run_status.c 40 KB

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  1. /******************************************************************************
  2. 版权所有:
  3. 文件名称: run_status.c
  4. 文件版本: 01.01
  5. 创建作者: xxxxxx
  6. 创建日期: 2013-05-20
  7. 功能说明: 内部运行状态处理
  8. 其它说明:
  9. 修改记录:
  10. */
  11. /*------------------------------- 头文件 --------------------------------------
  12. */
  13. #include "head.h"
  14. /*------------------------------- 宏定义 --------------------------------------
  15. */
  16. enum
  17. {
  18. DIS_HEX, // 16进制
  19. DIS_DEC, // 10进制
  20. DIS_BIN, // 2进制
  21. DIS_NUM
  22. };
  23. #define INSTU_FILE_VERSION 0X01010101 //内部状态文件版本
  24. enum
  25. {
  26. RMTSTU_NULL, // 遥控器空闲态
  27. RMTSTU_ULOCK, // 遥控器解锁态
  28. RMTSTU_FZ, // 遥控器分闸态
  29. RMTSTU_HZ, // 遥控器合闸态
  30. RMTSTU_NUM,
  31. };
  32. /*------------------------------ 类型结构 -------------------------------------
  33. */
  34. /*------------------------------ 全局变量 -------------------------------------
  35. */
  36. u8 g_di_index[EQU_SLOT_NUM_MAX][16]; // 开入的应用功能与硬件对应关系
  37. //struct di_stu g_di_stu; // 开入的实时状态
  38. struct run_stu g_run_stu; // 内部运行状态
  39. struct rmt_oprate g_rmt_op; // 遥控器
  40. TIMERELAY g_tJLSDTime; // 交流失电定时器
  41. // 内部状态描述
  42. struct instu g_instu_desc[] =
  43. {
  44. {DIS_HEX, "重合充电", &g_run_stu.cd},
  45. {DIS_DEC, "交流失电", &g_run_stu.dcjlsd},
  46. {DIS_DEC, "交流失电带延时", &g_run_stu.dcjlsd_t},
  47. };
  48. const int INSTU_NUM = sizeof( g_instu_desc ) / sizeof(g_instu_desc[0]);
  49. /*------------------------------ 函数声明 -------------------------------------
  50. */
  51. int _rmt_key_app(u32 dStep);
  52. int _rst_key_app(void);
  53. int _create_instu_file(void);
  54. /*------------------------------ 外部函数 -------------------------------------
  55. 外部函数供其它实体文件引用,必须仔细检查传入参数的合法性.
  56. */
  57. /******************************************************************************
  58. 函数名称: run_status_init
  59. 函数版本: 01.01
  60. 创建作者: xxxxxx
  61. 创建日期: 2015-10-23
  62. 函数说明: 内部运行状态初始化。
  63. 参数说明: 无
  64. 返回值: 成功返回0.
