state.c 18 KB

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  1. #include "bsp/gpio.h"
  2. #include "bsp/ml5238.h"
  3. #include "bsp/cs1180.h"
  4. #include "bsp/uart.h"
  5. #include "bsp/mcu_power_sleep.h"
  6. #include "app/sox/measure.h"
  7. #include "app/sox/measure_task.h"
  8. #include "libs/shark_task.h"
  9. #include "libs/logger.h"
  10. #include "app/nv_storage.h"
  11. #include "health.h"
  12. #include "soc.h"
  13. #include "state.h"
  14. #include "iostate.h"
  15. #define ALLOW_DEEP_SLEEP 1
  16. #define SLEEP_IGNORE_UNHEALTH 0
  17. #define ALLOW_POWER_DOWN 1 //disable power down for debug
  18. #define ALLOW_5238_BALANCE 1
  19. #define IGNORE_DISCHARGER_LOW_VOL 0 //忽略放电欠压
  20. static void _current_notify(void);
  21. static void _voltage_notify(void);
  22. static void _temperature_notify(void);
  23. static u32 _bms_main_task_handler(void);
  24. static void _debug_timer_handler(shark_timer_t *t);
  25. static void _process_power_down(void);
  26. static bms_state_t _bms_state;
  27. static int pcb_temp = 100;
  28. static int pcb_temp_count = 0;
  29. static int ml5238_cali_count = 0;
  30. static shark_task_t _bms_main_task = {.handler = _bms_main_task_handler};
  31. static shark_timer_t _debug_timer = {.handler = _debug_timer_handler};
  32. static int open_dfet = 0;
  33. static int open_dfet_failt = 0;
  34. static int close_dfet_reson = 0;
  35. static int close_dfet_no_hall = 0;
  36. void bms_state_init(void){
  37. set_log_level(MOD_STATE, L_debug);
  38. state_debug("BMS System Starting......\n");
  39. _bms_state.cell_index_of_max_vol = 0xff;
  40. _bms_state.bms_addr = 0x30;
  41. measure_task_init(_current_notify, _voltage_notify, _temperature_notify);
  42. io_state_init();
  43. health_init();
  44. soc_init();
  45. _bms_state.user_request = USER_REQUEST_PENDING | USER_REQUEST_SMALLCURRENT_ON;
  46. shark_task_add(&_bms_main_task);
  47. shark_timer_post(&_debug_timer, 2000);
  48. pcb_temp = measure_value()->pack_temp[PCB_TEMP_INDEX];
  49. }
  50. bms_state_t *bms_state_get(void){
  51. return &_bms_state;
  52. }
  53. int bms_work_is_normal(void){
  54. return _bms_state.work_mode == WORK_MODE_NORMAL;
  55. }
  56. int bms_work_is_aging_test(void){
  57. return _bms_state.work_mode == WORK_MODE_AGING_TEST;
  58. }
  59. int bms_work_is_pcba_test(void){
  60. return _bms_state.work_mode == WORK_MODE_PCBA_TEST;
  61. }
  62. int bms_work_is_pack_test(void){
  63. return _bms_state.work_mode == WORK_MODE_PACK_TEST;
  64. }
  65. int bms_work_is_calibrating(void){
  66. return _bms_state.work_mode == WORK_MODE_CALIBRATE;
  67. }
  68. int bms_work_mode_set(int mode, int start){
  69. if (mode < WORK_MODE_AGING_TEST || mode > WORK_MODE_CALIBRATE){
  70. return 1;
  71. }
  72. if (start){
  73. _bms_state.work_mode = mode;
  74. }else {
  75. _bms_state.work_mode = WORK_MODE_NORMAL;
  76. }
  77. return 0;
  78. }
  79. void bms_set_ps_charger_in(uint16_t mask, uint16_t in){
  80. _bms_state.ps_charger_in = in;
  81. _bms_state.ps_charger_mask = mask;
  82. }
  83. void bms_state_log(void){
  84. state_debug("Life Time: %d\n", shark_get_seconds());
  85. state_debug("Sleep Time: %ds\n", get_system_sleep_time());
  86. state_debug("ml5238 cali: %d\n", ml5238_cali_count);
  87. state_debug("ps charger mask:in %d, %d\n", _bms_state.ps_charger_mask, _bms_state.ps_charger_in);
