PMSM_FOC_Core.c 35 KB

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  1. #include "arm_math.h"
  2. #include "PMSM_FOC_Core.h"
  3. #include "foc/foc_config.h"
  4. #include "foc/motor/motor_param.h"
  5. #include "foc/core/e_ctrl.h"
  6. #include "math/fix_math.h"
  7. #include "math/fast_math.h"
  8. #include "foc/motor/current.h"
  9. #include "foc/motor/motor.h"
  10. #include "foc/core/svpwm.h"
  11. #include "foc/core/torque.h"
  12. #include "foc/core/foc_observer.h"
  13. #include "foc/samples.h"
  14. #include "foc/limit.h"
  15. #include "app/nv_storage.h"
  16. #include "bsp/pwm.h"
  17. #include "libs/logger.h"
  18. #include "math/fir.h"
  19. #define _DEBUG(fmt, args...) sys_debug(fmt, ##args)
  20. PMSM_FOC_Ctrl gFoc_Ctrl;
  21. static bool g_focinit = false;
  22. static u32 PMSM_FOC_Debug_Task(void *p);
  23. static __INLINE void RevPark(DQ_t *dq, float angle, AB_t *alpha_beta) {
  24. float c,s;
  25. #if 0
  26. SinCos_Lut(angle, &s, &c);
  27. #else
  28. s = gFoc_Ctrl.out.sin;
  29. c = gFoc_Ctrl.out.cos;
  30. #endif
  31. alpha_beta->a = dq->d * c - dq->q * s;
  32. alpha_beta->b = dq->d * s + dq->q * c;
  33. }
  34. static __INLINE void Clark(float A, float B, float C, AB_t *alpha_beta){
  35. alpha_beta->a = A;
  36. alpha_beta->b = ONE_BY_SQRT3 * (B - C);
  37. }
  38. static __INLINE void Park(AB_t *alpha_beta, float angle, DQ_t *dq) {
  39. float c,s;
  40. #if 0
  41. SinCos_Lut(angle, &s, &c);
  42. #else
  43. s = gFoc_Ctrl.out.sin;
  44. c = gFoc_Ctrl.out.cos;
  45. #endif
  46. dq->d = alpha_beta->a * c + alpha_beta->b * s;
  47. dq->q = -alpha_beta->a * s + alpha_beta->b * c;
  48. }
  49. #define VD_PRIO_HIGH
  50. static __INLINE float Circle_Limitation(DQ_t *vdq, float vDC, float module, DQ_t *out) {
  51. float sq_vdq = vdq->d * vdq->d + vdq->q * vdq->q;
  52. float vDC_m = vDC * module;
  53. float sq_vDC = vDC_m * vDC_m;
  54. if (sq_vdq > sq_vDC) {
  55. #ifdef VD_PRIO_HIGH
  56. out->d = vdq->d;
  57. out->q = sqrtf(sq_vDC - out->d*out->d);
  58. #else
  59. float r = sqrtf(sq_vDC / sq_vdq);
  60. out->d = vdq->d * r;
  61. out->q = vdq->q * r;
  62. #endif
  63. }else {
  64. out->d = vdq->d;
  65. out->q = vdq->q;
  66. }
  67. return sqrtf(sq_vdq/sq_vDC);
  68. }
  69. static __INLINE void FOC_Set_DqRamp(dq_Rctrl *c, float target, int time) {
  70. float cp = c->s_Cp;
  71. c->s_FinalTgt = target;
  72. c->s_Step = (c->s_FinalTgt - cp) / (float)time;
  73. }
  74. static __INLINE float FOC_Get_DqRamp(dq_Rctrl *c) {
  75. if (++c->n_StepCount == c->n_CtrlCount) {
  76. c->s_Cp += c->s_Step;
  77. if (c->s_Step < 0) {
  78. if (c->s_Cp < c->s_FinalTgt) {
  79. c->s_Cp = c->s_FinalTgt;
  80. }
  81. }else {
  82. if (c->s_Cp > c->s_FinalTgt) {
  83. c->s_Cp = c->s_FinalTgt;
  84. }
  85. }
  86. c->n_StepCount = 0;
  87. }
  88. return c->s_Cp;
  89. }
  90. static __INLINE void FOC_DqRamp_init(dq_Rctrl *c, int count) {
  91. c->n_CtrlCount = count;
  92. c->n_StepCount = 0;
  93. c->s_Cp = 0;
  94. c->s_FinalTgt = 0;
  95. c->s_Step = 0;
  96. }
  97. static __INLINE void FOC_Set_iDqRamp(dq_Rctrl *c, float target) {
  98. FOC_Set_DqRamp(c, target, (/*CONFIG_IDQ_CTRL_TS/CONFIG_SPD_CTRL_TS - 1*/CURRENT_LOOP_RAMP_COUNT));
  99. }
  100. static __INLINE void FOC_Set_vDqRamp(dq_Rctrl *c, float target) {
  101. FOC_Set_DqRamp(c, target, (CONFIG_FOC_VDQ_RAMP_FINAL_TIME/1000*((CONFIG_IDQ_CTRL_TS/CONFIG_FOC_VDQ_RAMP_TS))));
  102. }
  103. static void PMSM_FOC_Reset_PID(void) {
  104. PI_Controller_Reset(&gFoc_Ctrl.pi_id, 0);
  105. PI_Controller_Reset(&gFoc_Ctrl.pi_iq, 0);
  106. PI_Controller_Reset(&gFoc_Ctrl.pi_fw, 0);
  107. PI_Controller_Reset(&gFoc_Ctrl.pi_lock, 0);
  108. PI_Controller_Reset(&gFoc_Ctrl.pi_power, 0);
  109. #ifdef CONFIG_SPEED_LADRC
  110. ladrc_reset(&gFoc_Ctrl.vel_lim_adrc, 0, 0);
  111. ladrc_reset(&gFoc_Ctrl.vel_adrc, 0, 0);
  112. #else
  113. PI_Controller_Reset(&gFoc_Ctrl.pi_speed, 0);
  114. PI_Controller_Reset(&gFoc_Ctrl.pi_torque, 0);
  115. #endif
  116. }
  117. static void PMSM_FOC_Conf_PID(void) {
  118. gFoc_Ctrl.pi_id.kp = nv_get_foc_params()->pid_conf[PID_D_id].kp;
  119. gFoc_Ctrl.pi_id.ki = nv_get_foc_params()->pid_conf[PID_D_id].ki;
  120. gFoc_Ctrl.pi_id.kd = nv_get_foc_params()->pid_conf[PID_D_id].kd;
  121. gFoc_Ctrl.pi_id.DT = (1.0f/(float)CONFIG_IDQ_CTRL_TS);
  122. gFoc_Ctrl.pi_iq.kp = nv_get_foc_params()->pid_conf[PID_Q_id].kp;
  123. gFoc_Ctrl.pi_iq.ki = nv_get_foc_params()->pid_conf[PID_Q_id].ki;
  124. gFoc_Ctrl.pi_iq.kd = nv_get_foc_params()->pid_conf[PID_Q_id].kd;
  125. gFoc_Ctrl.pi_iq.DT = (1.0f/(float)CONFIG_IDQ_CTRL_TS);
  126. gFoc_Ctrl.pi_power.kp = nv_get_foc_params()->pid_conf[PID_Pow_id].kp;
  127. gFoc_Ctrl.pi_power.ki = nv_get_foc_params()->pid_conf[PID_Pow_id].ki;
  128. gFoc_Ctrl.pi_power.kd = nv_get_foc_params()->pid_conf[PID_Pow_id].kd;
  129. gFoc_Ctrl.pi_power.DT = (1.0f/(float)CONFIG_SPD_CTRL_TS);
  130. gFoc_Ctrl.pi_lock.kp = nv_get_foc_params()->pid_conf[PID_Lock_id].kp;
  131. gFoc_Ctrl.pi_lock.ki = nv_get_foc_params()->pid_conf[PID_Lock_id].ki;
  132. gFoc_Ctrl.pi_lock.kd = nv_get_foc_params()->pid_conf[PID_Lock_id].kd;