  65. 修改记录:
  66. */
  67. int run_status_init(void)
  68. {
  69. int slot, i,sw;
  70. u16 no=0;
  71. for (slot=0; slot<EQU_SLOT_NUM_MAX; slot++)
  72. {
  73. memset(&g_di_index[slot], INDEX_INVALLID, 16);
  74. }
  75. memset(&g_run_stu,0,sizeof(g_run_stu));
  76. // 检查装置配置
  77. if(equ_config_null())
  78. {
  79. return -1;
  80. }
  81. run_status_check(0);
  82. for (i=0; i<PUB_DI_NUM; i++)
  83. {
  84. no = g_sw_pub.di_cfg_index[i];
  85. if ((short)no != INDEX_INVALLID)
  86. {
  87. g_di_index[g_equ_config_di[no].slot][g_equ_config_di[no].index] = i;
  88. }
  89. }
  90. for (sw=0; sw<g_sw_num; sw++)
  91. {
  92. for (i=0; i<SW_DI_NUM; i++)
  93. {
  94. no = g_sw[sw].di_cfg_index[i];
  95. if ((short)no != INDEX_INVALLID)
  96. {
  97. g_di_index[g_equ_config_di[no].slot][g_equ_config_di[no].index] = i+PUB_DI_NUM+SW_DI_NUM*sw;
  98. }
  99. }
  100. }
  101. // 远方无配置,置无效
  102. if (((short)g_sw_pub.di_cfg_index[PUB_DI_YF] == INDEX_INVALLID)
  103. && ((short)g_sw_pub.di_cfg_index[PUB_DI_JD] == INDEX_INVALLID))
  104. {
  105. g_run_stu.yf = 0;
  106. }
  107. // 就地无配置,置无效
  108. if ((short)g_sw_pub.di_cfg_index[PUB_DI_YF] == INDEX_INVALLID)
  109. {
  110. g_run_stu.jd = 0;
  111. }
  112. // 复归无配置,置分
  113. if ((short)g_sw_pub.di_cfg_index[PUB_DI_RST] == INDEX_INVALLID)
  114. {
  115. g_run_stu.fg = 0;
  116. }
  117. // 电池交流失电无配置,置分
  118. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCJLSD] == INDEX_INVALLID)
  119. {
  120. g_run_stu.dcjlsd = 0;
  121. }
  122. // 电源故障无配置,置分
  123. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCDYGZ] == INDEX_INVALLID)
  124. {
  125. g_run_stu.dcdygz = 0;
  126. }
  127. // 电池欠压无配置,置分
  128. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCQY] == INDEX_INVALLID)
  129. {
  130. g_run_stu.dcqy = 0;
  131. }
  132. // 电池活化无配置,置分
  133. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCHHZT] == INDEX_INVALLID)
  134. {
  135. g_run_stu.dchh = 0;
  136. }
  137. if ((short)g_sw_pub.di_cfg_index[PUB_DI_JS] == INDEX_INVALLID)
  138. {
  139. g_run_stu.js = 0;
  140. }
  141. if ((short)g_sw_pub.di_cfg_index[PUB_DI_BHALL] == INDEX_INVALLID)
  142. {
  143. g_run_stu.bhall = 1;
  144. }
  145. if ((short)g_sw_pub.di_cfg_index[PUB_DI_JX] == INDEX_INVALLID)
  146. {
  147. g_run_stu.bjx = 0;
  148. }
  149. // 复归+解锁
  150. if ((short)g_sw_pub.di_cfg_index[PUB_DI_RST_JS] == INDEX_INVALLID)
  151. {
  152. g_run_stu.fg_js = 0;
  153. }
  154. #ifdef YX_DI_ERROR
  155. if ((short)g_sw_pub.di_cfg_index[PUB_DI_ERROR] == INDEX_INVALLID)
  156. {
  157. g_run_stu.yxEnable = 1;
  158. }
  159. #endif
  160. g_run_stu.kz_out_tt = 1;
  161. #ifdef KZ_OUT_TT
  162. if ((short)g_sw_pub.di_cfg_index[PUB_KZ_OUT_TT] == INDEX_INVALLID)
  163. {
  164. g_run_stu.kz_out_tt = 1;
  165. }
  166. #endif
  167. g_run_stu.mb_yuk = 0;
  168. g_run_stu.mb_fz = 0;
  169. g_run_stu.mb_hz = 0;
  170. for (sw=0; sw<g_sw_num; sw++)
  171. {
  172. RUN_STU_SW *prun=&g_tRelay[sw].run_stu;
  173. // 合位无配置,置无效
  174. if ((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] == INDEX_INVALLID)
  175. {
  176. prun->hw = 0;
  177. }
  178. // 分位无配置,置无效
  179. if ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] == INDEX_INVALLID)
  180. {
  181. prun->tw = 0;
  182. }
  183. // 合闸位置无配置,置无效
  184. if ((short)g_sw[sw].di_cfg_index[SW_DI_HZWZ] == INDEX_INVALLID)
  185. {
  186. prun->hzw = 0;
  187. }
  188. // 跳闸位置无配置,置无效
  189. if ((short)g_sw[sw].di_cfg_index[SW_DI_TZWZ] == INDEX_INVALLID)