  88. state_debug("open dfet %d - %d - %d - %d\n", open_dfet, open_dfet_failt, close_dfet_reson, close_dfet_no_hall);
  89. #if 0
  90. state_debug("Charging: %d\n", _bms_state.charging);
  91. state_debug("WorkMode %d\n", _bms_state.work_mode);
  92. state_debug("DMos: %d\n", ml5238_is_discharging());
  93. state_debug("CMos: %d\n", ml5238_is_charging());
  94. state_debug("AuxPower: %d\n", AUX_VOL_IS_OPEN());
  95. state_debug("WorkMode:0x%x\n", _bms_state.work_mode);l
  96. #endif
  97. }
  98. static void _debug_timer_handler(shark_timer_t *t){
  99. #if 0
  100. static int _log_count = 0;
  101. int mod = _log_count % 4;
  102. if (mod == 0){
  103. bms_state_log();
  104. }
  105. if (mod == 1) {
  106. iostate_log();
  107. }
  108. if (mod == 2) {
  109. soc_log();
  110. }
  111. if (mod == 3) {
  112. measure_log();
  113. }
  114. _log_count ++;
  115. #else
  116. bms_state_log();
  117. measure_log();
  118. #endif
  119. shark_timer_post(&_debug_timer, 2000);
  120. }
  121. /*
  122. 放电mos和充电mos的开关要小心:
  123. 1. 大部分的情况下,尽量能做到同时开关,主要是用来保护被关闭那路mos的体二极管(不能过大电流)
  124. 2. 充电过压的情况下,必须要关闭充电mos,但是这个时候放电mos可能是打开的,这样的情况下,
  125. 需要检测放电电流,超过10A必须强制打开充电mos,防止烧充电mos的体二极管
  126. 3. 收到打开大电的指令后,必须两个mos都要打开,然后再经过2的判断
  127. 。。。。。
  128. */
  129. void discharger_open(int open){
  130. /* 打开大电前,先打开短路保护*/
  131. if (open) {
  132. int mode = SHORT_CURRENT_MODE_100A_200A;
  133. int try_count = 3;
  134. /* 确保短路保护设置成功后才能开大电 */
  135. do {
  136. ml5238_short_current_detect(mode);//SP600:100A, SP700:200A
  137. }while(!ml5238_is_short_current_enabled(mode) && (try_count-- >= 0));
  138. if ((try_count < 0) && !ml5238_is_short_current_enabled(mode)){
  139. state_error("set short current error\n");
  140. return;
  141. }
  142. }else {
  143. ml5238_short_current_detect(SHORT_CURRENT_MODE_DISABLE);
  144. }
  145. ml5238_enable_discharger_mosfet(open);
  146. }
  147. void charger_open(int open) {
  148. ml5238_enable_charger_mosfet(open);
  149. }
  150. void start_aux_power(int start){
  151. if (start){
  152. AUX_VOL_OPEN(1);
  153. }else {
  154. AUX_VOL_OPEN(0);
  155. health_stop_aux_detect();
  156. }
  157. }
  158. void system_power_down(void){
  159. bms_health()->powerdown_lower_voltage = 1;
  160. _process_power_down();
  161. }
  162. #define Health_Success 0
  163. #define Health_Discharger_Failt 1
  164. #define Health_charger_Fault 2
  165. #define Health_aux_Fault 4
  166. #define Health_Fault_Can_Sleep 8
  167. static s32 _process_unheath(void){
  168. u32 unhealth = Health_Success;
  169. if (bms_health()->load_current_short) {//短路检测后,关闭充放电mos
  170. discharger_open(0);
  171. charger_open(0); //disable charger mosfet
  172. start_aux_power(0);
  173. _bms_state.charging = 0;
  174. close_dfet_reson = 2;
  175. unhealth = (Health_Discharger_Failt | Health_charger_Fault);
  176. }
  177. if (!bms_work_is_normal()){
  178. return unhealth; //测试模式只关注短路保护
  179. }
  180. if (bms_health()->charger_over_current || bms_health()->charger_over_temp || bms_health()->charger_lower_temp ||
  181. bms_health()->charger_over_voltage || bms_health()->sigle_cell_over_voltage){
  182. if (_bms_state.ps_charger_mask && !_bms_state.ps_charger_in){
  183. }else {
  184. charger_open(0); //disable charger mosfet
  185. unhealth |= Health_charger_Fault;
  186. }
  187. }
  188. if (bms_health()->over_temp_deny_charger|| bms_health()->lower_temp_deny_charger) {
