ret = mot_contrl_set_cruise_speed(&motor.controller, mot_contrl_get_speed(&motor.controller) + target_rpm);
  521. }
  522. if (ret) {
  523. motor.cruise_time = shark_get_seconds();
  524. motor.cruise_torque = 0.0f;
  525. }
  526. return ret;
  527. }
  528. void mc_set_idc_limit(s16 limit) {
  529. if ((limit == motor.u_set.idc_lim) || (limit < 0)) {
  530. return;
  531. }
  532. motor.u_set.idc_lim = limit;
  533. mc_gear_mode_set();
  534. }
  535. void mc_set_rpm_limit(s16 limit) {
  536. if ((limit == motor.u_set.rpm_lim) || (limit < 0)) {
  537. return;
  538. }
  539. motor.u_set.rpm_lim = limit;
  540. mc_gear_mode_set();
  541. }
  542. bool mc_set_ebrk_level(u8 level) {
  543. if (level < CONFIG_EBRK_LVL_NUM) {
  544. motor.u_set.ebrk_lvl = level;
  545. mot_contrl_set_ebrk_time(&motor.controller, mc_get_ebrk_time());
  546. mot_contrl_set_ebrk_torquer(&motor.controller, mc_get_ebrk_torque());
  547. return true;
  548. }
  549. return false;
  550. }
  551. void mc_enable_brkshutpower(u8 shut) {
  552. motor.u_set.n_brkShutPower = shut;
  553. }
  554. void mc_enable_tcs(bool enable) {
  555. motor.u_set.b_tcs = enable;
  556. etcs_enable(&motor.controller.etcs, enable);
  557. }
  558. s16 mc_get_ebrk_torque(void) {
  559. if (motor.u_set.ebrk_lvl < CONFIG_EBRK_LVL_NUM) {
  560. return min(mc_conf()->e_r[motor.u_set.ebrk_lvl].torque, mc_conf()->c.max_ebrk_torque);
  561. }
  562. return 0;
  563. }
  564. u16 mc_get_ebrk_time(void) {
  565. if (motor.u_set.ebrk_lvl < CONFIG_EBRK_LVL_NUM) {
  566. return (u16)mc_conf()->e_r[motor.u_set.ebrk_lvl].time;
  567. }
  568. return 0xFFFF;
  569. }
  570. bool mc_set_ctrl_mode(u8 mode) {
  571. if (mode == motor.mode) {
  572. return true;
  573. }
  574. if (!motor.b_start && !motor.b_ind_start) {
  575. return false;
  576. }
  577. if (mc_critical_can_not_run()) {
  578. return false;
  579. }
  580. if ((mode == CTRL_MODE_OPEN) && (ABS(mot_contrl_get_speed(&motor.controller)) > CONFIG_ZERO_SPEED_RPM)) {
  581. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  582. return false;
  583. }
  584. u32 mask = cpu_enter_critical();
  585. bool ret = false;
  586. if (mot_contrl_request_mode(&motor.controller, mode)) {
  587. motor.mode = mode;
  588. if ((mode == CTRL_MODE_OPEN || mode == CTRL_MODE_CURRENT) && !mot_contrl_is_start(&motor.controller)) {
  589. mot_contrl_start(&motor.controller, motor.mode);
  590. pwm_enable_channel();
  591. }
  592. ret = true;
  593. }
  594. cpu_exit_critical(mask);
  595. return ret;
  596. }
  597. bool mc_start_epm(bool epm) {
  598. if (motor.b_epm == epm) {
  599. return true;
  600. }
  601. if (!motor.b_start) {
  602. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  603. return false;
  604. }
  605. if (motor_encoder_get_speed() > CONFIG_ZERO_SPEED_RPM) {
  606. mot_contrl_set_error(&motor.controller, FOC_NowAllowed_With_Speed);
  607. return false;
  608. }
  609. if (!mc_throttle_released()) {
  610. mot_contrl_set_error(&motor.controller, FOC_Throttle_Err);
  611. return false;
  612. }
  613. u32 mask = cpu_enter_critical();
  614. motor.b_epm = epm;
  615. motor.f_epm_vel = 0.0f;
  616. motor.f_epm_trq = 0.0f;
  617. motor_encoder_band_epm(epm);
  618. if (epm) {
  619. mot_contrl_set_target_vel(&motor.controller, 0);
  620. motor.mode = CTRL_MODE_SPD;
  621. motor.epm_dir = EPM_Dir_None;
  622. mot_contrl_set_torque_limit(&motor.controller, mc_conf()->c.max_epm_torque);
  623. mot_contrl_request_mode(&motor.controller, CTRL_MODE_SPD);
  624. }else {
  625. motor.epm_dir = EPM_Dir_None;
  626. motor.mode = CTRL_MODE_TRQ;
  627. motor.b_epm_cmd_move = false;
  628. mot_contrl_request_mode(&motor.controller, CTRL_MODE_TRQ);
  629. mot_contrl_set_torque_limit_rttime(&motor.controller, CONFIG_LIMIT_RAMP_TIME);
  630. mot_contrl_set_vel_rttime(&motor.controller, CONFIG_CRUISE_RAMP_TIME);
  631. mc_gear_mode_set();
  632. }
  633. cpu_exit_critical(mask);
  634. return false;
  635. }
  636. bool mc_is_epm(void) {
  637. return motor.b_epm;
  638. }
  639. bool mc_is_start(void) {
  640. return (motor.b_start || mot_contrl_is_start(&motor.controller));
  641. }
  642. bool mc_start_epm_move(epm_dir_t dir, bool is_command) {
  643. if (!motor.b_epm || !motor.b_start) {
  644. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  645. return false;
  646. }
  647. if ((dir == motor.epm_dir) && (is_command == motor.b_epm_cmd_move)) {
  648. return true;
  649. }
  650. u32 mask = cpu_enter_critical();
  651. if (motor.epm_dir != dir) {
  652. motor.f_epm_vel = 0.0f;
  653. motor.f_epm_trq = 0.0f;
  654. }
  655. motor.epm_dir = dir;
  656. if (dir != EPM_Dir_None) {
  657. motor.b_epm_cmd_move = is_command;
  658. if (!mot_contrl_is_start(&motor.controller)) {
  659. mot_contrl_start(&motor.controller, motor.mode);