  133. gFoc_Ctrl.pi_lock.DT = (1.0f/(float)CONFIG_SPD_CTRL_TS);
  134. gFoc_Ctrl.pi_fw.kp = nv_get_foc_params()->pid_conf[PID_FW_id].kp;
  135. gFoc_Ctrl.pi_fw.ki = nv_get_foc_params()->pid_conf[PID_FW_id].ki;
  136. gFoc_Ctrl.pi_fw.kd = nv_get_foc_params()->pid_conf[PID_FW_id].kd;
  137. gFoc_Ctrl.pi_fw.DT = (1.0f/(float)CONFIG_SPD_CTRL_TS);
  138. PI_Controller_max(&gFoc_Ctrl.pi_fw, 0, -CONFIG_MAX_FW_D_CURR);
  139. #ifdef CONFIG_SPEED_LADRC
  140. ladrc_init(&gFoc_Ctrl.vel_lim_adrc, 1.0f/(float)CONFIG_SPD_CTRL_TS, CONFIG_LADRC_Wo, CONFIG_LADRC_Wcv, CONFIG_LADRC_B0);
  141. ladrc_init(&gFoc_Ctrl.vel_adrc, 1.0f/(float)CONFIG_SPD_CTRL_TS, CONFIG_LADRC_Wo, CONFIG_LADRC_Wcv, CONFIG_LADRC_B0);
  142. #else
  143. gFoc_Ctrl.pi_torque.kp = nv_get_foc_params()->pid_conf[PID_TRQ_id].kp;
  144. gFoc_Ctrl.pi_torque.ki = nv_get_foc_params()->pid_conf[PID_TRQ_id].ki;
  145. gFoc_Ctrl.pi_torque.kd = nv_get_foc_params()->pid_conf[PID_TRQ_id].kd;
  146. gFoc_Ctrl.pi_torque.DT = (1.0f/(float)CONFIG_SPD_CTRL_TS);
  147. gFoc_Ctrl.pi_speed.kp = nv_get_foc_params()->pid_conf[PID_Spd_id].kp;
  148. gFoc_Ctrl.pi_speed.ki = nv_get_foc_params()->pid_conf[PID_Spd_id].ki;
  149. gFoc_Ctrl.pi_speed.kd = nv_get_foc_params()->pid_conf[PID_Spd_id].kd;
  150. gFoc_Ctrl.pi_speed.DT = (1.0f/(float)CONFIG_SPD_CTRL_TS);
  151. #endif
  152. }
  153. static void PMSM_FOC_UserInit(void) {
  154. memset(&gFoc_Ctrl.userLim, 0, sizeof(gFoc_Ctrl.userLim));
  155. gFoc_Ctrl.userLim.s_iDCLim = min(nv_get_foc_params()->s_LimitiDC, gFoc_Ctrl.hwLim.s_iDCMax);
  156. gFoc_Ctrl.userLim.s_motRPMLim = min(nv_get_foc_params()->s_maxRPM, gFoc_Ctrl.hwLim.s_motRPMMax);
  157. gFoc_Ctrl.userLim.s_torqueLim = nv_get_foc_params()->s_maxTorque;//MAX_TORQUE;
  158. gFoc_Ctrl.userLim.s_PhaseCurrLim = min(nv_get_foc_params()->s_PhaseCurrLim, gFoc_Ctrl.hwLim.s_PhaseCurrMax);
  159. gFoc_Ctrl.userLim.s_vDCMaxLim = nv_get_foc_params()->s_maxDCVol;
  160. gFoc_Ctrl.userLim.s_vDCMinLim = nv_get_foc_params()->s_minDCVol;
  161. gFoc_Ctrl.userLim.s_iDCeBrkLim = nv_get_foc_params()->s_iDCeBrkLim;
  162. gFoc_Ctrl.userLim.s_PhaseCurreBrkLim = nv_get_foc_params()->s_PhaseCurreBrkLim;
  163. gFoc_Ctrl.userLim.s_PhaseVoleBrkLim = gFoc_Ctrl.hwLim.s_PhaseVolMax;
  164. }
  165. void PMSM_FOC_RT_LimInit(void) {
  166. gFoc_Ctrl.protLim.s_iDCLim = HW_LIMIT_NONE;
  167. gFoc_Ctrl.protLim.s_TorqueLim = HW_LIMIT_NONE;
  168. eRamp_init_target(&gFoc_Ctrl.rtLim.rpmLimRamp, gFoc_Ctrl.userLim.s_motRPMLim, CONFIG_LIMIT_RAMP_TIME, CONFIG_LIMIT_RAMP_TIME);
  169. eRamp_init_target(&gFoc_Ctrl.rtLim.torqueLimRamp, gFoc_Ctrl.userLim.s_torqueLim, CONFIG_LIMIT_RAMP_TIME, CONFIG_LIMIT_RAMP_TIME);
  170. eRamp_init_target(&gFoc_Ctrl.rtLim.DCCurrLimRamp, gFoc_Ctrl.userLim.s_iDCLim, CONFIG_LIMIT_RAMP_TIME, CONFIG_LIMIT_RAMP_TIME);
  171. }
  172. void PMSM_FOC_CoreInit(void) {
  173. #if 0
  174. gFoc_Ctrl.pi_id = &PI_Ctrl_ID;
  175. gFoc_Ctrl.pi_iq = &PI_Ctrl_IQ;
  176. gFoc_Ctrl.pi_speed = &PI_Ctrl_Spd;
  177. gFoc_Ctrl.pi_fw = &PI_Ctrl_fw;
  178. gFoc_Ctrl.pi_torque = &PI_Ctrl_trq;
  179. gFoc_Ctrl.pi_lock = &PI_Ctrl_lock;
  180. gFoc_Ctrl.pi_power = &PI_Ctrl_Power;
  181. #endif
  182. PMSM_FOC_Conf_PID();
  183. memset(&gFoc_Ctrl.in, 0, sizeof(gFoc_Ctrl.in));
  184. memset(&gFoc_Ctrl.out, 0, sizeof(gFoc_Ctrl.out));
  185. gFoc_Ctrl.hwLim.s_iDCMax = CONFIG_MAX_VBUS_CURRENT;
  186. gFoc_Ctrl.hwLim.s_motRPMMax = CONFIG_MAX_MOT_RPM;
  187. gFoc_Ctrl.hwLim.s_PhaseCurrMax = CONFIG_MAX_PHASE_CURR;
  188. gFoc_Ctrl.hwLim.s_PhaseVolMax = CONFIG_MAX_PHASE_VOL;
  189. gFoc_Ctrl.hwLim.s_vDCMax = CONFIG_MAX_DC_VOL;
  190. gFoc_Ctrl.hwLim.s_torqueMax = CONFIG_MAX_MOTOR_TORQUE;
  191. gFoc_Ctrl.hwLim.s_FWDCurrMax = CONFIG_MAX_FW_D_CURR;
  192. if (!g_focinit) {
  193. PMSM_FOC_UserInit();
  194. PMSM_FOC_RT_LimInit();
  195. shark_task_create(PMSM_FOC_Debug_Task, NULL);
  196. g_focinit = true;
  197. _DEBUG("User Limit:\n");
  198. _DEBUG("dc %f, rpm %f, torque %f, phase %f, vDCmax %f, vDCmin %f, ebrk %f\n", gFoc_Ctrl.userLim.s_iDCLim, gFoc_Ctrl.userLim.s_motRPMLim, gFoc_Ctrl.userLim.s_torqueLim,
  199. gFoc_Ctrl.userLim.s_PhaseCurrLim, gFoc_Ctrl.userLim.s_vDCMaxLim, gFoc_Ctrl.userLim.s_vDCMinLim, gFoc_Ctrl.userLim.s_PhaseCurreBrkLim);
  200. _DEBUG("Hw Limit:\n");
  201. _DEBUG("dc %f, rpm %f, torque %f, phase %f\n", gFoc_Ctrl.hwLim.s_iDCMax, gFoc_Ctrl.hwLim.s_motRPMMax, gFoc_Ctrl.hwLim.s_torqueMax, gFoc_Ctrl.hwLim.s_PhaseCurrMax);
  202. }
  203. gFoc_Ctrl.params.n_modulation = CONFIG_SVM_MODULATION;//SVM_Modulation;
  204. gFoc_Ctrl.params.n_PhaseFilterCeof = CONFIG_CURR_LP_CEOF;
  205. gFoc_Ctrl.params.n_poles = nv_get_motor_params()->poles;//MOTOR_POLES;
  206. gFoc_Ctrl.in.s_manualAngle = INVALID_ANGLE;
  207. gFoc_Ctrl.in.b_fwEnable = nv_get_foc_params()->n_FwEnable;
  208. gFoc_Ctrl.in.s_vDC = nv_get_foc_params()->s_maxDCVol;//(CONFIG_RATED_DC_VOL);
  209. gFoc_Ctrl.params.f_DCLim = get_vbus_float();
  210. eRamp_init_target(&gFoc_Ctrl.in.cruiseRpmRamp, 0, CONFIG_ACC_TIME, CONFIG_DEC_TIME);
  211. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_OPEN;
  212. gFoc_Ctrl.out.f_vdqRation = 0;
  213. FOC_DqRamp_init(&gFoc_Ctrl.idq_ctl[0], 1);