  189. if (_bms_state.ps_charger_mask && !_bms_state.ps_charger_in){
  190. }else if (_bms_state.charging) {
  191. charger_open(0); //disable charger mosfet
  192. unhealth |= Health_charger_Fault;
  193. }
  194. }
  195. if (bms_health()->discharger_over_temp || bms_health()->discharger_lower_temp){
  196. if (bms_health()->discharger_over_temp){ //放电过高温后,小电流也必须关闭
  197. start_aux_power(0);
  198. unhealth |= Health_aux_Fault;
  199. }
  200. discharger_open(0); //disable charger mosfet
  201. close_dfet_reson = (bms_health()->discharger_over_temp == 1)?3:4;
  202. unhealth |= Health_Discharger_Failt;
  203. }
  204. if (bms_health()->sigle_cell_lower_voltage || bms_health()->discharger_lower_voltage) {
  205. unhealth |= Health_Fault_Can_Sleep;
  206. #if IGNORE_DISCHARGER_LOW_VOL==0
  207. if (!(_bms_state.ps_charger_mask && _bms_state.ps_charger_in)) {//PSxxx 告知有充电器插入,忽略欠压
  208. unhealth |= Health_Discharger_Failt | Health_aux_Fault;
  209. start_aux_power(0);
  210. if (ml5238_is_discharging()) {
  211. close_dfet_reson = (bms_health()->sigle_cell_lower_voltage == 1) ?5:6;
  212. discharger_open(0);
  213. }
  214. }
  215. #endif
  216. }
  217. if (bms_health()->over_temp_deny_discharger|| bms_health()->lower_temp_deny_discharger) {
  218. if (!_bms_state.charging) {
  219. close_dfet_reson = (bms_health()->over_temp_deny_discharger == 1)?7:8;
  220. discharger_open(0); //disable discharger mosfet
  221. }
  222. unhealth |= (Health_Discharger_Failt | Health_Fault_Can_Sleep);
  223. }
  224. if (io_state()->aux_lock_detect || bms_health()->small_current_short) {
  225. unhealth |= Health_aux_Fault;
  226. if (bms_health()->small_current_real_short) {
  227. unhealth |= Health_Discharger_Failt;
  228. }
  229. }
  230. return unhealth;
  231. }
  232. //处理PS100/310/320/360,充电底座,充电柜的指令或者bms自己发给自己的指令
  233. static void _process_user_request(s32 health){
  234. if (_bms_state.user_request & USER_REQUEST_PENDING){
  235. //开关小电
  236. if (_bms_state.user_request & USER_REQUEST_SMALLCURRENT_OFF){
  237. start_aux_power(0);
  238. }
  239. if (_bms_state.user_request & USER_REQUEST_DISCHARGER_OFF){
  240. discharger_open(0);
  241. }
  242. if (_bms_state.user_request & USER_REQUEST_CHARGER_OFF){
  243. charger_open(0);
  244. }
  245. if (_bms_state.user_request & USER_REQUEST_SMALLCURRENT_ON){
  246. if (!(health & Health_aux_Fault)){
  247. start_aux_power(1);
  248. }
  249. }
  250. if (_bms_state.user_request & USER_REQUEST_CHARGER_ON){
  251. if (!(health & Health_charger_Fault)){
  252. charger_open(1);
  253. }
  254. }
  255. if (_bms_state.user_request & USER_REQUEST_DISCHARGER_ON) {
  256. open_dfet ++;
  257. if (!(health & Health_Discharger_Failt)){
  258. discharger_open(1);
  259. }else {
  260. open_dfet_failt ++;
  261. }
  262. }
  263. _bms_state.user_request &= ~USER_REQUEST_PENDING;//clear user request pending
  264. }
  265. }
  266. static void _process_power_down(void){
  267. #if (ALLOW_POWER_DOWN==1)
  268. if (bms_health()->powerdown_lower_voltage){
  269. state_debug("BMS System PowerDown!!\n");
  270. if (bms_work_is_normal() && soc_update_by_ocv()) {
  271. nv_save_all_soc();
  272. }
  273. shark_uart_flush();
  274. if (bms_work_is_normal()) {
  275. if (io_state()->charger_detect_irq || io_state()->charger_detect){//have charger, do'nt power down
  276. bms_health()->powerdown_lower_voltage = 0;
  277. return;
  278. }