  190. {
  191. prun->tzw = 0;
  192. }
  193. // 隔离刀闸无配置,置无效
  194. if ((short)g_sw[sw].di_cfg_index[SW_DI_GLDZ_HW] == INDEX_INVALLID &&
  195. (short)g_sw[sw].di_cfg_index[SW_DI_GLDZ_FW] == INDEX_INVALLID)
  196. {
  197. prun->gldz = 0;
  198. }
  199. // 接地刀闸无配置,置无效
  200. if ((short)g_sw[sw].di_cfg_index[SW_DI_JDDZ_HW] == INDEX_INVALLID &&
  201. (short)g_sw[sw].di_cfg_index[SW_DI_GLDZ_FW] == INDEX_INVALLID)
  202. {
  203. prun->jddz = 0;
  204. }
  205. // 未储能无配置,置合
  206. if ((short)g_sw[sw].di_cfg_index[SW_DI_WCN] == INDEX_INVALLID)
  207. {
  208. prun->wcn = 1;
  209. }
  210. // 气压低为配置,置分
  211. if ((short)g_sw[sw].di_cfg_index[SW_DI_QYD_BS] == INDEX_INVALLID)
  212. {
  213. prun->qyd_bs = 0;
  214. }
  215. // 气压低为配置,置分
  216. if ((short)g_sw[sw].di_cfg_index[SW_DI_QYD_GJ] == INDEX_INVALLID)
  217. {
  218. prun->qyd_gj = 0;
  219. }
  220. // 控制回路断线开入
  221. if ((short)g_sw[sw].di_cfg_index[SW_DI_KZDX] == INDEX_INVALLID)
  222. {
  223. prun->kzdx = 0;
  224. }
  225. // PT1瞬压无配置,置无效
  226. if ((short)g_sw[sw].di_cfg_index[SW_DI_PT1SY] == INDEX_INVALLID)
  227. {
  228. prun->pt1uf = 0;
  229. }
  230. // PT2瞬压无配置,置无效
  231. if ((short)g_sw[sw].di_cfg_index[SW_DI_PT2SY] == INDEX_INVALLID)
  232. {
  233. prun->pt2uf = 0;
  234. }
  235. if ((short)g_sw[sw].di_cfg_index[SW_DI_SH] == INDEX_INVALLID)
  236. {
  237. prun->sw_sh = 0;
  238. }
  239. if ((short)g_sw[sw].di_cfg_index[SW_DI_SF] == INDEX_INVALLID)
  240. {
  241. prun->sw_sf = 0;
  242. }
  243. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHZTT] == INDEX_INVALLID)
  244. {
  245. prun->bhztt = 1;
  246. }
  247. // 保护投退无配置,置合
  248. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHTT] == INDEX_INVALLID)
  249. {
  250. prun->bhtt = prun->bhztt;
  251. }
  252. if ((short)g_sw[sw].di_cfg_index[SW_DI_JZS_TT] == INDEX_INVALLID)
  253. {
  254. prun->jzs_tt = 1;
  255. }
  256. // FA投退无配置,置合
  257. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_TT] == INDEX_INVALLID)
  258. {
  259. prun->fatt = prun->bhztt;
  260. }
  261. // 就地FA闭锁压板
  262. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_BS_TT] == INDEX_INVALLID)
  263. {
  264. //g_sw[sw].di_cfg_index[SW_DI_FA_BS_TT] = 0;//0为允许就地FA功能,
  265. }
  266. // 智能FA投退无配置,置合
  267. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_GOOSE] == INDEX_INVALLID)
  268. {
  269. prun->fa_g_tt = prun->bhztt;
  270. }
  271. // 重合闸无配置,置合
  272. if ((short)g_sw[sw].di_cfg_index[SW_DI_CHZ] == INDEX_INVALLID)
  273. {
  274. prun->chzyb = 1;
  275. }
  276. prun->fa_start_hz = 1;
  277. #if defined GD_AREA_LIAONING_2021
  278. if ((short)g_sw[sw].di_cfg_index[SW_DI_B_SW] == INDEX_INVALLID)
  279. {
  280. prun->fa_start_hz = 1;
  281. }
  282. #endif
  283. if ((short)g_sw[sw].di_cfg_index[SW_DI_KGYF] == INDEX_INVALLID)
  284. {
  285. prun->kgyf = 0;
  286. }
  287. // 联络分段配置
  288. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_LS] == INDEX_INVALLID)
  289. {
  290. prun->fa_ls = pRunSet->tSwSet[sw].bTT_fa_LL;
  291. }
  292. if ((short)g_sw[sw].di_cfg_index[SW_DI_BSCH] == INDEX_INVALLID)
  293. {
  294. prun->bsch = 0;
  295. }
  296. }
  297. _create_instu_file();
  298. //init valid yb
  299. run_status_check(0);
  300. return 0;
  301. }
  302. /******************************************************************************
  303. 函数名称: run_status_exit
  304. 函数版本: 01.01
  305. 创建作者: xxxxxx
  306. 创建日期: 2015-10-23
  307. 函数说明: 内部运行状态退出。
  308. 参数说明: 无
  309. 返回值: 成功返回0.
