health.c 16 KB

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  1. #include "bsp/gpio.h"
  2. #include "bsp/ml5238.h"
  3. #include "libs/logger.h"
  4. #include "state.h"
  5. #include "iostate.h"
  6. #include "measure.h"
  7. #include "measure_task.h"
  8. #include "health.h"
  9. #if 0
  10. #define MIN_VOLTAGE_FOR_DISCHARGER (2.2f * CELLS_NUM * 1000) //允许能放电的最小电压
  11. #define MIN_VOLTAGE_FOR_RECOVERY_DISCHARGER (2.3f * CELLS_NUM * 1000) //恢复放电的最小电压
  12. #define MIN_VOLTAGE_FOR_POWER_DOWN (2.1f * CELLS_NUM* 1000)
  13. #define SIGLE_CELL_LOWER_DISCHARGER_VOLTAGE (1820) //最小允许的电芯放电电压 1.8v, 考虑到采样的误差取 1.82
  14. #endif
  15. static int8_t charger_normal_low_temp[PACK_TEMPS_NUM] = {0,0,0,0}; //正常的充电最低温度
  16. static int8_t charger_normal_high_temp[PACK_TEMPS_NUM] = {50,50,50,55}; //正常的充电最高温度
  17. static int8_t charger_lower_low_temp[PACK_TEMPS_NUM] = {-5,-5,-5,0}; //需要停止充电的最低温度
  18. static int8_t charger_higher_high_temp[PACK_TEMPS_NUM] = {55,55,55,60}; //需要停止充电的最高温度
  19. static int8_t discharger_normal_low_temp[PACK_TEMPS_NUM] = {-10,-10,-10,-5};//正常的放电最低温度
  20. static int8_t discharger_normal_high_temp[PACK_TEMPS_NUM] = {50,50,50,55};//正常的放电最高温度
  21. static int8_t discharger_lower_low_temp[PACK_TEMPS_NUM] = {-15,-15,-15,-10}; //需要停止放电的最低温度
  22. static int8_t discharger_higher_high_temp[PACK_TEMPS_NUM] = {55,55,55,60};//需要停止放电的最高温度
  23. /*定义低温和正常温度下的电池保护参数, [0]低温参数, [1]常温参数 */
  24. /*能提供动力的最小电压*/
  25. static float min_discharger_power_vol[] = {32000, 38000}; //允许能提供动力的最小电压
  26. static float min_discharger_power_recovery_vol[] = {34000, 40000}; //恢复能提供动力的最小电压
  27. static float min_discharger_power_cell_vol[] = {2100, 2500}; //允许能提供动力的最小电芯电压
  28. static float min_discharger_power_recovery_cell_vol[] = {2200, 2600}; //恢复能提供动力的最小电芯电压
  29. /*能提供大电的最小电压*/
  30. static float min_discharger_vol[] = {30000, 36000};//允许能放电的最小电压
  31. static float min_discharger_recovery_vol[] = {32000, 40000};//恢复放电的最小电压
  32. static float min_discharger_cell_vol[] = {2000, 2500};//允许能放电的最小电芯电压
  33. static float min_discharger_cell_recovery_vol[] = {2100, 2600};//恢复放电的最小电芯电压
  34. /*电池PowerDown的最小电压 */
  35. static float min_discharger_pdown_vol[] = {28000, 34000}; //power down的最小电压
  36. static float min_discharger_pdown_cell_vol[] = {1900, 2200}; //power down的最小电芯电压
  37. /* health 模块,只检测状态,不做任何控制,如果有异常情况,控制中心会统一处理 */
  38. static void check_ml5238_state(int event);
  39. static void init_detect_timer(void);
  40. static void load_delect_handler(shark_timer_t *timer);
  41. static void charger_detect_handler(shark_timer_t *timer);
  42. static void _aux_lock_timer_handler(shark_timer_t *t);
  43. static void _aux_unlock_timer_handler(shark_timer_t *t);
  44. static bms_health_t _health;
  45. static debounce_timer_t _load_detect_timer;
  46. static debounce_timer_t _charger_detect_timer;
  47. void health_init(void){
  48. /* 5238如果有异常情况,比如短路,负载移除,通过这个handler上报 */
  49. ml5238_register_notify_handler(check_ml5238_state);
  50. init_detect_timer();
  51. set_log_level(MOD_HEALTH, L_debug);
  52. for (int i = 0; i < CELLS_NUM; i++){
  53. _health.internal_resistance[i] = 5;//毫欧,暂时用一个固定数据,后期需要计算R0=(U2-U1)/(I1-I2) - R1(R1为电路上的等效电阻+采样电阻)
  54. }
  55. _health.is_work_temp_normal = 1;
  56. }
  57. bms_health_t *bms_health(){
  58. return &_health;
  59. }
  60. static void init_detect_timer(void){
  61. _load_detect_timer._timer.handler = load_delect_handler;
  62. _load_detect_timer.max_count = 100;
  63. _load_detect_timer.interval = 10;