  279. }
  280. start_aux_power(0);
  281. discharger_open(0);
  282. charger_open(0);
  283. /*需要等待B-和P-之间的电容放电掉后,才能设置5238 power down,
  284. 否则5238会触发充电器插入检测,导致重新开机,进入powerdown <->开机的无限循环*/
  285. /* 需要先关闭负载检测,否则充电器检测会分压掉一部分 */
  286. ml5238_enable_load_detect(0);
  287. ml5238_enable_charger_detect(AUX_VOL_IS_OPEN(), 1);
  288. delay_us(2* 1000);
  289. u64 wait_start = shark_get_mseconds();
  290. while(!ml5238_charger_is_disconnect(AUX_VOL_IS_OPEN())){
  291. shark_uart_flush();
  292. wdog_reload();
  293. if (shark_get_mseconds() - wait_start >= 2000){
  294. bms_health()->powerdown_lower_voltage = 0;
  295. ml5238_enable_charger_detect(AUX_VOL_IS_OPEN(), 0);
  296. return;
  297. }
  298. }
  299. LED_ALL_ON(0);
  300. CS1180_PWR_ENABLE(0);
  301. DCDC_VOL_OPEN(0);
  302. ml5238_power_down();
  303. }
  304. #endif
  305. }
  306. static void _process_deepsleep(s32 health){
  307. #if (ALLOW_DEEP_SLEEP==1)
  308. static u64 _sleep_time = 0;
  309. #if (SLEEP_IGNORE_UNHEALTH==0)
  310. if ((health != Health_Success) && ((health & Health_Fault_Can_Sleep) != Health_Fault_Can_Sleep)){
  311. return;
  312. }
  313. #endif
  314. if (!bms_work_is_normal()){
  315. return; //测试模式下不休眠
  316. }
  317. if (ml5238_is_charging() || ml5238_is_discharging() || io_state()->charger_detect_irq || _bms_state.charging){
  318. return;
  319. }
  320. if(io_state()->hall_detect){
  321. return;
  322. }
  323. if (!shark_uart_timeout()){
  324. return;
  325. }
  326. if (io_state()->aux_lock_detect){
  327. return;
  328. }
  329. if (shark_get_mseconds() < (_sleep_time + 3 * 1000)){
  330. return;
  331. }
  332. nv_save_all_soc();
  333. mcu_enter_deepsleep();
  334. soc_update_for_deepsleep(mcu_get_sleeptime());//补偿休眠的功耗
  335. _sleep_time = shark_get_mseconds();
  336. #endif
  337. }
  338. /*when work as test mode, we do'n need close the discharger */
  339. static int _can_close_mos_no_hall(void){
  340. if (bms_work_is_normal()){
  341. return 1;
  342. }
  343. return 0;
  344. }
  345. static void _process_iostate_changed(s32 unhealth){
  346. if (!(io_state()->hall_detect)&& _can_close_mos_no_hall()){
  347. bms_set_ps_charger_in(0, 0);
  348. if (ml5238_is_discharging() && (!_bms_state.charging)){
  349. discharger_open(0);
  350. close_dfet_no_hall ++;
  351. open_dfet = open_dfet_failt = 0; //clear open dfet count
  352. }
  353. if (!AUX_VOL_IS_OPEN()){
  354. start_aux_power(1);
  355. }
  356. if (!io_state()->charger_detect_irq && ml5238_is_charging() && (!_bms_state.charging)){
  357. charger_open(0);
  358. }
  359. }
  360. if (io_state()->charger_detect_irq && ((unhealth & Health_charger_Fault) == 0) && (_bms_state.cell_max_vol < SIGLE_CELL_MAX_CHARGER_VOLTAGE)) {
  361. if (!ml5238_is_charging() && shark_uart_timeout()){//不在车上,底座上,充电柜上,检测到充电器插入,自动打开充电,否则的话,只能通过指令来打开充电mos
  362. if (!(bms_health()->over_temp_deny_charger|| bms_health()->lower_temp_deny_charger)) {
  363. charger_open(1);
  364. }
  365. }
  366. }
  367. if (io_state()->hall_detect){
  368. _bms_state.bms_addr = 0x30 + 1;
  369. bms_health()->hall_is_detected = 1;
  370. }else {
  371. _bms_state.bms_addr = 0x30;
  372. bms_health()->hall_is_detected = 0;
  373. }
  374. }
  375. static u32 _bms_main_task_handler(void){
  376. s32 unhealth = _process_unheath();
  377. _process_user_request(unhealth);
  378. _process_deepsleep(unhealth);
  379. _process_power_down();