  660. mc_gear_mode_set();
  661. pwm_enable_channel();
  662. }else if (mot_contrl_is_auto_holdding(&motor.controller)) {
  663. mc_auto_hold(false);
  664. }
  665. if (dir == EPM_Dir_Back) {
  666. mot_contrl_velloop_params(&motor.controller, 0.2f, 7.5f);
  667. }else {
  668. mot_contrl_velloop_params(&motor.controller, 0.2f, 7.5f);
  669. }
  670. mot_contrl_set_torque_limit_rttime(&motor.controller, 2.0);
  671. mot_contrl_set_torque_limit(&motor.controller, motor.f_epm_trq);
  672. mot_contrl_set_vel_rttime(&motor.controller, 1000.0f);
  673. mot_contrl_set_target_vel(&motor.controller, motor.f_epm_vel);
  674. }else {
  675. motor.b_epm_cmd_move = false;
  676. mot_contrl_velloop_params(&motor.controller, mc_conf()->c.pid[PID_Vel_ID].kp, mc_conf()->c.pid[PID_Vel_ID].ki);
  677. mot_contrl_set_target_vel(&motor.controller, 0);
  678. }
  679. cpu_exit_critical(mask);
  680. return true;
  681. }
  682. void mc_set_fan_duty(u8 duty) {
  683. sys_debug("fan duty %d\n", duty);
  684. if (!fan_pwm_is_running() && duty > 0) {
  685. motor.fan[0].start_ts = get_tick_ms();
  686. motor.fan[1].start_ts = get_tick_ms();
  687. shark_timer_post(&_fan_det_timer1, 5000);
  688. shark_timer_post(&_fan_det_timer2, 5000);
  689. }else if (duty == 0) {
  690. shark_timer_cancel(&_fan_det_timer1);
  691. shark_timer_cancel(&_fan_det_timer2);
  692. }
  693. fan_set_duty(duty);
  694. }
  695. bool mc_command_epm_move(epm_dir_t dir) {
  696. return mc_start_epm_move(dir, true);
  697. }
  698. bool mc_throttle_epm_move(epm_dir_t dir) {
  699. return mc_start_epm_move(dir, false);
  700. }
  701. void mc_set_throttle_r(bool use, u8 r) {
  702. motor.u_throttle_ration = r;
  703. motor.b_ignor_throttle = use;
  704. if (motor.b_ignor_throttle) {
  705. mc_clr_critical_error(FOC_CRIT_THRO_Err);
  706. mc_clr_critical_error(FOC_CRIT_THRO2_Err);
  707. }
  708. }
  709. void mc_use_throttle(void) {
  710. motor.b_ignor_throttle = false;
  711. }
  712. void mc_get_running_status(u8 *data) {
  713. data[0] = motor.mode;
  714. data[0] |= (mot_contrl_is_auto_holdding(&motor.controller)?1:0) << 2;
  715. data[0] |= (motor.b_break?1:0) << 3;
  716. data[0] |= (motor.b_cruise?1:0) << 4;
  717. data[0] |= (motor.b_start?1:0) << 5;
  718. data[0] |= (mc_is_epm()?1:0) << 6;
  719. data[0] |= (motor.b_lock_motor) << 7; //motor locked
  720. }
  721. u16 mc_get_running_status2(void) {
  722. u16 data = 0;
  723. data = motor.b_start?1:0;
  724. data |= (motor.n_gear & 0x7) << 1;
  725. data |= (mot_contrl_is_auto_holdding(&motor.controller)?1:0) << 3;
  726. data |= (motor.b_break?1:0) << 4;
  727. data |= (motor.b_cruise?1:0) << 5;
  728. data |= (mc_is_epm()?1:0) << 6;
  729. data |= (motor.b_lock_motor) << 7; //motor locked
  730. data |= (mot_contrl_ebrk_is_running(&motor.controller)?1:0) << 8; //能量回收运行标志
  731. data |= ((motor.n_CritiCalErrMask != 0)?1:0) << 9;
  732. data |= (fan_pwm_is_running()?1:0) << 10; //风扇是否运行
  733. data |= (motor.b_runStall?1:0) << 11; //是否堵转
  734. data |= (mot_contrl_dccurr_is_protected(&motor.controller)?1:0) << 12; //是否欠压限制母线电流
  735. data |= (mot_contrl_torque_is_protected(&motor.controller)?1:0) << 13; //是否高温限扭矩
  736. data |= (etcs_is_running(&motor.controller.etcs)?1:0) << 14; //电子tcs是否正在工作
  737. data |= (throttle_not_released_err()?1:0) << 15;
  738. return data;
  739. }
  740. static float _force_angle = 0.0f;
  741. static int _force_wait = 2000;
  742. /* 开环,强制给定电角度和DQ的电压 */
  743. void mc_force_run_open(s16 vd, s16 vq, bool align) {
  744. if (motor.b_start || motor.b_force_run) {
  745. if (vd == 0 && vq == 0) {
  746. mot_contrl_set_vdq(&motor.controller, 0, 0);
  747. delay_ms(500);
  748. wdog_reload();
  749. adc_stop_convert();
  750. pwm_stop();
  751. mot_contrl_stop(&motor.controller);
  752. pwm_up_enable(true);
  753. motor.b_force_run = false;
  754. motor.b_ignor_throttle = false;
  755. }
  756. return;
  757. }
  758. if (vd == 0 && vq == 0) {
  759. return;
  760. }
  761. motor.b_ignor_throttle = true;
  762. MC_Check_MosVbusThrottle();
  763. if (mc_unsafe_critical_error()) {
  764. mot_contrl_set_error(&motor.controller, FOC_Have_CritiCal_Err);
  765. }
  766. pwm_up_enable(false);
  767. pwm_turn_on_low_side();
  768. task_udelay(500);
  769. mot_contrl_start(&motor.controller, CTRL_MODE_OPEN);
  770. phase_current_offset_calibrate();
  771. pwm_start();
  772. adc_start_convert();
  773. pwm_enable_channel();
  774. phase_current_calibrate_wait();
  775. mot_contrl_set_angle(&motor.controller, 0);
  776. mot_contrl_set_vdq(&motor.controller, (float)vd, 0);
  777. if (align) {
  778. _force_wait = 2000 + 1;
  779. }else {
  780. _force_wait = 2000;
  781. }
  782. motor.b_force_run = true;
  783. }
  784. bool mc_ind_motor_start(bool start) {
  785. if (start == motor.b_ind_start) {