  64. _charger_detect_timer._timer.handler = charger_detect_handler;
  65. _charger_detect_timer.max_count = 500;
  66. _charger_detect_timer.interval = 10;
  67. }
  68. static void load_delect_handler(shark_timer_t *timer){
  69. if (ml5238_is_load_disconnect()){
  70. _load_detect_timer.count ++;
  71. }else {
  72. _load_detect_timer.count = 0;
  73. }
  74. if (_load_detect_timer.count >= _load_detect_timer.max_count) {
  75. _health.load_current_short = 0; //负载移除,clear load current short
  76. ml5238_enable_load_detect(0);
  77. health_debug("load disconnect\n");
  78. }else {
  79. shark_timer_post(&_load_detect_timer._timer, _load_detect_timer.interval);
  80. }
  81. }
  82. static void charger_detect_handler(shark_timer_t *timer){
  83. if (!io_state()->charger_detect || !bms_state_get()->charging) {
  84. _charger_detect_timer.count ++;
  85. }else {
  86. _charger_detect_timer.count = 0;
  87. }
  88. if (_charger_detect_timer.count >= _charger_detect_timer.max_count){
  89. _health.charger_over_current = 0;
  90. _charger_detect_timer.count = 0;
  91. health_warning("clear charger over current\n");
  92. }else {
  93. shark_timer_post(&_charger_detect_timer._timer, _charger_detect_timer.interval);
  94. }
  95. }
  96. static void check_ml5238_state(int event){
  97. health_warning("ml5238 event=0x%x\n", event);
  98. if (event == ML5238_Event_Charger_Over_Current){
  99. shark_timer_post(&_charger_detect_timer._timer, _charger_detect_timer.interval);
  100. }else if (event == ML5238_Event_Short_Current) { //ml5238触发短路保护,充放电mos全部关闭
  101. _health.load_current_short = 1;
  102. ml5238_enable_load_detect(1); //打开负载检测
  103. shark_timer_post(&_load_detect_timer._timer, _load_detect_timer.interval);
  104. }else if (event == ML5238_Event_Load_Disconnect) {
  105. shark_timer_post(&_load_detect_timer._timer, _load_detect_timer.interval);
  106. }
  107. }
  108. static void debug_health(void){
  109. uint32_t *value = (uint32_t *)&_health;
  110. if (*value != 0){
  111. //health_error("health value = 0x%x\n", *value);
  112. }
  113. }
  114. /* 检测电流情况,看是否过流等 */
  115. static debounce_t _charger_over_current = {
  116. .count = 0,
  117. .max_count = 70
  118. };
  119. void check_current_state(void){
  120. //判断是否过流充电,放电过流通过5238来检测
  121. if (!bms_state_get()->charging){
  122. _charger_over_current.count = 0;
  123. return;
  124. }
  125. if (!_health.charger_over_current) {
  126. float current = measure_value()->load_current;
  127. if (current > MAX_CURRENT_FOR_CHARGER) {
  128. _charger_over_current.count ++;
  129. }else {
  130. _charger_over_current.count = 0;
  131. }
  132. if (_charger_over_current.count >= _charger_over_current.max_count){
  133. _health.charger_over_current = 1;
  134. _charger_over_current.count = 0;
  135. health_warning("charger over current\n");
  136. shark_timer_post(&_charger_detect_timer._timer, _charger_detect_timer.interval);
  137. }
  138. }
  139. }
  140. /* 检测pack电压,cell电压,pack电压过低触发powerdown*/
  141. static debounce_t _discharger_lower_voltage = {.count = 0, .max_count = 20, .init_count = 10};
  142. static debounce_t _power_down_voltage = {.count = 0, .max_count = 10, .init_count = 0};
  143. static debounce_t _sigle_cell_discharger_lower_vol = {.count = 0, .max_count = 10, .init_count = 5};
  144. static debounce_t _sigle_cell_charger_max_vol = {.count = 0, .max_count = 30, .init_count = 15};
  145. static debounce_t _shut_discharger_lower_voltage = {.count = 0, .max_count = 20,};