  380. _process_iostate_changed(unhealth);
  381. return 0;
  382. }
  383. extern void show_leds_for_charging(uint8_t charging);
  384. static debounce_t _charging_detect = {.count = 0, .max_count = 10, .init_count = 0};
  385. static int cs1180_may_error_count = 0;
  386. static void check_charging(){
  387. /* 解决cs1180可能出错,导致误判充电,离仓后无法休眠 */
  388. int may_error = 0;
  389. if (measure_value()->load_current >= MIN_START_CHARGER_CURRENT) {
  390. if (measure_value()->load_current != measure_value()->current_5238) {
  391. if (measure_value()->current_5238 <= 0) { //cs1180检测到充电电流,5238检测到负电流
  392. if (++cs1180_may_error_count >= _charging_detect.max_count/2) {
  393. measure_value()->load_current = measure_value()->current_5238;
  394. cs1180_adc_shutdown();
  395. cs1180_may_error_count = 0;
  396. }
  397. may_error = 1;
  398. }
  399. }
  400. }
  401. if (may_error == 0) {
  402. cs1180_may_error_count = 0;
  403. }
  404. if ((measure_value()->load_current >= MIN_START_CHARGER_CURRENT)) {
  405. if (!_bms_state.charging) {
  406. debounce_inc(_charging_detect);
  407. if (debounce_reach_max(_charging_detect)){
  408. _bms_state.charging = 1;
  409. show_leds_for_charging(1);
  410. debounce_reset(_charging_detect);
  411. }
  412. }else {
  413. debounce_reset(_charging_detect);
  414. }
  415. }else/* if ((measure_value()->load_current < MIN_START_LOADING_CURRENT))*/{
  416. if (_bms_state.charging) {
  417. debounce_inc(_charging_detect);
  418. if (debounce_reach_max(_charging_detect)){
  419. _bms_state.charging = 0;
  420. show_leds_for_charging(0);
  421. debounce_reset(_charging_detect);
  422. }
  423. }else {
  424. debounce_reset(_charging_detect);
  425. }
  426. }
  427. }
  428. /* if discharger mos and charger mos, one is open but other is closed.
  429. we must judage the current: if current is large than 10A(-10A),
  430. we must open the closed mos to avoid the closed mos to be destroyed
  431. */
  432. #define MIN_CURRENT_FOR_BOTH_MOS_OPEN (1000)
  433. static int _min_current_for_both_mos_count = 0;
  434. static u32 _check_mos_time = 0;
  435. static __INLINE u32 _open_all_mos_time(void){
  436. if (abs(measure_value()->load_current) >= MIN_CURRENT_FOR_BOTH_MOS_OPEN * 2){
  437. return 0;
  438. }
  439. if (abs(measure_value()->load_current) >= MIN_CURRENT_FOR_BOTH_MOS_OPEN) {
  440. return 10;
  441. }
  442. return 30;
  443. }
  444. static void _check_mos_stat(void){
  445. if (abs(measure_value()->load_current) >= MIN_CURRENT_FOR_BOTH_MOS_OPEN){
  446. _min_current_for_both_mos_count ++;
  447. if (_min_current_for_both_mos_count >= 2){
  448. int dmos = ml5238_is_discharging();
  449. int cmos = ml5238_is_charging();
  450. if (dmos + cmos == 0){
  451. //state_error("current = %d, but all mos is closed\n", measure_value()->load_current);
  452. return;
  453. }
  454. if (dmos == 1 && cmos == 1){
  455. return;
  456. }
  457. if (shark_get_seconds() >= (_check_mos_time + _open_all_mos_time())) {
  458. uint32_t request = USER_REQUEST_PENDING;
  459. if (!dmos) {
  460. request |= USER_REQUEST_DISCHARGER_ON;
  461. }else {
  462. request |= USER_REQUEST_CHARGER_ON;
  463. }
  464. _bms_state.user_request = request;
  465. _check_mos_time = shark_get_seconds();
  466. }
  467. }
  468. }else {
  469. _min_current_for_both_mos_count = 0;
  470. }
  471. }
  472. static void _current_notify(void){
  473. check_charging();