  786. return true;
  787. }
  788. if (start) {
  789. motor.b_ignor_throttle = true;
  790. MC_Check_MosVbusThrottle();
  791. if (mc_unsafe_critical_error() || mot_params_flux_pending()) {
  792. mot_contrl_set_error(&motor.controller, FOC_Have_CritiCal_Err);
  793. return false;
  794. }
  795. pwm_up_enable(false);
  796. pwm_turn_on_low_side();
  797. task_udelay(500);
  798. mot_contrl_start(&motor.controller, CTRL_MODE_OPEN);
  799. phase_current_offset_calibrate();
  800. pwm_start();
  801. adc_start_convert();
  802. pwm_enable_channel();
  803. phase_current_calibrate_wait();
  804. mot_contrl_set_vdq_immediate(&motor.controller, 0, 0);
  805. motor.b_ind_start = start;
  806. }else {
  807. u32 mask = cpu_enter_critical();
  808. motor.b_ind_start = start;
  809. mot_contrl_set_vdq(&motor.controller, 0, 0);
  810. cpu_exit_critical(mask);
  811. delay_us(500);
  812. wdog_reload();
  813. adc_stop_convert();
  814. pwm_stop();
  815. mot_contrl_stop(&motor.controller);
  816. motor.mode = CTRL_MODE_OPEN;
  817. pwm_up_enable(true);
  818. motor.b_ignor_throttle = false;
  819. }
  820. return true;
  821. }
  822. static void _encoder_zero_off_timer_handler(shark_timer_t *t){
  823. if (!motor.b_calibrate) {
  824. return;
  825. }
  826. float enc_off = 0.0f;
  827. float phase = motor_encoder_zero_phase_detect(&enc_off);
  828. mot_contrl_set_vdq(&motor.controller, 0, 0);
  829. delay_ms(50);
  830. adc_stop_convert();
  831. pwm_stop();
  832. mot_contrl_stop(&motor.controller);
  833. mc_internal_init(CTRL_MODE_OPEN, false);
  834. motor.b_calibrate = false;
  835. }
  836. bool mc_encoder_zero_calibrate(s16 vd) {
  837. if (motor.b_calibrate) {
  838. if (vd == 0) {
  839. encoder_clear_cnt_offset();
  840. shark_timer_cancel(&_encoder_zero_off_timer);
  841. mot_contrl_set_vdq(&motor.controller, 0, 0);
  842. delay_ms(500);
  843. adc_stop_convert();
  844. pwm_stop();
  845. mot_contrl_stop(&motor.controller);
  846. mc_internal_init(CTRL_MODE_OPEN, false);
  847. motor.b_calibrate = false;
  848. motor.b_ignor_throttle = false;
  849. }
  850. return true;
  851. }
  852. encoder_clear_cnt_offset();
  853. motor.b_ignor_throttle = true;
  854. MC_Check_MosVbusThrottle();
  855. if (mc_unsafe_critical_error()) {
  856. mot_contrl_set_error(&motor.controller, FOC_Have_CritiCal_Err);
  857. return false;
  858. }
  859. mc_internal_init(CTRL_MODE_OPEN, true);
  860. motor.b_calibrate = true;
  861. pwm_turn_on_low_side();
  862. task_udelay(500);
  863. mot_contrl_start(&motor.controller, CTRL_MODE_OPEN);
  864. phase_current_offset_calibrate();
  865. pwm_start();
  866. adc_start_convert();
  867. pwm_enable_channel();
  868. phase_current_calibrate_wait();
  869. mot_contrl_set_angle(&motor.controller, 0);
  870. mot_contrl_set_vdq(&motor.controller, vd, 0);
  871. shark_timer_post(&_encoder_zero_off_timer, 6*1000);
  872. return true;
  873. }
  874. bool mc_current_sensor_calibrate(float current) {
  875. if (!mc_start(CTRL_MODE_OPEN)) {
  876. return false;
  877. }
  878. phase_current_sensor_start_calibrate(current);
  879. phase_current_calibrate_wait();
  880. return true;
  881. }
  882. bool mc_lock_motor(bool lock) {
  883. if (motor.b_lock_motor == lock) {
  884. return true;
  885. }
  886. int ret = true;
  887. u32 mask = cpu_enter_critical();
  888. if (motor.b_start) {
  889. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  890. ret = false;
  891. goto ml_ex_cri;
  892. }
  893. if (lock && (motor_encoder_get_speed() >= CONFIG_LOCK_MOTOR_MIN_RPM)) {
  894. mot_contrl_set_error(&motor.controller, FOC_NowAllowed_With_Speed);
  895. ret = false;
  896. goto ml_ex_cri;
  897. }
  898. motor.b_lock_motor = lock;
  899. if (lock) {
  900. pwm_start();
  901. pwm_update_duty(0, 0, 0);
  902. pwm_enable_channel();
  903. }else {
  904. pwm_stop();
  905. }
  906. ml_ex_cri:
  907. cpu_exit_critical(mask);
  908. return ret;
  909. }
  910. bool mc_auto_hold(bool hold) {
  911. if (motor.b_auto_hold == hold) {
  912. return true;
  913. }
  914. if (!mc_conf()->s.auto_hold) {
  915. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  916. return false;
  917. }
  918. if (!motor.b_start) {
  919. mot_contrl_set_error(&motor.controller, FOC_NotAllowed);
  920. return false;
  921. }
  922. if (hold && !mc_throttle_released()) {
  923. mot_contrl_set_error(&motor.controller, FOC_Throttle_Err);
  924. return false;
  925. }
  926. u32 mask = cpu_enter_critical();
  927. motor.b_auto_hold = hold;
  928. if (!mot_contrl_is_start(&motor.controller)) {
  929. mot_contrl_start(&motor.controller, motor.mode);
  930. mot_contrl_set_autohold(&motor.controller, hold);
  931. pwm_enable_channel();
  932. }else {
  933. mot_contrl_set_autohold(&motor.controller, hold);
  934. }