  214. FOC_DqRamp_init(&gFoc_Ctrl.idq_ctl[1], 1);
  215. FOC_DqRamp_init(&gFoc_Ctrl.vdq_ctl[0], (CONFIG_FOC_VDQ_RAMP_TS));
  216. FOC_DqRamp_init(&gFoc_Ctrl.vdq_ctl[1], (CONFIG_FOC_VDQ_RAMP_TS));
  217. PMSM_FOC_Reset_PID();
  218. foc_observer_init();
  219. gFoc_Ctrl.plot_type = Plot_None;
  220. }
  221. //#define CONFIG_USER_PHASE_LFP
  222. static __INLINE void PMSM_FOC_Update_Hardware(void) {
  223. AB_t iAB;
  224. #ifdef CONFIG_USER_PHASE_LFP
  225. float *iabc_filted = gFoc_Ctrl.in.s_iABCComp;
  226. #endif
  227. float *iabc = gFoc_Ctrl.in.s_iABC;
  228. phase_current_get(gFoc_Ctrl.in.s_iABC);
  229. Clark(iabc[0], iabc[1], iabc[2], &iAB);
  230. if (!gFoc_Ctrl.in.b_MTPA_calibrate && (gFoc_Ctrl.in.s_manualAngle != INVALID_ANGLE)) {
  231. gFoc_Ctrl.in.s_motAngle = gFoc_Ctrl.in.s_manualAngle;
  232. gFoc_Ctrl.in.s_hallAngle = motor_encoder_get_angle();
  233. }else {
  234. gFoc_Ctrl.in.s_hallAngle = foc_observer_update(gFoc_Ctrl.out.s_OutVAB.a, gFoc_Ctrl.out.s_OutVAB.b, iAB.a, iAB.b);
  235. gFoc_Ctrl.in.s_motAngle = gFoc_Ctrl.in.s_hallAngle;
  236. }
  237. gFoc_Ctrl.in.s_motRPM = foc_observer_speed();
  238. #ifdef CONFIG_DQ_STEP_RESPONSE
  239. gFoc_Ctrl.in.s_hallAngle = 0;
  240. gFoc_Ctrl.in.s_motAngle = 0;
  241. #endif
  242. gFoc_Ctrl.in.s_vDC = get_vbus_float();
  243. get_phase_vols(gFoc_Ctrl.in.s_vABC);
  244. #ifdef CONFIG_USER_PHASE_LFP
  245. float e_freq = gFoc_Ctrl.in.s_motRPM / 60.0f * gFoc_Ctrl.params.n_poles;
  246. float lpf_wc;
  247. float lpf_comp = 1.0f;
  248. if (e_freq <= 150.0f) {
  249. lpf_wc = 600.0f;
  250. if (e_freq >= 100) {
  251. lpf_comp = 1.02f;
  252. }else if (e_freq >= 50) {
  253. lpf_comp = 1.01;
  254. }
  255. }else {
  256. lpf_wc = e_freq * 4.0f;
  257. lpf_comp = 1.03f;
  258. }
  259. gFoc_Ctrl.params.n_PhaseFilterCeof = (lpf_wc*2*M_PI*FOC_CTRL_US);
  260. LowPass_Filter(gFoc_Ctrl.in.s_iABCFilter[0], gFoc_Ctrl.in.s_iABC[0], gFoc_Ctrl.params.n_PhaseFilterCeof);
  261. LowPass_Filter(gFoc_Ctrl.in.s_iABCFilter[1], gFoc_Ctrl.in.s_iABC[1], gFoc_Ctrl.params.n_PhaseFilterCeof);
  262. gFoc_Ctrl.in.s_iABCFilter[2] = - (gFoc_Ctrl.in.s_iABCFilter[0] + gFoc_Ctrl.in.s_iABCFilter[1]);
  263. gFoc_Ctrl.in.s_iABCComp[0] = gFoc_Ctrl.in.s_iABCFilter[0] * lpf_comp;
  264. gFoc_Ctrl.in.s_iABCComp[1] = gFoc_Ctrl.in.s_iABCFilter[1] * lpf_comp;
  265. gFoc_Ctrl.in.s_iABCComp[2] = gFoc_Ctrl.in.s_iABCFilter[2] * lpf_comp;
  266. Clark(iabc_filted[0], iabc_filted[1], iabc_filted[2], &iAB);
  267. #endif
  268. SinCos_Lut(gFoc_Ctrl.in.s_motAngle, &gFoc_Ctrl.out.sin, &gFoc_Ctrl.out.cos);
  269. Park(&iAB, gFoc_Ctrl.in.s_motAngle, &gFoc_Ctrl.out.s_RealIdq);
  270. }
  271. static __INLINE void PMSM_FOC_Update_PI_Idq(void) {
  272. /* update id pi ctrl */
  273. gFoc_Ctrl.params.f_DCLim = gFoc_Ctrl.in.s_vDC;
  274. gFoc_Ctrl.params.maxvDQ.d = gFoc_Ctrl.params.f_DCLim * gFoc_Ctrl.params.n_modulation;//CONFIG_RATED_DC_VOL;
  275. gFoc_Ctrl.params.minvDQ.d = -gFoc_Ctrl.params.f_DCLim * gFoc_Ctrl.params.n_modulation;//CONFIG_RATED_DC_VOL;
  276. gFoc_Ctrl.params.maxvDQ.q = gFoc_Ctrl.params.f_DCLim * gFoc_Ctrl.params.n_modulation;//CONFIG_RATED_DC_VOL;
  277. gFoc_Ctrl.params.minvDQ.q = -gFoc_Ctrl.params.f_DCLim * gFoc_Ctrl.params.n_modulation;//CONFIG_RATED_DC_VOL;
  278. if (gFoc_Ctrl.params.maxvDQ.d != gFoc_Ctrl.pi_id.max) {
  279. gFoc_Ctrl.pi_id.max = gFoc_Ctrl.params.maxvDQ.d;
  280. }
  281. if (gFoc_Ctrl.params.minvDQ.d != gFoc_Ctrl.pi_id.min) {
  282. gFoc_Ctrl.pi_id.min = gFoc_Ctrl.params.minvDQ.d;
  283. }
  284. /* update iq pi ctrl */
  285. if (gFoc_Ctrl.params.maxvDQ.q != gFoc_Ctrl.pi_iq.max) {
  286. gFoc_Ctrl.pi_iq.max = gFoc_Ctrl.params.maxvDQ.q;
  287. }
  288. if (gFoc_Ctrl.params.minvDQ.q != gFoc_Ctrl.pi_iq.min) {
  289. gFoc_Ctrl.pi_iq.min = gFoc_Ctrl.params.minvDQ.q;
  290. }
  291. }
  292. #ifdef CONFIG_DQ_STEP_RESPONSE
  293. float target_d = 0.0f;
  294. float target_q = 0.0f;
  295. #endif
  296. static u32 PMSM_FOC_Debug_Task(void *p) {
  297. if (gFoc_Ctrl.in.b_motEnable) {
  298. #ifdef CONFIG_DQ_STEP_RESPONSE
  299. if (gFoc_Ctrl.plot_type == Plot_D_Step) {
  300. plot_2data16(FtoS16x10(target_d), FtoS16x10(gFoc_Ctrl.out.s_RealIdq.d));
  301. }if (gFoc_Ctrl.plot_type == Plot_Q_Step) {
  302. plot_2data16(FtoS16x10(target_q), FtoS16x10(gFoc_Ctrl.out.s_RealIdq.q));
  303. }
  304. #else
  305. if (gFoc_Ctrl.plot_type == Plot_D_flow) {
  306. plot_2data16(FtoS16x10(gFoc_Ctrl.idq_ctl[0].s_Cp), FtoS16x10(gFoc_Ctrl.out.s_RealIdq.d));
  307. }else if (gFoc_Ctrl.plot_type == Plot_Q_flow) {
  308. plot_2data16(FtoS16x10(gFoc_Ctrl.idq_ctl[1].s_Cp), FtoS16x10(gFoc_Ctrl.out.s_RealIdq.q));
  309. }else if (gFoc_Ctrl.plot_type == Plot_DQ_Curr) {
  310. plot_3data16(FtoS16x10(gFoc_Ctrl.out.s_RealIdq.d), FtoS16x10(gFoc_Ctrl.out.s_RealIdq.q), FtoS16x10(gFoc_Ctrl.out.s_FilteriDC));
  311. }else if (gFoc_Ctrl.plot_type == Plot_Spd_flow) {
  312. plot_2data16(gFoc_Ctrl.in.s_targetRPM, gFoc_Ctrl.in.s_motRPM);
  313. }
  314. #endif
  315. }
  316. return 1;
  317. }
  318. void PMSM_FOC_Schedule(void) {
  319. gFoc_Ctrl.ctrl_count++;
  320. PMSM_FOC_Update_Hardware();
  321. if (gFoc_Ctrl.out.n_RunMode != CTRL_MODE_OPEN) {