  310. 修改记录:
  311. */
  312. int run_status_exit(void)
  313. {
  314. return 0;
  315. }
  316. /******************************************************************************
  317. 函数名称: rmt_key_init
  318. 函数版本: 01.01
  319. 创建作者: xxxxxx
  320. 创建日期: 2015-05-13
  321. 函数说明: 遥控器按键初始化
  322. 参数说明: 无
  323. 返回值: 成功返回0.
  324. 修改记录:
  325. */
  326. int rmt_key_init(void)
  327. {
  328. memset(&g_rmt_op, 0, sizeof(g_rmt_op));
  329. return 0;
  330. }
  331. // 动作总的状态
  332. int run_status_dz_all(void)
  333. {
  334. int i;
  335. int ret=0;
  336. for(i=0; i<g_sw_num; i++)
  337. {
  338. RUN_STU_SW *prun=&g_tRelay[i].run_stu;
  339. if(prun->dz)
  340. {
  341. return prun->dz;
  342. }
  343. }
  344. return ret;
  345. }
  346. /******************************************************************************
  347. 函数名称: run_status_check
  348. 函数版本: 01.01
  349. 创建作者: xxxxxx
  350. 创建日期: 2015-10-23
  351. 函数说明: 内部运行状态识别
  352. 参数说明: 无
  353. 返回值: 成功返回0.
  354. 修改记录:
  355. */
  356. int run_status_check(u32 dStep)
  357. {
  358. bool bTHWCNState; // 弹簧未储能告警
  359. bool bTWYL; // 跳位有流
  360. int sw;
  361. bool bY,bY1;
  362. bool bIBSCHZ;
  363. u8 sw_sh[SWITCH_NUM_MAX],sw_sf[SWITCH_NUM_MAX];
  364. u8 stu_yf,stu_jd;
  365. struct equ_config_di *ecd;
  366. #ifdef YX_DI_ERROR
  367. if ((short)g_sw_pub.di_cfg_index[PUB_DI_ERROR] != INDEX_INVALLID)
  368. {
  369. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_ERROR]];
  370. g_run_stu.yxEnable= dido_di_is_on(ecd->slot,ecd->index);
  371. }
  372. if(g_run_stu.yxEnable ==0)
  373. return 0;
  374. #endif
  375. stu_yf = 0;
  376. if ((short)g_sw_pub.di_cfg_index[PUB_DI_YF] != INDEX_INVALLID)
  377. {
  378. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_YF]];
  379. stu_yf = dido_di_is_on(ecd->slot,ecd->index);
  380. }
  381. stu_jd = 0;
  382. if ((short)g_sw_pub.di_cfg_index[PUB_DI_JD] != INDEX_INVALLID)
  383. {
  384. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_JD]];
  385. stu_jd = dido_di_is_on(ecd->slot,ecd->index);
  386. g_run_stu.jd = dido_di_is_on(ecd->slot,ecd->index);
  387. }
  388. if (((short)g_sw_pub.di_cfg_index[PUB_DI_YF] != INDEX_INVALLID)
  389. && ((short)g_sw_pub.di_cfg_index[PUB_DI_JD] != INDEX_INVALLID))
  390. {
  391. g_run_stu.yf = stu_yf;
  392. g_run_stu.jd = stu_jd;
  393. }
  394. else if (((short)g_sw_pub.di_cfg_index[PUB_DI_YF] != INDEX_INVALLID)
  395. && ((short)g_sw_pub.di_cfg_index[PUB_DI_JD] == INDEX_INVALLID))
  396. {
  397. g_run_stu.yf = stu_yf;
  398. g_run_stu.jd = !g_run_stu.yf;
  399. }