  935. cpu_exit_critical(mask);
  936. return true;
  937. }
  938. bool mc_set_critical_error(u8 err) {
  939. if (mc_critical_err_is_set(err)) {
  940. return false;
  941. }
  942. motor.n_CritiCalErrMask |= (1u << err);
  943. return true;
  944. }
  945. void mc_clr_critical_error(u8 err) {
  946. motor.n_CritiCalErrMask &= ~(1u << err);
  947. }
  948. bool mc_critical_err_is_set(u8 err) {
  949. u32 mask = (1u << err);
  950. return (motor.n_CritiCalErrMask & mask) != 0;
  951. }
  952. u32 mc_get_critical_error(void) {
  953. return motor.n_CritiCalErrMask;
  954. }
  955. bool mc_throttle_released(void) {
  956. if (motor.s_force_torque != MAX_S16) {
  957. return motor.s_force_torque == 0;
  958. }
  959. if (motor.b_ignor_throttle) {
  960. return motor.u_throttle_ration == 0;
  961. }
  962. return throttle_is_released();
  963. }
  964. static bool mc_is_gpio_mlock(void) {
  965. int count = 50;
  966. int settimes = 0;
  967. while(count-- > 0) {
  968. bool b1 = gpio_motor_locked();
  969. if (b1) {
  970. settimes ++;
  971. }
  972. delay_us(1);
  973. }
  974. if (settimes == 0) {
  975. return false;
  976. }else if (settimes == 50) {
  977. return true;
  978. }
  979. //有干扰,do nothing
  980. return false;
  981. }
  982. static bool _mc_is_hwbrake(void) {
  983. int count = 50;
  984. int settimes = 0;
  985. while(count-- > 0) {
  986. bool b1 = mc_get_gpio_brake() || mc_get_gpio_brake1();
  987. if (b1) {
  988. settimes ++;
  989. }
  990. delay_us(1);
  991. }
  992. if (settimes == 0) {
  993. #if GPIO_BREAK_MODE==GPIO_LOW_BRK_MODE
  994. return true;
  995. #else
  996. return false;
  997. #endif
  998. }else if (settimes == 50) {
  999. #if GPIO_BREAK_MODE==GPIO_LOW_BRK_MODE
  1000. return false;
  1001. #else
  1002. return true;
  1003. #endif
  1004. }
  1005. //有干扰,do nothing
  1006. motor.n_brake_errors++;
  1007. return false;
  1008. }
  1009. static bool mc_detect_hwbrake(void) {
  1010. motor.b_break = _mc_is_hwbrake();
  1011. return motor.b_break;
  1012. }
  1013. static void _fan_det_timer_handler(shark_timer_t *t) {
  1014. if (t == &_fan_det_timer1) {
  1015. motor.fan[0].rpm = 0;
  1016. motor.fan[0].det_ts = 0;
  1017. }else {
  1018. motor.fan[1].rpm = 0;
  1019. motor.fan[1].det_ts = 0;
  1020. }
  1021. }
  1022. void Fan_IRQHandler(int idx) {
  1023. fan_t *fan = motor.fan + idx;
  1024. u32 pre_ts = fan->det_ts;
  1025. u32 delta_ts = get_delta_ms(pre_ts);
  1026. fan->det_ts = get_tick_ms();
  1027. float rpm = 60.0f * 1000 / (float)delta_ts;
  1028. LowPass_Filter(fan->rpm, rpm, 0.1f);
  1029. if (idx == 0) {
  1030. shark_timer_post(&_fan_det_timer1, 100);
  1031. }else {
  1032. shark_timer_post(&_fan_det_timer2, 100);
  1033. }
  1034. }
  1035. void MC_Brake_IRQHandler(void) {
  1036. mc_detect_hwbrake();
  1037. if (!motor.b_start) {
  1038. return;
  1039. }
  1040. if (motor.b_break) {
  1041. mc_enable_cruise(false);
  1042. mot_contrl_set_hw_brake(&motor.controller, true);
  1043. }else {
  1044. mot_contrl_set_hw_brake(&motor.controller, false);
  1045. }
  1046. }
  1047. static void _pwm_brake_prot_timer_handler(shark_timer_t *t){
  1048. pwm_brake_enable(true);
  1049. sys_debug("MC protect error\n");
  1050. }
  1051. static void mc_save_err_runtime(void) {
  1052. mc_error.vbus_x10 = (s16)(sample_vbus_raw() * 10.0f);
  1053. mc_error.ibus_x10 = (s16)(sample_ibus_raw() * 10.0f);
  1054. mc_error.vacc_x10 = (s16) (sample_acc_vol_raw() * 10.0f);
  1055. mc_error.id_ref_x10 = (s16)(motor.controller.foc.in.target_id.interpolation * 10.0f);
  1056. mc_error.iq_ref_x10 = (s16)(motor.controller.foc.in.target_iq.interpolation * 10.0f);
  1057. mc_error.id_x10 = (s16)(motor.controller.foc.out.curr_dq.d * 10.0f);
  1058. mc_error.iq_x10 = (s16)(motor.controller.foc.out.curr_dq.q * 10.0f);
  1059. mc_error.vd_x10 = (s16)(motor.controller.foc.out.vol_dq.d * 10.0f);
  1060. mc_error.vq_x10 = (s16)(motor.controller.foc.out.vol_dq.q * 10.0f);
  1061. mc_error.torque_ref_x10 = (s16)(motor.controller.target_torque * 10.0f);
  1062. mc_error.run_mode = motor.controller.mode_running;
  1063. mc_error.rpm = (s16)motor_encoder_get_speed();
  1064. mc_error.b_sensorless = !foc_observer_is_encoder();
  1065. mc_error.b_sensorless_stable = foc_observer_sensorless_stable();
  1066. mc_error.mos_temp = get_mos_temp_raw();
  1067. mc_error.mot_temp = get_motor_temp_raw();
  1068. mc_error.enc_error = motor_encoder_may_error();
  1069. mc_error.sensorless_rpm = (s16)foc_observer_sensorless_speed();
  1070. mc_err_runtime_add(&mc_error);
  1071. }
  1072. void MC_Protect_IRQHandler(void){
  1073. pwm_brake_enable(false);
  1074. shark_timer_post(&_brake_prot_timer, 1000);
  1075. if (!motor.b_start) {
  1076. return;
  1077. }
  1078. mc_set_critical_error(FOC_CRIT_Phase_Err);