  146. static debounce_t _shut_discharger_cell_lower_voltage = {.count = 0, .max_count = 20,};
  147. static int judge_debounce(int input, debounce_t *d){
  148. if (input) {
  149. d->count ++;
  150. if (d->count >= d->max_count){
  151. d->count = 0;
  152. return 1;
  153. }
  154. return 0;
  155. }else {
  156. d->count = d->init_count;
  157. return 0;
  158. }
  159. }
  160. static int _can_powerdown(void){
  161. if (io_state()->charger_detect || bms_state_get()->charging){
  162. return 0;
  163. }
  164. if ((bms_state_get()->pack_voltage <= min_discharger_pdown_vol[_health.is_work_temp_normal] ||
  165. bms_state_get()->cell_min_vol <= min_discharger_pdown_cell_vol[_health.is_work_temp_normal])){
  166. return 1;
  167. }
  168. return 0;
  169. }
  170. void check_voltage_state(void) {
  171. if (bms_state_get()->charging){ //check sigle cell's voltage for charger
  172. _health.discharger_shutpower_voltage = 0;
  173. _health.sigle_cell_lower_voltage = 0;
  174. _health.discharger_lower_voltage = 0;
  175. _health.discharger_cell_shutpower_voltage = 0;
  176. if ((bms_state_get()->cell_max_vol>= SIGLE_CELL_MAX_CHARGER_VOLTAGE)){
  177. if (judge_debounce(!_health.sigle_cell_over_voltage, &_sigle_cell_charger_max_vol)){
  178. _health.sigle_cell_over_voltage = 1;
  179. }
  180. }else if ((bms_state_get()->cell_max_vol < SIGLE_CELL_MAX_CHARGER_VOLTAGE)){
  181. if (judge_debounce(_health.sigle_cell_over_voltage, &_sigle_cell_charger_max_vol)){
  182. _health.sigle_cell_over_voltage = 0;
  183. }
  184. }
  185. _health.charger_over_voltage = _health.sigle_cell_over_voltage;
  186. }else{
  187. //check sigle cell's voltage for discharger
  188. _health.charger_over_voltage = _health.sigle_cell_over_voltage = 0;
  189. if ((bms_state_get()->cell_min_vol <= min_discharger_cell_vol[_health.is_work_temp_normal])){
  190. if (judge_debounce(!_health.sigle_cell_lower_voltage, &_sigle_cell_discharger_lower_vol)){
  191. _health.sigle_cell_lower_voltage = 1;
  192. }
  193. }else if ((bms_state_get()->cell_min_vol >= min_discharger_cell_recovery_vol[_health.is_work_temp_normal])){
  194. if (judge_debounce(_health.sigle_cell_lower_voltage, &_sigle_cell_discharger_lower_vol)){
  195. _health.sigle_cell_lower_voltage = 0;
  196. }
  197. }
  198. //check sigle pack's voltage for discharger
  199. if (bms_state_get()->pack_voltage <= min_discharger_vol[_health.is_work_temp_normal]){
  200. if (judge_debounce(!_health.discharger_lower_voltage, &_discharger_lower_voltage)){
  201. _health.discharger_lower_voltage = 1;
  202. }
  203. }else if (bms_state_get()->pack_voltage >= min_discharger_recovery_vol[_health.is_work_temp_normal]){
  204. if (judge_debounce(_health.discharger_lower_voltage, &_discharger_lower_voltage)){
  205. _health.discharger_lower_voltage = 0;
  206. }
  207. }
  208. //check for shutdown power
  209. if ((bms_state_get()->cell_min_vol <= min_discharger_power_cell_vol[_health.is_work_temp_normal])){
  210. if (judge_debounce(!_health.discharger_cell_shutpower_voltage, &_shut_discharger_cell_lower_voltage)){
  211. _health.discharger_cell_shutpower_voltage = 1;
  212. }
  213. }else if ((bms_state_get()->cell_min_vol >= min_discharger_power_recovery_cell_vol[_health.is_work_temp_normal])){
  214. if (judge_debounce(_health.discharger_cell_shutpower_voltage, &_shut_discharger_cell_lower_voltage)){
  215. _health.discharger_cell_shutpower_voltage = 0;
  216. }
  217. }