  322. PMSM_FOC_Update_PI_Idq();
  323. #ifndef CONFIG_DQ_STEP_RESPONSE
  324. float target_d = FOC_Get_DqRamp(&gFoc_Ctrl.idq_ctl[0]);
  325. #endif
  326. float err = target_d - gFoc_Ctrl.out.s_RealIdq.d;
  327. gFoc_Ctrl.in.s_targetVdq.d = PI_Controller_RunSerial(&gFoc_Ctrl.pi_id, err);
  328. #ifndef CONFIG_DQ_STEP_RESPONSE
  329. float target_q = FOC_Get_DqRamp(&gFoc_Ctrl.idq_ctl[1]);
  330. #endif
  331. err = target_q - gFoc_Ctrl.out.s_RealIdq.q;
  332. gFoc_Ctrl.in.s_targetVdq.q = PI_Controller_RunSerial(&gFoc_Ctrl.pi_iq, err);
  333. #if 0
  334. float eW = gFoc_Ctrl.in.s_motRPM * PI/ 30.0f * gFoc_Ctrl.params.n_poles; //电角速度
  335. float ff_d = -eW * MOTOR_Lq * gFoc_Ctrl.out.s_RealIdq.q;
  336. gFoc_Ctrl.in.s_targetVdq.d += fclamp(ff_d, -10.0f, 0);
  337. #endif
  338. }else {
  339. gFoc_Ctrl.in.s_targetVdq.d = FOC_Get_DqRamp(&gFoc_Ctrl.vdq_ctl[0]);
  340. gFoc_Ctrl.in.s_targetVdq.q = FOC_Get_DqRamp(&gFoc_Ctrl.vdq_ctl[1]);
  341. }
  342. gFoc_Ctrl.out.f_vdqRation = Circle_Limitation(&gFoc_Ctrl.in.s_targetVdq, gFoc_Ctrl.in.s_vDC, gFoc_Ctrl.params.n_modulation, &gFoc_Ctrl.out.s_OutVdq);
  343. gFoc_Ctrl.out.s_OutVdq.d *= SQRT3_BY_2;
  344. gFoc_Ctrl.out.s_OutVdq.q *= SQRT3_BY_2;
  345. RevPark(&gFoc_Ctrl.out.s_OutVdq, gFoc_Ctrl.in.s_motAngle, &gFoc_Ctrl.out.s_OutVAB);
  346. SVM_Duty_Fix(&gFoc_Ctrl.out.s_OutVAB, gFoc_Ctrl.in.s_vDC, FOC_PWM_Half_Period, &gFoc_Ctrl.out);
  347. phase_current_point(&gFoc_Ctrl.out);
  348. pwm_update_duty(gFoc_Ctrl.out.n_Duty[0], gFoc_Ctrl.out.n_Duty[1], gFoc_Ctrl.out.n_Duty[2]);
  349. pwm_update_sample(gFoc_Ctrl.out.n_Sample1, gFoc_Ctrl.out.n_Sample2, gFoc_Ctrl.out.n_CPhases);
  350. LowPass_Filter(gFoc_Ctrl.out.s_FilterIdq.d, gFoc_Ctrl.out.s_RealIdq.d, 0.004f);
  351. LowPass_Filter(gFoc_Ctrl.out.s_FilterIdq.q, gFoc_Ctrl.out.s_RealIdq.q, 0.004f);
  352. if (gFoc_Ctrl.plot_type != Plot_None) {
  353. if (gFoc_Ctrl.ctrl_count % 5 == 0) {
  354. if (gFoc_Ctrl.plot_type == Plot_Phase_curr) {
  355. plot_3data16(FtoS16(gFoc_Ctrl.in.s_iABC[0]), FtoS16(gFoc_Ctrl.in.s_iABC[1]), FtoS16(gFoc_Ctrl.in.s_iABC[2]));
  356. }else if (gFoc_Ctrl.plot_type == Plot_Phase_vol) {
  357. plot_3data16(FtoS16(gFoc_Ctrl.in.s_vABC[0]), FtoS16(gFoc_Ctrl.in.s_vABC[1]), FtoS16(gFoc_Ctrl.in.s_vABC[2]));
  358. }else if (gFoc_Ctrl.plot_type == Plot_SMO_OBS) {
  359. #ifdef CONFIG_SMO_OBSERVER
  360. float smo_angle = foc_observer_smo_angle();
  361. float delta = smo_angle - gFoc_Ctrl.in.s_hallAngle;
  362. if (delta > 180) {
  363. delta -= 360;
  364. }else if (delta < -180) {
  365. delta += 360;
  366. }
  367. plot_3data16(gFoc_Ctrl.in.s_hallAngle, smo_angle, delta);
  368. #endif
  369. }
  370. }
  371. }
  372. }
  373. void PMSM_FOC_LogDebug(void) {
  374. sys_debug("DC curr %f\n", gFoc_Ctrl.out.s_CalciDC);
  375. }
  376. /*called in media task */
  377. u8 PMSM_FOC_CtrlMode(void) {
  378. u8 preMode = gFoc_Ctrl.out.n_RunMode;
  379. if (gFoc_Ctrl.in.b_cruiseEna && gFoc_Ctrl.in.s_motRPM < CONFIG_MIN_CRUISE_RPM) {
  380. gFoc_Ctrl.in.b_cruiseEna = false;
  381. }
  382. if (!gFoc_Ctrl.in.b_motEnable) {
  383. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_OPEN;
  384. }else if (gFoc_Ctrl.in.n_ctlMode == CTRL_MODE_OPEN) {
  385. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_OPEN;
  386. }else if (gFoc_Ctrl.in.n_ctlMode == CTRL_MODE_SPD || gFoc_Ctrl.in.b_cruiseEna){
  387. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_SPD;
  388. }else if (gFoc_Ctrl.in.n_ctlMode == CTRL_MODE_CURRENT) {
  389. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_CURRENT;
  390. }else if (gFoc_Ctrl.in.n_ctlMode == CTRL_MODE_EBRAKE) {
  391. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_EBRAKE;
  392. }else {
  393. if (!gFoc_Ctrl.in.b_cruiseEna) {
  394. gFoc_Ctrl.out.n_RunMode = CTRL_MODE_TRQ;
  395. }
  396. }
  397. if (preMode != gFoc_Ctrl.out.n_RunMode) {
  398. if ((preMode == CTRL_MODE_SPD) && (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_TRQ)) {
  399. #ifdef CONFIG_SPEED_LADRC
  400. //ladrc_reset(&gFoc_Ctrl.vel_lim_adrc, gFoc_Ctrl.in.s_motRPM, gFoc_Ctrl.in.s_targetTorque);
  401. ladrc_copy(&gFoc_Ctrl.vel_lim_adrc, &gFoc_Ctrl.vel_adrc);
  402. #else
  403. PI_Controller_Reset(&gFoc_Ctrl.pi_torque, gFoc_Ctrl.in.s_targetTorque);
  404. #endif
  405. }else if ((preMode == CTRL_MODE_TRQ) && (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_SPD)) {
  406. #ifdef CONFIG_SPEED_LADRC
  407. //ladrc_reset(&gFoc_Ctrl.vel_adrc, gFoc_Ctrl.in.s_motRPM, gFoc_Ctrl.in.s_targetTorque);
  408. ladrc_copy(&gFoc_Ctrl.vel_adrc, &gFoc_Ctrl.vel_lim_adrc);
  409. #else
  410. float target_troque = gFoc_Ctrl.in.s_targetTorque;
  411. if (gFoc_Ctrl.pi_id->is_sat || gFoc_Ctrl.pi_iq->is_sat) {
  412. target_troque = PMSM_FOC_Get_Real_Torque();
  413. }
  414. PI_Controller_Reset(&gFoc_Ctrl.pi_speed, target_troque);
  415. #endif
  416. }else if ((preMode == CTRL_MODE_CURRENT) && (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_TRQ)) {
  417. #ifdef CONFIG_SPEED_LADRC
  418. ladrc_reset(&gFoc_Ctrl.vel_lim_adrc, gFoc_Ctrl.in.s_motRPM, gFoc_Ctrl.in.s_targetTorque);
  419. #else