  1079. mc_save_err_runtime();
  1080. mc_internal_init(CTRL_MODE_OPEN, false);
  1081. adc_stop_convert();
  1082. pwm_stop();
  1083. mot_contrl_stop(&motor.controller);
  1084. pwm_up_enable(true);
  1085. }
  1086. void motor_debug(void) {
  1087. if (!mc_unsafe_critical_error()) {
  1088. return;
  1089. }
  1090. sys_debug("err1: %f, %f, %f, %d\n", (float)mc_error.vbus_x10/10.0f, (float)mc_error.id_ref_x10/10.0f, (float)mc_error.iq_ref_x10/10.0f, mc_error.run_mode);
  1091. sys_debug("err2: %f, %f, %f, %f\n", (float)mc_error.id_x10/10.0f, (float)mc_error.iq_x10/10.0f, (float)mc_error.vd_x10/10.0f, (float)mc_error.vq_x10/10.0f);
  1092. sys_debug("err3: %f, %d, %d, %d, %d\n", (float)mc_error.ibus_x10/10.0f, mc_error.sensorless_rpm, mc_error.mos_temp, mc_error.mot_temp, mc_error.enc_error);
  1093. }
  1094. static void motor_vbus_crit_check(s16 curr_vbus) {
  1095. if (curr_vbus <= motor.s_vbus_hw_min) {
  1096. motor.vbus_le_cnt ++;
  1097. if (motor.vbus_le_cnt >= 2) {
  1098. if (mot_contrl_is_start(&motor.controller)) {
  1099. pwm_disable_channel();
  1100. mc_save_err_runtime();
  1101. mot_contrl_stop(&motor.controller);
  1102. }
  1103. if (mc_set_critical_error(FOC_CRIT_Vol_HW_Err)) {
  1104. if (mot_contrl_get_speed(&motor.controller) > CONFIG_ZERO_SPEED_RPM) {
  1105. mc_crit_err_add_s16(FOC_CRIT_Vol_HW_Err, curr_vbus);
  1106. }
  1107. }
  1108. }
  1109. }else {
  1110. motor.vbus_le_cnt = 0;
  1111. }
  1112. if (curr_vbus >= motor.s_vbus_hw_max) {
  1113. motor.vbus_he_cnt ++;
  1114. if (motor.vbus_he_cnt >= 1) {
  1115. if (mot_contrl_is_start(&motor.controller)) {
  1116. pwm_disable_channel();
  1117. mc_save_err_runtime();
  1118. mot_contrl_stop(&motor.controller);
  1119. }
  1120. if (mc_set_critical_error(FOC_CRIT_OV_Vol_Err)) {
  1121. mc_crit_err_add_s16(FOC_CRIT_OV_Vol_Err, curr_vbus);
  1122. }
  1123. }
  1124. }else {
  1125. motor.vbus_he_cnt = 0;
  1126. }
  1127. }
  1128. void TIMER_UP_IRQHandler(void){
  1129. if (!motor.b_start && !mot_contrl_is_start(&motor.controller)) {
  1130. motor_encoder_update(false);
  1131. motor_vbus_crit_check((s16)get_vbus_int());
  1132. }
  1133. }
  1134. measure_time_t g_meas_foc = {.exec_max_time = 25, .intval_max_time = 62, .intval_low_err = 0, .intval_hi_err = 0, .first = true,};
  1135. #define TIME_MEATURE_START() time_measure_start(&g_meas_foc)
  1136. #define TIME_MEATURE_END() time_measure_end(&g_meas_foc)
  1137. #if (CONFIG_ENABLE_IAB_REC==1)
  1138. #define CONFIG_IAB_REC_COUNT 1000
  1139. static s16 ia[CONFIG_IAB_REC_COUNT], ib[CONFIG_IAB_REC_COUNT];
  1140. static int iab_w_count = 0, iab_r_count = 0;
  1141. static bool b_iab_rec = false;
  1142. extern void can_plot2(s16 v1, s16 v2);
  1143. #endif
  1144. /*ADC 电流采集中断,调用FOC的核心处理函数*/
  1145. void ADC_IRQHandler(void) {
  1146. if (phase_current_offset()) {//check if is adc offset checked
  1147. return;
  1148. }
  1149. if (phase_current_sensor_do_calibrate()){
  1150. pwm_update_duty(100, FOC_PWM_Half_Period-100, 100);
  1151. pwm_update_sample(FOC_PWM_Half_Period-1, FOC_PWM_Half_Period+1, PHASE_BC);
  1152. return;
  1153. }
  1154. TIME_MEATURE_START();
  1155. #if (CONFIG_ENABLE_IAB_REC==1)
  1156. if (b_iab_rec && (iab_w_count < CONFIG_IAB_REC_COUNT)) {
  1157. ia[iab_w_count] = (s16)motor.controller.foc.in.curr_abc[0];
  1158. ib[iab_w_count] = (s16)motor.controller.foc.in.curr_abc[1];
  1159. iab_w_count ++;
  1160. }
  1161. #endif
  1162. motor_vbus_crit_check((s16)sample_vbus_raw()); //need fast detect vbus very low, to stop the motor
  1163. float vd, vq;
  1164. if (motor.b_ind_start) {
  1165. mot_params_high_freq_inject();
  1166. vd = motor.controller.foc.out.vol_dq.d;
  1167. vq = motor.controller.foc.out.vol_dq.q;
  1168. }
  1169. if (!mot_contrl_update(&motor.controller)) {/* FOC 角度错误,立即停机 */
  1170. if (mot_contrl_is_start(&motor.controller)) {
  1171. pwm_disable_channel();
  1172. /* 记录错误 */
  1173. if (!foc_observer_is_force_sensorless()) {
  1174. mc_save_err_runtime();
  1175. }
  1176. mot_contrl_stop(&motor.controller);
  1177. g_meas_foc.first = true;
  1178. if (!foc_observer_is_force_sensorless()) {
  1179. if (mc_set_critical_error(FOC_CRIT_Angle_Err)) {
  1180. mc_crit_err_add_s16(FOC_CRIT_Angle_Err, (s16)motor_encoder_get_speed());
  1181. }
  1182. if (motor_encoder_may_error() == ENCODER_PWM_ERR) {
  1183. if (mc_set_critical_error(FOC_CRIT_Encoder_Err)) {
  1184. mc_crit_err_add(FOC_CRIT_Encoder_Err, (s16)enc_pwm_err_ms, enc_delta_err2);
  1185. }
  1186. }else if (motor_encoder_may_error() == ENCODER_AB_ERR) {
  1187. if (mc_set_critical_error(FOC_CRIT_ENC_AB_Err)) {
  1188. mc_crit_err_add(FOC_CRIT_ENC_AB_Err, enc_delta_err1, enc_delta_err2);
  1189. }
  1190. }
  1191. }
  1192. }
  1193. }
  1194. if (motor.b_ind_start) {