  218. if ((bms_state_get()->cell_min_vol <= min_discharger_power_vol[_health.is_work_temp_normal])){
  219. if (judge_debounce(!_health.discharger_cell_shutpower_voltage, &_shut_discharger_lower_voltage)){
  220. _health.discharger_shutpower_voltage = 1;
  221. }
  222. }else if ((bms_state_get()->cell_min_vol >= min_discharger_power_recovery_vol[_health.is_work_temp_normal])){
  223. if (judge_debounce(_health.discharger_cell_shutpower_voltage, &_shut_discharger_lower_voltage)){
  224. _health.discharger_shutpower_voltage = 0;
  225. }
  226. }
  227. }
  228. /* check for power down */
  229. if (_can_powerdown()){
  230. if (judge_debounce(!_health.powerdown_lower_voltage, &_power_down_voltage)) {
  231. /*
  232. * no need to clear powerdown(bms is shutdown), when charger insert,
  233. * system will power on with powerdown_lower_voltage cleared
  234. */
  235. _health.powerdown_lower_voltage = 1;
  236. }
  237. }
  238. debug_health();
  239. }
  240. /* 检测温度情况,看是否过高温,或者过低温 */
  241. static debounce_t _charger_over_temp = {.count = 0, .max_count = 10, .init_count = 0};
  242. static debounce_t _charger_lower_temp = {.count = 0, .max_count = 10, .init_count = 0};
  243. static debounce_t _charger_normal_temp = {.count = 0, .max_count = 10, .init_count = 0};
  244. static debounce_t _discharger_over_temp = {.count = 0, .max_count = 10, .init_count = 0};
  245. static debounce_t _discharger_lower_temp = {.count = 0, .max_count = 10, .init_count = 0};
  246. static debounce_t _discharger_normal_temp = {.count = 0, .max_count = 10, .init_count = 0};
  247. static int _is_over_temp(int8_t *temps){
  248. for (int i = 0; i < PACK_TEMPS_NUM; i++){
  249. if (measure_value()->pack_temp[i] >= temps[i]){
  250. return 1;
  251. }
  252. }
  253. return 0;
  254. }
  255. static int _is_low_temp(int8_t *temps){
  256. for (int i = 0; i < PACK_TEMPS_NUM; i++){
  257. if (measure_value()->pack_temp[i] <= temps[i]){
  258. return 1;
  259. }
  260. }
  261. return 0;
  262. }
  263. static uint8_t small_power_detect_count = 0;
  264. static shark_timer_t _aux_lock_timer = {.handler = _aux_lock_timer_handler};
  265. static shark_timer_t _aux_unlock_timer = {.handler = _aux_unlock_timer_handler};
  266. static void _aux_lock_timer_handler(shark_timer_t *t){
  267. AUX_VOL_OPEN(1);
  268. shark_timer_post( &_aux_unlock_timer, 200);
  269. health_debug("open aux[re-enable], %lld\n", shark_get_mseconds());
  270. if (++small_power_detect_count >= 10){
  271. delay_us(1000);
  272. //端口电压小于阈值,判断为小电流短路
  273. if (get_small_current_voltage() < SMALL_CURRENT_MIN_VOLTAGE){//real short
  274. bms_health()->small_current_short = 1;
  275. AUX_VOL_OPEN(0);
  276. small_power_detect_count = 0;
  277. shark_timer_post( &_aux_lock_timer, 30 * 1000); //30s后再次尝试打开
  278. shark_timer_cancel(&_aux_unlock_timer);
  279. health_debug("set aux short current, and retry after 30s\n");
  280. }
  281. }
  282. }
  283. static void _aux_unlock_timer_handler(shark_timer_t *t){
  284. if (!io_state()->aux_lock_detect){
  285. health_debug("unlock aux detect\n");
  286. small_power_detect_count = 0;
  287. bms_health()->small_current_short = 0;
  288. AUX_VOL_OPEN(1);
  289. }
  290. }
  291. void health_stop_aux_detect(void){
  292. shark_timer_cancel(&_aux_unlock_timer);
  293. shark_timer_cancel(&_aux_lock_timer);
  294. bms_health()->small_current_short = 0;
  295. }
  296. void health_process_aux_lock(void){
  297. if (io_state()->aux_lock_detect) {
  298. if (AUX_VOL_IS_OPEN()){