  420. PI_Controller_Reset(&gFoc_Ctrl.pi_torque, gFoc_Ctrl.in.s_targetTorque);
  421. #endif
  422. }else if ((preMode == CTRL_MODE_TRQ) && (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_EBRAKE)) {
  423. float real_trq = PMSM_FOC_Get_Real_Torque() * 0.9f;
  424. eCtrl_reset_Current(min(real_trq, gFoc_Ctrl.in.s_targetTorque));
  425. eCtrl_set_TgtCurrent(-PMSM_FOC_GeteBrkPhaseCurrent());
  426. }
  427. }
  428. return gFoc_Ctrl.out.n_RunMode;
  429. }
  430. static void crosszero_step_towards(float *value, float target) {
  431. float v_now = *value;
  432. bool cross_zero = false;
  433. if (target > 0) {
  434. if (v_now >= -CONFIG_RAMP_SECOND_TARGET && v_now <= CONFIG_RAMP_SECOND_TARGET*1.5f) {
  435. step_towards(value, target, 0.05f);
  436. cross_zero = true;
  437. }
  438. }else if (target == 0) {
  439. if (v_now >= 0 && v_now <= CONFIG_RAMP_SECOND_TARGET) {
  440. step_towards(value, target, 0.05f);
  441. cross_zero = true;
  442. }
  443. }else {
  444. if (v_now >= -CONFIG_RAMP_SECOND_TARGET && v_now <= CONFIG_RAMP_SECOND_TARGET*1.5f) {
  445. step_towards(value, target, 0.02f);
  446. cross_zero = true;
  447. }
  448. }
  449. if (!cross_zero) {
  450. *value = target;
  451. }
  452. }
  453. /* MPTA, 弱磁, 功率限制,主要是分配DQ轴电流 */
  454. static __INLINE void PMSM_FOC_FieldWeak(void) {
  455. if (!gFoc_Ctrl.in.b_fwEnable) {
  456. return;
  457. }
  458. }
  459. static __INLINE float PMSM_FOC_Limit_iDC(float maxTrq) {
  460. #if 1
  461. gFoc_Ctrl.pi_power.max = maxTrq;
  462. float errRef = eRamp_get_intepolation(&gFoc_Ctrl.rtLim.DCCurrLimRamp) - (gFoc_Ctrl.out.s_FilteriDC);
  463. return PI_Controller_Run(&gFoc_Ctrl.pi_power, errRef);
  464. #else
  465. return maxTrq;
  466. #endif
  467. }
  468. static __INLINE float PMSM_FOC_Limit_Speed(float maxTrq) {
  469. #ifdef CONFIG_SPEED_LADRC
  470. float lim = eRamp_get_intepolation(&gFoc_Ctrl.rtLim.rpmLimRamp);
  471. ladrc_set_range(&gFoc_Ctrl.vel_lim_adrc, 0, maxTrq);
  472. return ladrc_run(&gFoc_Ctrl.vel_lim_adrc, lim, gFoc_Ctrl.in.s_motRPM);
  473. #else
  474. #if 1
  475. gFoc_Ctrl.pi_torque->max = maxTrq;
  476. gFoc_Ctrl.pi_torque->min = 0;
  477. float err = eRamp_get_intepolation(&gFoc_Ctrl.rtLim.rpmLimRamp) - gFoc_Ctrl.in.s_motRPM;
  478. return PI_Controller_RunLimit(&gFoc_Ctrl.pi_torque, err);
  479. #else
  480. return maxTrq;
  481. #endif
  482. #endif
  483. }
  484. static __INLINE void PMSM_FOC_idq_Assign(void) {
  485. if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_CURRENT || gFoc_Ctrl.out.n_RunMode == CTRL_MODE_EBRAKE) {
  486. if (gFoc_Ctrl.in.b_MTPA_calibrate && (gFoc_Ctrl.in.s_manualAngle != INVALID_ANGLE)) {
  487. float s, c;
  488. normal_sincosf(degree_2_pi(gFoc_Ctrl.in.s_manualAngle + 90.0f), &s, &c);
  489. gFoc_Ctrl.in.s_targetIdq.d = gFoc_Ctrl.in.s_targetCurrent * c;
  490. if (gFoc_Ctrl.in.s_targetIdq.d > gFoc_Ctrl.hwLim.s_FWDCurrMax) {
  491. gFoc_Ctrl.in.s_targetIdq.d = gFoc_Ctrl.hwLim.s_FWDCurrMax;
  492. }else if (gFoc_Ctrl.in.s_targetIdq.d < -gFoc_Ctrl.hwLim.s_FWDCurrMax) {
  493. gFoc_Ctrl.in.s_targetIdq.d = -gFoc_Ctrl.hwLim.s_FWDCurrMax;
  494. }
  495. gFoc_Ctrl.in.s_targetIdq.q = sqrtf(SQ(gFoc_Ctrl.in.s_targetCurrent) - SQ(gFoc_Ctrl.in.s_targetIdq.d));
  496. }else {
  497. gFoc_Ctrl.in.s_targetIdq.d = 0;
  498. gFoc_Ctrl.in.s_targetIdq.q = gFoc_Ctrl.in.s_targetCurrent;
  499. }
  500. }else if ((gFoc_Ctrl.out.n_RunMode == CTRL_MODE_TRQ) || (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_SPD)) {
  501. trq2dq_lookup((int)gFoc_Ctrl.in.s_motRPM, gFoc_Ctrl.in.s_targetTorque, &gFoc_Ctrl.in.s_targetIdq);
  502. PMSM_FOC_FieldWeak();
  503. }
  504. u32 mask = cpu_enter_critical();
  505. FOC_Set_iDqRamp(&gFoc_Ctrl.idq_ctl[0], gFoc_Ctrl.in.s_targetIdq.d);
  506. FOC_Set_iDqRamp(&gFoc_Ctrl.idq_ctl[1], gFoc_Ctrl.in.s_targetIdq.q);
  507. cpu_exit_critical(mask);
  508. }
  509. /*called in media task */
  510. void PMSM_FOC_idqCalc(void) {
  511. if (gFoc_Ctrl.in.b_AutoHold) {
  512. gFoc_Ctrl.pi_lock.max = CONFIG_DEFAULT_LOCK_TORQUE_LIM;
  513. gFoc_Ctrl.pi_lock.min = -CONFIG_DEFAULT_LOCK_TORQUE_LIM;
  514. float vel_count = motor_encoder_get_vel_count();
  515. float errRef = 0 - vel_count;
  516. gFoc_Ctrl.in.s_targetTorque = PI_Controller_Run(&gFoc_Ctrl.pi_lock ,errRef);
  517. PMSM_FOC_idq_Assign();
  518. return;
  519. }
  520. if ((gFoc_Ctrl.out.n_RunMode == CTRL_MODE_CURRENT) || (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_EBRAKE)) {
  521. gFoc_Ctrl.in.s_targetCurrent = eCtrl_get_RefCurrent();
  522. if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_EBRAKE) {
  523. if (eCtrl_get_FinalCurrent() < 0.0001f && gFoc_Ctrl.in.s_motRPM < CONFIG_MIN_RPM_EXIT_EBRAKE) {
  524. gFoc_Ctrl.in.s_targetCurrent = 0;
  525. }
  526. }
  527. }else if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_TRQ) {
  528. float refTorque = min(eCtrl_get_RefTorque(), eRamp_get_intepolation(&gFoc_Ctrl.rtLim.torqueLimRamp));
  529. float maxTrq = PMSM_FOC_Limit_Speed(refTorque);
  530. maxTrq = PMSM_FOC_Limit_iDC(maxTrq);
  531. crosszero_step_towards(&gFoc_Ctrl.in.s_targetTorque, maxTrq);
  532. }else if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_SPD){