  1195. float id = motor.controller.foc.out.curr_dq.d;
  1196. float iq = motor.controller.foc.out.curr_dq.q;
  1197. mot_params_hj_sample_vi(vd, vq, id, iq);
  1198. }
  1199. TIME_MEATURE_END();
  1200. }
  1201. #if (CONFIG_ENABLE_IAB_REC==1)
  1202. static void _iab_plot_timer_handler(shark_timer_t *t) {
  1203. if (!b_iab_rec) {
  1204. return;
  1205. }
  1206. if (iab_r_count < iab_w_count) {
  1207. can_plot2(ia[iab_r_count], ib[iab_r_count]);
  1208. iab_r_count ++;
  1209. shark_timer_post(t, 10);
  1210. }
  1211. }
  1212. static shark_timer_t _iab_plot_timer = TIMER_INIT(_iab_plot_timer, _iab_plot_timer_handler);
  1213. void mc_start_current_rec(bool rec) {
  1214. if (b_iab_rec == rec) {
  1215. return;
  1216. }
  1217. if (!rec) {
  1218. b_iab_rec = false;
  1219. shark_timer_cancel(&_iab_plot_timer);
  1220. return;
  1221. }
  1222. iab_w_count = 0;
  1223. iab_r_count = 0;
  1224. b_iab_rec = true;
  1225. shark_timer_post(&_iab_plot_timer, 100);
  1226. }
  1227. #endif
  1228. static bool mc_run_stall_process(u8 run_mode) {
  1229. if ((run_mode == CTRL_MODE_TRQ || run_mode == CTRL_MODE_SPD) && !mot_contrl_is_auto_holdding(&motor.controller)) {
  1230. //堵转判断
  1231. if (motor.b_runStall) {
  1232. if (!mc_throttle_released()) {
  1233. return true;
  1234. }
  1235. motor.runStall_time = 0;
  1236. motor.b_runStall = false; //转把释放,清除堵转标志
  1237. }else if (mot_contrl_get_current_vector(&motor.controller) >= CONFIG_STALL_MAX_CURRENT){
  1238. if (ABS(mot_contrl_get_speed(&motor.controller)) < 1.0f && (motor.runStall_time == 0)) {
  1239. motor.runStall_time = get_tick_ms();
  1240. motor.runStall_pos = motor_encoder_get_position();
  1241. }
  1242. if (motor.runStall_time > 0) {
  1243. if (get_delta_ms(motor.runStall_time) >= CONFIG_STALL_MAX_TIME) {
  1244. motor.b_runStall = true;
  1245. motor.runStall_time = 0;
  1246. mot_contrl_set_torque(&motor.controller, 0);
  1247. throttle_torque_reset();
  1248. return true;
  1249. }
  1250. if (ABS(motor.runStall_pos - motor_encoder_get_position()) >= 0.2f) {
  1251. motor.runStall_time = 0;
  1252. }
  1253. }
  1254. }else {
  1255. motor.runStall_time = 0;
  1256. }
  1257. }
  1258. return false;
  1259. }
  1260. static void mc_autohold_process(void) __attribute__((unused));
  1261. static void mc_autohold_process(void) {
  1262. if (!mc_conf()->s.auto_hold) {
  1263. if (mot_contrl_is_auto_holdding(&motor.controller)) {
  1264. mc_auto_hold(false);
  1265. }
  1266. return;
  1267. }
  1268. if (mot_contrl_is_auto_holdding(&motor.controller)) {
  1269. if (!mc_throttle_released()) {
  1270. mc_auto_hold(false);
  1271. motor.b_wait_brk_release = false;
  1272. }else if (!motor.b_break && motor.b_wait_brk_release) {
  1273. motor.b_wait_brk_release = false;
  1274. }else if (motor.b_break && !motor.b_wait_brk_release) {
  1275. mc_auto_hold(false);
  1276. }
  1277. }
  1278. if (!mot_contrl_is_auto_holdding(&motor.controller) && motor.b_break && (motor_encoder_get_speed() == 0)) {
  1279. if (motor.n_autohold_time == 0) {
  1280. motor.n_autohold_time = get_tick_ms();
  1281. }else {
  1282. if (get_delta_ms(motor.n_autohold_time) >= CONFIG_AUTOHOLD_DETECT_TIME) {
  1283. if (mc_auto_hold(true)) {
  1284. motor.b_wait_brk_release = true;
  1285. }
  1286. }
  1287. }
  1288. }else {
  1289. motor.n_autohold_time = 0;
  1290. }
  1291. }
  1292. static void mc_process_throttle_epm(void) __attribute__((unused));
  1293. static void mc_process_throttle_epm(void) {
  1294. if (!motor.b_epm_cmd_move) {//通过命令前进后退,不处理转把
  1295. if (mc_throttle_released()) {
  1296. mc_throttle_epm_move(EPM_Dir_None);
  1297. }else {
  1298. mc_throttle_epm_move(EPM_Dir_Forward);
  1299. }
  1300. }
  1301. }
  1302. static void mc_process_epm_move(void) __attribute__((unused));
  1303. static void mc_process_epm_move(void) {
  1304. if (!motor.b_epm || (motor.epm_dir == EPM_Dir_None)){
  1305. return;
  1306. }
  1307. float target_vel = mc_conf()->c.max_epm_rpm;
  1308. float target_trq = mc_conf()->c.max_epm_torque;
  1309. if (motor.epm_dir == EPM_Dir_Back) {
  1310. target_vel = -mc_conf()->c.max_epm_back_rpm;
  1311. target_trq = mc_conf()->c.max_epm_back_torque;
  1312. }else if (!motor.b_epm_cmd_move) {
  1313. target_vel = throttle_vol_to_opening(throttle_get_signal()) * 2.0f * (float)target_vel;
  1314. }
  1315. motor.f_epm_trq = target_trq;
  1316. motor.f_epm_vel = target_vel;
  1317. mot_contrl_set_torque_limit(&motor.controller, motor.f_epm_trq);
  1318. mot_contrl_set_target_vel(&motor.controller, motor.f_epm_vel);
  1319. }
  1320. static bool mc_process_force_running(void) {
  1321. if (motor.b_calibrate || (motor.mode == CTRL_MODE_OPEN)) {
  1322. if (motor.b_force_run && _force_wait <= 2000) {
  1323. if (_force_wait > 0) {
  1324. --_force_wait;
  1325. }else {