  299. AUX_VOL_OPEN(0);
  300. health_debug("close aux[locked], %lld\n", shark_get_mseconds());
  301. shark_timer_post( &_aux_lock_timer, 1);
  302. shark_timer_cancel(&_aux_unlock_timer);
  303. }
  304. }else {
  305. if (AUX_VOL_IS_OPEN()) {
  306. shark_timer_post( &_aux_unlock_timer, 500);
  307. shark_timer_cancel(&_aux_lock_timer);
  308. }
  309. }
  310. }
  311. void check_temp_state(void){
  312. if (!_health.over_temp_deny_charger){
  313. if (_is_over_temp(charger_higher_high_temp)) {//超过允许的最高温度
  314. debounce_inc(_charger_over_temp);
  315. }else {
  316. debounce_reset(_charger_over_temp);
  317. }
  318. if (debounce_reach_max(_charger_over_temp)){
  319. _health.over_temp_deny_charger = 1;
  320. debounce_reset(_charger_over_temp);
  321. }
  322. }
  323. if (!_health.lower_temp_deny_charger){
  324. if (_is_low_temp(charger_lower_low_temp)) {//低于允许的最低温度
  325. debounce_inc(_charger_lower_temp);
  326. }else {
  327. debounce_reset(_charger_lower_temp);
  328. }
  329. if (debounce_reach_max(_charger_lower_temp)) {
  330. _health.lower_temp_deny_charger = 1;
  331. debounce_reset(_charger_lower_temp);
  332. }
  333. }
  334. if (_health.lower_temp_deny_charger || _health.over_temp_deny_charger) {
  335. if (!_is_over_temp(charger_normal_high_temp) && !_is_low_temp(charger_normal_low_temp)){
  336. debounce_inc(_charger_normal_temp);
  337. }else {
  338. debounce_reset(_charger_normal_temp);
  339. }
  340. if (debounce_reach_max(_charger_normal_temp)){
  341. _health.over_temp_deny_charger = 0;
  342. _health.lower_temp_deny_charger = 0;
  343. debounce_reset(_charger_normal_temp);
  344. }
  345. }
  346. if (!_health.over_temp_deny_discharger){
  347. if (_is_over_temp(discharger_higher_high_temp)) {//超过允许的最高温度
  348. debounce_inc(_discharger_over_temp);
  349. }else {
  350. debounce_reset(_discharger_over_temp);
  351. }
  352. if (debounce_reach_max(_discharger_over_temp)){
  353. _health.over_temp_deny_discharger = 1;
  354. debounce_reset(_discharger_over_temp);
  355. }
  356. }
  357. if (!_health.lower_temp_deny_discharger){
  358. if (_is_low_temp(discharger_lower_low_temp)) {//低于允许的最低温度
  359. debounce_inc(_discharger_lower_temp);
  360. }else {
  361. debounce_reset(_discharger_lower_temp);
  362. }
  363. if (debounce_reach_max(_discharger_lower_temp)) {
  364. _health.lower_temp_deny_discharger = 1;
  365. debounce_reset(_discharger_lower_temp);
  366. }
  367. }
  368. if (_health.lower_temp_deny_discharger || _health.over_temp_deny_discharger) {
  369. if (!_is_over_temp(discharger_normal_high_temp) && !_is_low_temp(discharger_normal_low_temp)){
  370. debounce_inc(_discharger_normal_temp);
  371. }else {
  372. debounce_reset(_discharger_normal_temp);
  373. }
  374. if (debounce_reach_max(_discharger_normal_temp)){
  375. _health.over_temp_deny_discharger = 0;
  376. _health.lower_temp_deny_discharger = 0;
  377. debounce_reset(_discharger_normal_temp);
  378. }
  379. }
  380. if (bms_state_get()->charging){
  381. _health.discharger_over_temp = 0;
  382. _health.discharger_lower_temp = 0;
  383. _health.charger_over_temp = _health.over_temp_deny_charger;
  384. _health.charger_lower_temp = _health.lower_temp_deny_charger;
  385. }else {
  386. _health.charger_over_temp = 0;
  387. _health.charger_lower_temp = 0;
  388. _health.discharger_over_temp = _health.over_temp_deny_discharger;
  389. _health.discharger_lower_temp = _health.lower_temp_deny_discharger;
  390. }
  391. debug_health();
  392. }