  533. float maxSpeed = eCtrl_get_FinalSpeed();
  534. float refSpeed = eCtrl_get_RefSpeed();
  535. if (gFoc_Ctrl.in.b_cruiseEna) {
  536. maxSpeed = eRamp_get_target(&gFoc_Ctrl.in.cruiseRpmRamp);
  537. refSpeed = eRamp_get_intepolation(&gFoc_Ctrl.in.cruiseRpmRamp);//gFoc_Ctrl.in.s_cruiseRPM;
  538. }
  539. #ifdef CONFIG_SPEED_LADRC
  540. if (maxSpeed >= 0) {
  541. ladrc_set_range(&gFoc_Ctrl.vel_adrc, -CONFIG_MAX_NEG_TORQUE, eRamp_get_intepolation(&gFoc_Ctrl.rtLim.torqueLimRamp));
  542. }else if (maxSpeed < 0) {
  543. ladrc_set_range(&gFoc_Ctrl.vel_adrc, -eRamp_get_intepolation(&gFoc_Ctrl.rtLim.torqueLimRamp), CONFIG_MAX_NEG_TORQUE);
  544. }
  545. if ((maxSpeed == 0) && (gFoc_Ctrl.in.s_motRPM < CONFIG_MIN_RPM_EXIT_EBRAKE)) {
  546. ladrc_set_range(&gFoc_Ctrl.vel_adrc, 0, 0);
  547. }
  548. gFoc_Ctrl.in.s_targetRPM = refSpeed;
  549. float maxTrq = ladrc_run(&gFoc_Ctrl.vel_adrc, refSpeed, gFoc_Ctrl.in.s_motRPM);
  550. #else
  551. if (maxSpeed >= 0) {
  552. gFoc_Ctrl.pi_speed->max = eRamp_get_intepolation(&gFoc_Ctrl.rtLim.torqueLimRamp);//gFoc_Ctrl.userLim.s_PhaseCurrLim;
  553. gFoc_Ctrl.pi_speed->min = -CONFIG_MAX_NEG_TORQUE;
  554. }else if (maxSpeed < 0) {
  555. gFoc_Ctrl.pi_speed->min = -eRamp_get_intepolation(&gFoc_Ctrl.rtLim.torqueLimRamp);//gFoc_Ctrl.userLim.s_PhaseCurrLim;
  556. gFoc_Ctrl.pi_speed->max = CONFIG_MAX_NEG_TORQUE;
  557. }
  558. if ((maxSpeed == 0) && (gFoc_Ctrl.in.s_motRPM < CONFIG_MIN_RPM_EXIT_EBRAKE)) {
  559. gFoc_Ctrl.pi_speed->max = 0;
  560. gFoc_Ctrl.pi_speed->min = 0; //防止倒转
  561. }
  562. gFoc_Ctrl.in.s_targetRPM = refSpeed;
  563. float errRef = refSpeed - gFoc_Ctrl.in.s_motRPM;
  564. float maxTrq = PI_Controller_Run(&gFoc_Ctrl.pi_speed, errRef);
  565. #endif
  566. gFoc_Ctrl.in.s_targetTorque = PMSM_FOC_Limit_iDC(maxTrq);
  567. }
  568. PMSM_FOC_idq_Assign();
  569. }
  570. bool PMSM_FOC_RunTime_Limit(void) {
  571. bool changed = false;
  572. float dc_lim = (float)vbus_current_vol_lower_limit();
  573. float torque_lim = (float)torque_temp_high_limit();
  574. if (gFoc_Ctrl.protLim.s_iDCLim != dc_lim || gFoc_Ctrl.protLim.s_TorqueLim != torque_lim) {
  575. gFoc_Ctrl.protLim.s_iDCLim = dc_lim;
  576. gFoc_Ctrl.protLim.s_TorqueLim = torque_lim;
  577. changed = true;
  578. }
  579. return changed;
  580. }
  581. bool PMSM_FOC_iDC_is_Limited(void) {
  582. return (gFoc_Ctrl.protLim.s_iDCLim != HW_LIMIT_NONE);
  583. }
  584. bool PMSM_FOC_Torque_is_Limited(void) {
  585. return (gFoc_Ctrl.protLim.s_TorqueLim != HW_LIMIT_NONE);
  586. }
  587. void PMSM_FOC_Slow_Task(void) {
  588. eRamp_running(&gFoc_Ctrl.rtLim.torqueLimRamp);
  589. eRamp_running(&gFoc_Ctrl.rtLim.DCCurrLimRamp);
  590. eRamp_running(&gFoc_Ctrl.rtLim.rpmLimRamp);
  591. eRamp_running(&gFoc_Ctrl.in.cruiseRpmRamp);
  592. PMSM_FOC_idqCalc();
  593. }
  594. float PMSM_FOC_Get_Real_Torque(void) {
  595. if (gFoc_Ctrl.out.s_RealCurrentFiltered == 0) {
  596. gFoc_Ctrl.out.s_RealCurrentFiltered = sqrtf(SQ(gFoc_Ctrl.out.s_FilterIdq.d) + SQ(gFoc_Ctrl.out.s_FilterIdq.q));
  597. }
  598. return gFoc_Ctrl.out.s_RealCurrentFiltered;
  599. }
  600. PMSM_FOC_Ctrl *PMSM_FOC_Get(void) {
  601. return &gFoc_Ctrl;
  602. }
  603. void PMSM_FOC_Start(u8 nCtrlMode) {
  604. if (gFoc_Ctrl.in.b_motEnable) {
  605. return;
  606. }
  607. PMSM_FOC_CoreInit();
  608. eCtrl_Reset();
  609. gFoc_Ctrl.in.n_ctlMode = nCtrlMode;
  610. gFoc_Ctrl.in.b_motEnable = true;
  611. }
  612. void PMSM_FOC_Stop(void) {
  613. if (!gFoc_Ctrl.in.b_motEnable) {
  614. return;
  615. }
  616. PMSM_FOC_CoreInit();
  617. gFoc_Ctrl.in.b_motEnable = false;
  618. }
  619. bool PMSM_FOC_Is_Start(void) {
  620. return gFoc_Ctrl.in.b_motEnable;
  621. }
  622. void PMSM_FOC_DCCurrLimit(float ibusLimit) {
  623. if (ibusLimit > gFoc_Ctrl.hwLim.s_iDCMax) {
  624. ibusLimit = gFoc_Ctrl.hwLim.s_iDCMax;
  625. }
  626. if (gFoc_Ctrl.protLim.s_iDCLim != HW_LIMIT_NONE) {
  627. ibusLimit = min(ibusLimit, gFoc_Ctrl.protLim.s_iDCLim);
  628. }
  629. gFoc_Ctrl.userLim.s_iDCLim = ibusLimit;
  630. if (ABS(gFoc_Ctrl.in.s_motRPM) <= CONFIG_ZERO_SPEED_RPM){
  631. eRamp_reset_target(&gFoc_Ctrl.rtLim.DCCurrLimRamp, ibusLimit);
  632. }else {
  633. eRamp_set_step_target(&gFoc_Ctrl.rtLim.DCCurrLimRamp, ibusLimit, CONFIG_eCTRL_STEP_TS);
  634. }
  635. }
  636. float PMSM_FOC_GetDCCurrLimit(void) {
  637. return gFoc_Ctrl.userLim.s_iDCLim;
  638. }
  639. void PMSM_FOC_SpeedRampLimit(float speedLimit, float speed) {
  640. if (speedLimit > gFoc_Ctrl.hwLim.s_motRPMMax) {
  641. speedLimit = gFoc_Ctrl.hwLim.s_motRPMMax;
  642. }
  643. gFoc_Ctrl.userLim.s_motRPMLim = (speedLimit);
  644. if (ABS(speed) <= CONFIG_ZERO_SPEED_RPM) {
  645. eRamp_reset_target(&gFoc_Ctrl.rtLim.rpmLimRamp, speedLimit);
  646. }else {
  647. eRamp_set_step_target(&gFoc_Ctrl.rtLim.rpmLimRamp, speedLimit, CONFIG_eCTRL_STEP_TS);
  648. }
  649. }
  650. void PMSM_FOC_SpeedLimit(float speedLimit) {
  651. PMSM_FOC_SpeedRampLimit(speedLimit, gFoc_Ctrl.in.s_motRPM);
  652. }
  653. void PMSM_FOC_SpeedDirectLimit(float limit) {
  654. PMSM_FOC_SpeedRampLimit(limit, 0);
  655. }