  1326. _force_angle += 1.5f;
  1327. rand_angle(_force_angle);
  1328. mot_contrl_set_angle(&motor.controller, _force_angle);
  1329. }
  1330. }
  1331. return true;
  1332. }
  1333. return false;
  1334. }
  1335. static void mc_process_brake_light(void) {
  1336. bool can_lighting = false;
  1337. if (motor.b_break || motor.b_auto_hold || mot_contrl_ebrk_is_running(&motor.controller) || ((!mc_critical_can_not_run()) && motor_encoder_get_speed() > 2000)) {
  1338. can_lighting = true;
  1339. }
  1340. gpio_brk_light_enable(can_lighting);
  1341. }
  1342. #ifdef CONFIG_CRUISE_ENABLE_ACCL
  1343. static void mc_process_curise(void) {
  1344. static bool can_pause_resume = false;
  1345. if (motor.b_cruise) {
  1346. if (mot_contrl_get_speed(&motor.controller) < CONFIG_CRUISE_EXIT_RPM) {
  1347. mot_contrl_set_cruise(&motor.controller, false);
  1348. return;
  1349. }
  1350. /* 定速巡航模式下,必须转把归位后才能开始通过拧动转把加速 */
  1351. if (mc_throttle_released() && !can_pause_resume) {
  1352. can_pause_resume = true;
  1353. }
  1354. if (!can_pause_resume) {
  1355. return;
  1356. }
  1357. if (mot_contrl_is_cruise_enabled(&motor.controller)) {
  1358. u32 cruise_time = shark_get_seconds() - motor.cruise_time;
  1359. if ((cruise_time >= 3) && motor.cruise_torque == 0.0f) {
  1360. motor.cruise_torque = motor.controller.target_torque;
  1361. }else if ((cruise_time >= 3) && (motor.cruise_torque > 0.0f)){
  1362. float trq_req = get_user_request_torque();
  1363. if (trq_req > motor.cruise_torque * 1.2f) {
  1364. mot_contrl_pause_cruise(&motor.controller); //需要加速,暂停定速巡航
  1365. }
  1366. }
  1367. }else {
  1368. float trq_req = get_user_request_torque();
  1369. if (trq_req <= motor.cruise_torque * 1.1f) {
  1370. mot_contrl_resume_cruise(&motor.controller); //重新开始定速巡航,巡航速度还是前一次定速巡航给的速度
  1371. }
  1372. }
  1373. }else {
  1374. mot_contrl_set_cruise(&motor.controller, false);
  1375. can_pause_resume = false;
  1376. }
  1377. }
  1378. #endif
  1379. static bool mc_can_stop_foc(void) {
  1380. if (mc_critical_need_stop()) {
  1381. return true;
  1382. }
  1383. if (motor.mode == CTRL_MODE_CURRENT) {
  1384. return false;
  1385. }
  1386. if (!motor.b_cruise && !motor.b_epm && motor.mode == CTRL_MODE_SPD) {
  1387. if (motor.s_target_speed != MAX_S16 && motor.s_target_speed != 0) {
  1388. return false;
  1389. }else {
  1390. return true;
  1391. }
  1392. }
  1393. if (mc_throttle_released() && mot_contrl_get_speed(&motor.controller) == 0.0f) {
  1394. if (!mot_contrl_is_auto_holdding(&motor.controller) && motor.epm_dir == EPM_Dir_None) {
  1395. return true;
  1396. }
  1397. }
  1398. /* 启用无感观测器,但是观测器未稳定,关闭输出,滑行 */
  1399. if (!foc_observer_is_encoder() && !foc_observer_sensorless_stable()) {
  1400. return true;
  1401. }
  1402. return false;
  1403. }
  1404. static bool mc_can_restart_foc(void) {
  1405. if (mc_critical_can_not_run()) {
  1406. return false;
  1407. }
  1408. bool can_start = (!mc_throttle_released() || (motor.epm_dir != EPM_Dir_None));
  1409. if (!foc_observer_is_encoder() && !foc_observer_sensorless_stable()){
  1410. return false;
  1411. }
  1412. if ((motor.s_target_speed != MAX_S16 && motor.s_target_speed != 0) && motor.mode == CTRL_MODE_SPD) {
  1413. return true;
  1414. }
  1415. return can_start;
  1416. }
  1417. static void mc_motor_runstop(void) __attribute__((unused));
  1418. static void mc_motor_runstop(void) {
  1419. u32 mask;
  1420. if (mot_contrl_is_start(&motor.controller) && mc_can_stop_foc()) {
  1421. mask = cpu_enter_critical();
  1422. mot_contrl_stop(&motor.controller);
  1423. pwm_disable_channel();
  1424. g_meas_foc.first = true;
  1425. cpu_exit_critical(mask);
  1426. }
  1427. if (!mot_contrl_is_start(&motor.controller) && mc_can_restart_foc()) {
  1428. mask = cpu_enter_critical();
  1429. mot_contrl_start(&motor.controller, motor.mode);
  1430. mc_gear_mode_set();
  1431. throttle_torque_reset();
  1432. pwm_enable_channel();
  1433. g_meas_foc.first = true;
  1434. cpu_exit_critical(mask);
  1435. }
  1436. }
  1437. static void mc_process_throttle_torque(float vol) __attribute__((unused));
  1438. static void mc_process_throttle_torque(float vol) {
  1439. float torque = throttle_get_torque(&motor.controller, vol);
  1440. if (mc_throttle_released()) {
  1441. #ifdef CONFIG_CRUISE_ENABLE_ACCL
  1442. if (mc_is_cruise_enabled()) {
  1443. return;
  1444. }
  1445. #endif
  1446. if (mot_contrl_energy_recovery(&motor.controller, true)) {
  1447. return;
  1448. }
  1449. }
  1450. if (motor.controller.mode_running == CTRL_MODE_TRQ) {
  1451. throttle_set_torque(&motor.controller, torque);
  1452. }else if (motor.controller.mode_running == CTRL_MODE_SPD) {
  1453. if (!mc_is_cruise_enabled()) {
  1454. float vel_ref = motor.controller.userlim.mot_vel * throttle_get_open_ration_filted();