  474. check_current_state(); //check health of current
  475. _check_mos_stat();
  476. soc_update(); //计算soc
  477. }
  478. #if (ALLOW_5238_BALANCE==1)
  479. /* 需要检查电芯的电压,如果发现有电芯电压过高,需要开启被动均衡
  480. * 充电过程中考虑balance,主要是希望cell 电压扩散后,保证1. 单电芯不能过压, 2. 单电芯不能比平均电压过低,导致
  481. * 木桶效应,目标是电压最高的那个cell,尽量压制,不让电压再升高,或者升高的尽量慢一些
  482. */
  483. static void _balance_timer_handler(shark_timer_t *t);
  484. static shark_timer_t _balance_timer = {.handler = _balance_timer_handler};
  485. static debounce_t _cell_balance = {.count = 0, .max_count = 10, .init_count = 0};
  486. static void _balance_timer_handler(shark_timer_t *t){
  487. ml5238_cell_start_balance(0);
  488. _bms_state.pack_balancing = 0;
  489. }
  490. static uint32_t get_balance_mask(uint8_t current_max_index){
  491. return BIT(current_max_index);
  492. }
  493. static void check_cell_balance(uint8_t current_max_index){
  494. if (!_bms_state.charging){ //not charging, need not do balance
  495. if (_bms_state.pack_balancing){
  496. _bms_state.pack_balancing = 0;
  497. _cell_balance.count = 10;
  498. ml5238_cell_start_balance(0);
  499. shark_timer_cancel(&_balance_timer);
  500. }
  501. return;
  502. }
  503. if ((!_bms_state.pack_balancing && _bms_state.cell_max_vol < MAX_CELL_VOLTAGE_FOR_BALACNE) || _bms_state.pack_balancing){
  504. return;
  505. }
  506. if (_bms_state.cell_max_vol >= MAX_CELL_VOLTAGE_FOR_BALACNE){
  507. debounce_inc(_cell_balance);
  508. }else {
  509. debounce_reset(_cell_balance);
  510. }
  511. if (!_bms_state.pack_balancing && debounce_reach_max(_cell_balance)){
  512. _bms_state.pack_balancing = 1;
  513. ml5238_cell_start_balance(get_balance_mask(current_max_index));
  514. shark_timer_post(&_balance_timer, 30 * 1000); //stop balance after 30s
  515. debounce_reset(_cell_balance);
  516. }
  517. _bms_state.cell_index_of_max_vol = current_max_index;
  518. }
  519. #endif
  520. static uint8_t calc_cell_voltage(void){
  521. uint16_t voltage = 0;
  522. uint16_t max_cell = 0;
  523. uint16_t min_cell = 0xf000;
  524. uint8_t max_index = 0;
  525. for (int i = 0; i < CELLS_NUM; i++){
  526. voltage += measure_value()->cell_vol[i];
  527. if (max_cell < measure_value()->cell_vol[i]){
  528. max_cell = measure_value()->cell_vol[i];
  529. max_index = i;
  530. }
  531. if (min_cell > measure_value()->cell_vol[i]){
  532. min_cell = measure_value()->cell_vol[i];
  533. }
  534. }
  535. _bms_state.pack_voltage = voltage;
  536. _bms_state.cell_max_vol = max_cell;
  537. _bms_state.cell_min_vol = min_cell;
  538. return max_index;
  539. }
  540. static void _voltage_notify(void){
  541. uint8_t max_index = calc_cell_voltage();
  542. check_voltage_state(); //check health of cell voltage
  543. #if (ALLOW_5238_BALANCE==1)
  544. check_cell_balance(max_index);
  545. #endif
  546. }
  547. static void _temperature_notify(void){
  548. int pcb_current_temp = measure_value()->pack_temp[PCB_TEMP_INDEX];
  549. if (abs(pcb_temp - pcb_current_temp) >= 5){//pcb温度变化超过5度,需要重新校准ML5238
  550. if (pcb_temp_count ++ >= 5) {
  551. current_calibrate();
  552. state_warning("ML5238 calibrate, %d -> %d!!\n", pcb_temp, pcb_current_temp);
  553. pcb_temp = pcb_current_temp;
  554. pcb_temp_count = 0;
  555. ml5238_cali_count ++;
  556. }
  557. }else {
  558. pcb_temp_count = 0;
  559. }
  560. check_temp_state(); //check health of cell/pcb temperature
  561. }