  656. float PMSM_FOC_GetSpeedLimit(void) {
  657. return gFoc_Ctrl.userLim.s_motRPMLim;
  658. }
  659. void PMSM_FOC_TorqueLimit(float torqueLimit) {
  660. if (torqueLimit > gFoc_Ctrl.hwLim.s_torqueMax) {
  661. torqueLimit = gFoc_Ctrl.hwLim.s_torqueMax;
  662. }
  663. if (gFoc_Ctrl.protLim.s_TorqueLim != HW_LIMIT_NONE) {
  664. torqueLimit = min(torqueLimit, gFoc_Ctrl.protLim.s_TorqueLim);
  665. }
  666. gFoc_Ctrl.userLim.s_torqueLim = torqueLimit;
  667. if (ABS(gFoc_Ctrl.in.s_motRPM) <= CONFIG_ZERO_SPEED_RPM){
  668. eRamp_reset_target(&gFoc_Ctrl.rtLim.torqueLimRamp, torqueLimit);
  669. }else {
  670. eRamp_set_step_target(&gFoc_Ctrl.rtLim.torqueLimRamp, torqueLimit, CONFIG_eCTRL_STEP_TS);
  671. }
  672. }
  673. float PMSM_FOC_GetTorqueLimit(void) {
  674. return gFoc_Ctrl.userLim.s_torqueLim;
  675. }
  676. void PMSM_FOC_SeteBrkPhaseCurrent(float phase_curr, float dc_curr) {
  677. gFoc_Ctrl.userLim.s_PhaseCurreBrkLim = fclamp(phase_curr, 0, nv_get_foc_params()->s_PhaseCurreBrkLim);
  678. gFoc_Ctrl.userLim.s_iDCeBrkLim = fclamp(dc_curr, 0, nv_get_foc_params()->s_iDCeBrkLim);
  679. }
  680. float PMSM_FOC_GeteBrkPhaseCurrent(void) {
  681. return gFoc_Ctrl.userLim.s_PhaseCurreBrkLim ;
  682. }
  683. float PMSM_FOC_GetVbusVoltage(void) {
  684. return gFoc_Ctrl.in.s_vDC;
  685. }
  686. float PMSM_FOC_GetVbusCurrent(void) {
  687. return gFoc_Ctrl.out.s_FilteriDC;
  688. }
  689. DQ_t* PMSM_FOC_GetDQCurrent(void) {
  690. return &gFoc_Ctrl.out.s_RealIdq;
  691. }
  692. bool PMSM_FOC_SetCtrlMode(u8 mode) {
  693. if (mode > CTRL_MODE_EBRAKE) {
  694. PMSM_FOC_SetErrCode(FOC_Param_Err);
  695. return false;
  696. }
  697. gFoc_Ctrl.in.n_ctlMode = mode;
  698. return true;
  699. }
  700. u8 PMSM_FOC_GetCtrlMode(void) {
  701. return gFoc_Ctrl.in.n_ctlMode;
  702. }
  703. void PMSM_FOC_PhaseCurrLim(float lim) {
  704. if (lim > gFoc_Ctrl.hwLim.s_PhaseCurrMax) {
  705. lim = gFoc_Ctrl.hwLim.s_PhaseCurrMax;
  706. }
  707. gFoc_Ctrl.userLim.s_PhaseCurrLim = lim;
  708. }
  709. void PMSM_FOC_RT_PhaseCurrLim(float lim) {
  710. if (lim > gFoc_Ctrl.hwLim.s_PhaseCurrMax) {
  711. lim = gFoc_Ctrl.hwLim.s_PhaseCurrMax;
  712. }
  713. eRamp_init_target(&gFoc_Ctrl.rtLim.torqueLimRamp, lim, CONFIG_LIMIT_RAMP_TIME, CONFIG_LIMIT_RAMP_TIME);
  714. }
  715. float PMSM_FOC_GetPhaseCurrLim(void) {
  716. return gFoc_Ctrl.userLim.s_PhaseCurrLim;
  717. }
  718. void PMSM_FOC_SetOpenVdq(float vd, float vq) {
  719. FOC_Set_vDqRamp(&gFoc_Ctrl.vdq_ctl[0], vd);
  720. FOC_Set_vDqRamp(&gFoc_Ctrl.vdq_ctl[1], vq);
  721. }
  722. bool PMSM_FOC_EnableCruise(bool enable) {
  723. if (enable != gFoc_Ctrl.in.b_cruiseEna) {
  724. float motSpd = PMSM_FOC_GetSpeed();
  725. if (enable && (motSpd < CONFIG_MIN_CRUISE_RPM)) { //
  726. PMSM_FOC_SetErrCode(FOC_NowAllowed_With_Speed);
  727. return false;
  728. }
  729. eRamp_init_target(&gFoc_Ctrl.in.cruiseRpmRamp, motSpd, CONFIG_ACC_TIME, CONFIG_DEC_TIME);
  730. gFoc_Ctrl.in.s_cruiseRPM = motSpd;
  731. gFoc_Ctrl.in.b_cruiseEna = enable;
  732. }
  733. return true;
  734. }
  735. bool PMSM_FOC_Is_CruiseEnabled(void) {
  736. return (gFoc_Ctrl.in.b_cruiseEna && (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_SPD));
  737. }
  738. bool PMSM_FOC_Set_Speed(float rpm) {
  739. if (gFoc_Ctrl.in.b_cruiseEna) {
  740. return false;
  741. }
  742. eCtrl_set_TgtSpeed(min(ABS(rpm), gFoc_Ctrl.userLim.s_motRPMLim)*SIGN(rpm));
  743. return true;
  744. }
  745. #if 0
  746. bool PMSM_FOC_Set_epmMode(bool epm) {
  747. if (epm && !gFoc_Ctrl.in.b_motEnable) {
  748. PMSM_FOC_SetErrCode(FOC_NotAllowed);
  749. return false;
  750. }
  751. if (gFoc_Ctrl.in.b_epmMode != epm) {
  752. if (PMSM_FOC_GetSpeed() != 0.0f) {
  753. PMSM_FOC_SetErrCode(FOC_NowAllowed_With_Speed);
  754. return false;
  755. }
  756. gFoc_Ctrl.in.epmDirection = EPM_Dir_None;
  757. gFoc_Ctrl.in.b_epmMode = epm;
  758. if (epm) {
  759. PMSM_FOC_SpeedLimit(nv_get_foc_params()->s_maxEpmRPM);
  760. eCtrl_set_TgtSpeed(0);
  761. PMSM_FOC_SetCtrlMode(CTRL_MODE_SPD);
  762. }else {
  763. PMSM_FOC_SetCtrlMode(CTRL_MODE_TRQ);
  764. PMSM_FOC_SpeedLimit(nv_get_foc_params()->s_maxRPM);
  765. }
  766. }
  767. return true;
  768. }
  769. bool PMSM_FOC_Start_epmMove(bool move, EPM_Dir_t dir) {
  770. if (!gFoc_Ctrl.in.b_epmMode) {
  771. return false;
  772. }
  773. if (move) {
  774. if (gFoc_Ctrl.in.epmDirection != EPM_Dir_None) {
  775. return false;
  776. }
  777. gFoc_Ctrl.in.epmDirection = dir;
  778. }else {
  779. gFoc_Ctrl.in.epmDirection = EPM_Dir_None;
  780. }
  781. return true;
  782. }
  783. EPM_Dir_t PMSM_FOC_Get_epmDir(void) {
  784. return gFoc_Ctrl.in.epmDirection;
  785. }
  786. #endif
  787. bool PMSM_FOC_Set_Current(float is) {
  788. if (is > gFoc_Ctrl.userLim.s_PhaseCurrLim) {
  789. is = gFoc_Ctrl.userLim.s_PhaseCurrLim;
  790. }else if (is < -gFoc_Ctrl.userLim.s_PhaseCurrLim) {
  791. is = -gFoc_Ctrl.userLim.s_PhaseCurrLim;
  792. }
  793. eCtrl_set_TgtCurrent(is);
  794. return true;
  795. }
  796. bool PMSM_FOC_Set_Torque(float trq) {
  797. if (trq > gFoc_Ctrl.userLim.s_torqueLim) {
  798. trq = gFoc_Ctrl.userLim.s_torqueLim;