  1455. mot_contrl_set_target_vel(&motor.controller, vel_ref);
  1456. }
  1457. }else if (motor.controller.mode_running == CTRL_MODE_EBRAKE){
  1458. float vel = mot_contrl_get_speed(&motor.controller);
  1459. float ebrk_trq = motor_get_ebreak_toruqe(vel);
  1460. if (ebrk_trq >= -mot_contrl_get_ebrk_torque(&motor.controller)/2){
  1461. mot_contrl_set_ebrk_time(&motor.controller, 1);
  1462. }
  1463. if (ebrk_trq != 0) {
  1464. mot_contrl_set_torque(&motor.controller, ebrk_trq);
  1465. }
  1466. if ((mot_contrl_get_final_torque(&motor.controller) < 0.0001f && vel < CONFIG_MIN_RPM_EXIT_EBRAKE) ||
  1467. (!mc_throttle_released() || (mc_throttle_released() && (vel == 0.0f)))) {
  1468. mot_contrl_energy_recovery(&motor.controller, false);
  1469. throttle_torque_reset();
  1470. }
  1471. }
  1472. }
  1473. /*FOC 的部分处理,比如速度环,状态机,转把采集等*/
  1474. measure_time_t g_meas_MCTask = {.exec_max_time = 100, .intval_max_time = 1000, .intval_low_err = 0, .intval_hi_err = 0, .first = true,};
  1475. #define mc_TaskStart time_measure_start(&g_meas_MCTask)
  1476. #define mc_TaskEnd time_measure_end(&g_meas_MCTask)
  1477. void Sched_MC_mTask(void) {
  1478. static int vbus_err_cnt = 0;
  1479. static bool _sensorless_run = false;
  1480. mc_TaskStart;
  1481. adc_vref_filter();
  1482. throttle_detect(motor.b_start);
  1483. F_all_Calc();
  1484. #ifdef CONFIG_CRUISE_ENABLE_ACCL
  1485. mc_process_curise();
  1486. #endif
  1487. u8 runMode = mot_contrl_mode(&motor.controller);
  1488. /*保护功能*/
  1489. u8 limted = mot_contrl_protect(&motor.controller);
  1490. /* 母线电流,实际采集的相电流矢量大小的计算 */
  1491. mot_contrl_calc_current(&motor.controller);
  1492. if ((mot_contrl_get_dc_current(&motor.controller) > (CONFIG_HW_MAX_DC_CURRENT * 1.1f)) || (mot_contrl_get_dc_current(&motor.controller) < CONFIG_HW_MAX_CHRG_CURRENT)) {
  1493. vbus_err_cnt ++;
  1494. if (vbus_err_cnt >= 5) {
  1495. if (mc_set_critical_error(FOC_CRIT_IDC_OV)) {
  1496. mc_crit_err_add(FOC_CRIT_IDC_OV, (s16)sample_vbus_raw(), (s16)sample_ibus_raw());
  1497. mc_save_err_runtime();
  1498. }
  1499. }
  1500. }else {
  1501. vbus_err_cnt = 0;
  1502. }
  1503. if (mc_process_force_running()) {
  1504. mc_TaskEnd;
  1505. return;
  1506. }
  1507. bool sensor_less = !foc_observer_is_encoder();
  1508. if (mc_detect_vbus_mode() || (limted == FOC_LIM_CHANGE_L) || (_sensorless_run != sensor_less)) {
  1509. mc_gear_mode_set();
  1510. if (sensor_less && foc_observer_sensorless_stable()) {//unstable 记录在ADC中断处理中
  1511. if (motor_encoder_may_error() == ENCODER_PWM_ERR) {
  1512. if (mc_set_critical_error(FOC_CRIT_Encoder_Err)) {
  1513. mc_crit_err_add(FOC_CRIT_Encoder_Err, (s16)enc_pwm_err_ms, enc_delta_err2);
  1514. }
  1515. }else if (motor_encoder_may_error() == ENCODER_AB_ERR) {
  1516. if (mc_set_critical_error(FOC_CRIT_ENC_AB_Err)) {
  1517. mc_crit_err_add(FOC_CRIT_ENC_AB_Err, enc_delta_err1, enc_delta_err2);
  1518. }
  1519. }
  1520. }
  1521. motor.b_limit_pending = false;
  1522. }else if (limted == FOC_LIM_CHANGE_H) {
  1523. motor.b_limit_pending = true;
  1524. }
  1525. _sensorless_run = sensor_less;
  1526. /* 如果取消高温,欠压等限流需要释放转把后才生效,确保不会突然加速 */
  1527. if (motor.b_limit_pending && mc_throttle_released()) {
  1528. motor.b_limit_pending = false;
  1529. mc_gear_mode_set();
  1530. }
  1531. /* 堵转处理 */
  1532. if (mc_run_stall_process(runMode) || (motor.mode == CTRL_MODE_CURRENT)) {
  1533. #ifndef CONFIG_DQ_STEP_RESPONSE
  1534. mot_contrl_slow_task(&motor.controller);
  1535. mc_motor_runstop();
  1536. #endif
  1537. if (motor.b_ind_start) {
  1538. mot_params_flux_stop();
  1539. }
  1540. mc_TaskEnd;
  1541. return;
  1542. }
  1543. mc_process_brake_light();
  1544. if ((runMode != CTRL_MODE_OPEN) || (motor.mode != CTRL_MODE_OPEN)) {
  1545. #ifndef CONFIG_DQ_STEP_RESPONSE
  1546. mc_autohold_process();
  1547. mc_turbo_auto_exit();
  1548. if (motor.mode != CTRL_MODE_OPEN) {
  1549. mc_motor_runstop();
  1550. }
  1551. if (runMode != CTRL_MODE_OPEN) {
  1552. if (runMode == CTRL_MODE_SPD) {
  1553. if (mc_is_epm()) {
  1554. mc_process_throttle_epm();
  1555. mc_process_epm_move();
  1556. }else if (motor.s_target_speed != MAX_S16) {
  1557. mot_contrl_set_target_vel(&motor.controller, motor.s_target_speed);
  1558. }
  1559. }else {
  1560. if (motor.s_force_torque != MAX_S16) {
  1561. mot_contrl_set_force_torque(&motor.controller, motor.s_force_torque);
  1562. }else {
  1563. float thro = throttle_get_signal();
  1564. if (motor.b_ignor_throttle) {
  1565. float r = (float)motor.u_throttle_ration/100.0f;
  1566. thro = throttle_opening_to_vol(r);
  1567. }
  1568. mc_process_throttle_torque(thro);
  1569. }
  1570. }
  1571. mot_contrl_slow_task(&motor.controller);
  1572. }
  1573. #endif
  1574. }
  1575. mc_TaskEnd;
  1576. }