  799. }else if (trq < -gFoc_Ctrl.userLim.s_torqueLim) {
  800. trq = -gFoc_Ctrl.userLim.s_torqueLim;
  801. }
  802. eCtrl_set_TgtTorque(trq);
  803. return true;
  804. }
  805. void PMSM_FOC_Reset_Torque(void) {
  806. float real_trq = PMSM_FOC_Get_Real_Torque();
  807. eCtrl_reset_Torque(real_trq);
  808. }
  809. bool PMSM_FOC_Set_CruiseSpeed(float rpm) {
  810. if (PMSM_FOC_Is_CruiseEnabled()) {
  811. if (rpm < CONFIG_MIN_CRUISE_RPM) {
  812. PMSM_FOC_SetErrCode(FOC_NowAllowed_With_Speed);
  813. return false;
  814. }
  815. gFoc_Ctrl.in.s_cruiseRPM = min(ABS(rpm), gFoc_Ctrl.userLim.s_motRPMLim)*SIGN(rpm);
  816. eRamp_set_step_target(&gFoc_Ctrl.in.cruiseRpmRamp, gFoc_Ctrl.in.s_cruiseRPM, CONFIG_eCTRL_STEP_TS);
  817. return true;
  818. }
  819. PMSM_FOC_SetErrCode(FOC_NotCruiseMode);
  820. return false;
  821. }
  822. void PMSM_FOC_MTPA_Calibrate(bool enable) {
  823. if (enable) {
  824. gFoc_Ctrl.in.b_MTPA_calibrate = true;
  825. gFoc_Ctrl.in.s_manualAngle = 0;
  826. eCtrl_set_ebrk_time(CONFIG_MTPA_CALI_RAMP_TIME);
  827. }else {
  828. gFoc_Ctrl.in.s_manualAngle = INVALID_ANGLE;
  829. gFoc_Ctrl.in.b_MTPA_calibrate = false;
  830. }
  831. }
  832. void PMSM_FOC_Set_Angle(float angle) {
  833. gFoc_Ctrl.in.s_manualAngle = (angle);
  834. }
  835. void PMSM_FOC_Get_TgtIDQ(DQ_t * dq) {
  836. dq->d = gFoc_Ctrl.in.s_targetIdq.d;
  837. dq->q = gFoc_Ctrl.in.s_targetIdq.q;
  838. }
  839. float PMSM_FOC_GetSpeed(void) {
  840. return gFoc_Ctrl.in.s_motRPM;
  841. }
  842. void PMSM_FOC_AutoHold(bool lock) {
  843. if (gFoc_Ctrl.in.b_AutoHold != lock) {
  844. motor_encoder_lock_pos(lock);
  845. PI_Controller_Reset(&gFoc_Ctrl.pi_lock, 0);
  846. if (!lock) {
  847. //解锁后为了防止倒溜,需要把当前
  848. if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_TRQ) {
  849. #ifdef CONFIG_SPEED_LADRC
  850. ladrc_reset(&gFoc_Ctrl.vel_lim_adrc, 0, gFoc_Ctrl.in.s_targetTorque);
  851. #else
  852. PI_Controller_Reset(&gFoc_Ctrl.pi_torque, gFoc_Ctrl.in.s_targetTorque);
  853. #endif
  854. }else if (gFoc_Ctrl.out.n_RunMode == CTRL_MODE_SPD) {
  855. #ifdef CONFIG_SPEED_LADRC
  856. ladrc_reset(&gFoc_Ctrl.vel_adrc, 0, gFoc_Ctrl.in.s_targetTorque);
  857. #else
  858. PI_Controller_Reset(&gFoc_Ctrl.pi_speed, gFoc_Ctrl.in.s_targetTorque);
  859. #endif
  860. }
  861. eCtrl_reset_Torque(gFoc_Ctrl.in.s_targetTorque);
  862. }
  863. gFoc_Ctrl.in.b_AutoHold = lock;
  864. }
  865. }
  866. bool PMSM_FOC_AutoHoldding(void) {
  867. return gFoc_Ctrl.in.b_AutoHold;
  868. }
  869. static PI_Controller *_pid(u8 id) {
  870. PI_Controller *pi = NULL;
  871. if (id == PID_D_id) {
  872. pi = &gFoc_Ctrl.pi_id;
  873. }else if (id == PID_Q_id) {
  874. pi = &gFoc_Ctrl.pi_iq;
  875. }else if (id == PID_TRQ_id) {
  876. #ifndef CONFIG_SPEED_LADRC
  877. pi = &gFoc_Ctrl.pi_torque;
  878. #endif
  879. }else if (id == PID_Spd_id) {
  880. #ifndef CONFIG_SPEED_LADRC
  881. pi = &gFoc_Ctrl.pi_speed;
  882. #endif
  883. }
  884. return pi;
  885. }
  886. void PMSM_FOC_SetPid(u8 id, float kp, float ki, float kd) {
  887. if (id > PID_Max_id) {
  888. return;
  889. }
  890. PI_Controller *pi = _pid(id);
  891. if (pi != NULL) {
  892. pi->kp = kp;
  893. pi->ki = ki;
  894. pi->kd = kd;
  895. }
  896. }
  897. void PMSM_FOC_GetPid(u8 id, float *kp, float *ki, float *kd) {
  898. if (id > PID_Max_id) {
  899. return;
  900. }
  901. PI_Controller *pi = _pid(id);
  902. if (pi != NULL) {
  903. *kp = pi->kp;
  904. *ki = pi->ki;
  905. *kd = pi->kd;
  906. }
  907. }
  908. void PMSM_FOC_SetErrCode(u8 error) {
  909. if (gFoc_Ctrl.out.n_Error != error) {
  910. gFoc_Ctrl.out.n_Error = error;
  911. }
  912. }
  913. u8 PMSM_FOC_GetErrCode(void) {
  914. return gFoc_Ctrl.out.n_Error;
  915. }
  916. void PMSM_FOC_SetCriticalError(u8 err) {
  917. gFoc_Ctrl.out.n_CritiCalErrMask |= (1u << err);
  918. }
  919. void PMSM_FOC_ClrCriticalError(u8 err) {
  920. gFoc_Ctrl.out.n_CritiCalErrMask &= ~(1u << err);
  921. }
  922. u32 PMSM_FOC_GetCriticalError(void) {
  923. return gFoc_Ctrl.out.n_CritiCalErrMask;
  924. }
  925. void PMSM_FOC_Set_PlotType(Plot_t t) {
  926. gFoc_Ctrl.plot_type = t;
  927. }
  928. //获取母线电流和实际输出电流矢量大小
  929. void PMSM_FOC_Calc_Current(void) {
  930. float vd = gFoc_Ctrl.out.s_OutVdq.d;
  931. float vq = gFoc_Ctrl.out.s_OutVdq.q;
  932. float id = gFoc_Ctrl.out.s_FilterIdq.d;
  933. float iq = gFoc_Ctrl.out.s_FilterIdq.q;
  934. /*
  935. 根据公式(等幅值变换,功率不等):
  936. iDC x vDC = 2/3(iq x vq + id x vd);
  937. */
  938. float m_pow = (vd * id + vq * iq); //s32q10
  939. float raw_idc = m_pow / get_vbus_float();// * 1.5f * 0.66f; //s16q5
  940. LowPass_Filter(gFoc_Ctrl.out.s_CalciDC, raw_idc, 0.1f);
  941. raw_idc = get_vbus_current();
  942. LowPass_Filter(gFoc_Ctrl.out.s_FilteriDC, raw_idc, 0.1f);
  943. gFoc_Ctrl.out.s_RealCurrentFiltered = sqrtf(SQ(gFoc_Ctrl.out.s_FilterIdq.d) + SQ(gFoc_Ctrl.out.s_FilterIdq.q));
  944. }
  945. void PMSM_FOC_Brake(bool brake) {
  946. gFoc_Ctrl.in.b_eBrake = brake;
  947. if (gFoc_Ctrl.in.b_eBrake & gFoc_Ctrl.in.b_cruiseEna) {
  948. gFoc_Ctrl.in.b_cruiseEna = false;
  949. }
  950. eCtrl_brake_signal(brake);
  951. }