  400. else if (((short)g_sw_pub.di_cfg_index[PUB_DI_YF] == INDEX_INVALLID)
  401. && ((short)g_sw_pub.di_cfg_index[PUB_DI_JD] != INDEX_INVALLID))
  402. {
  403. g_run_stu.yf = (!stu_jd);
  404. g_run_stu.jd = !g_run_stu.yf;
  405. }
  406. else
  407. {
  408. g_run_stu.yf = 0;
  409. }
  410. if ((short)g_sw_pub.di_cfg_index[PUB_DI_RST] != INDEX_INVALLID)
  411. {
  412. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_RST]];
  413. g_run_stu.fg = dido_di_is_on(ecd->slot,ecd->index);
  414. }
  415. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCJLSD] != INDEX_INVALLID)
  416. {
  417. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_DCJLSD]];
  418. g_run_stu.dcjlsd = dido_di_is_on(ecd->slot,ecd->index);
  419. if(g_run_stu.dcjlsd)
  420. {
  421. if(log_flag.mdygd)
  422. {
  423. load_hs_log_rcd(TYPE_MAIN_POW,true,NULL,"Main power disconnect",0);
  424. log_flag.mdygd = false;
  425. }
  426. if(!log_flag.sdygd)
  427. {
  428. load_hs_log_rcd(TYPE_STANDBY_POW,true,NULL,"Standby power supply",1);
  429. log_flag.sdygd = true;
  430. }
  431. }
  432. else
  433. {
  434. if(!log_flag.mdygd)
  435. {
  436. load_hs_log_rcd(TYPE_MAIN_POW,true,NULL,"Main power supply",1);
  437. log_flag.mdygd = true;
  438. }
  439. if(log_flag.sdygd)
  440. {
  441. load_hs_log_rcd(TYPE_STANDBY_POW,true,NULL,"Standby power disconnect",0);
  442. log_flag.sdygd = false;
  443. }
  444. }
  445. }
  446. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCDYGZ] != INDEX_INVALLID)
  447. {
  448. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_DCDYGZ]];
  449. g_run_stu.dcdygz = dido_di_is_on(ecd->slot,ecd->index);
  450. }
  451. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCQY] != INDEX_INVALLID)
  452. {
  453. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_DCQY]];
  454. g_run_stu.dcqy = dido_di_is_on(ecd->slot,ecd->index);
  455. }
  456. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCHHZT] != INDEX_INVALLID)
  457. {
  458. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_DCHHZT]];
  459. g_run_stu.dchh = dido_di_is_on(ecd->slot,ecd->index);
  460. }
  461. if ((short)g_sw_pub.di_cfg_index[PUB_DI_JS] != INDEX_INVALLID)
  462. {
  463. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_JS]];
  464. g_run_stu.js = dido_di_is_on(ecd->slot,ecd->index);
  465. }
  466. if ((short)g_sw_pub.di_cfg_index[PUB_DI_BHALL] != INDEX_INVALLID)
  467. {
  468. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_BHALL]];
  469. g_run_stu.bhall= dido_di_is_on(ecd->slot,ecd->index);
  470. }
  471. if ((short)g_sw_pub.di_cfg_index[PUB_DI_JX] != INDEX_INVALLID)
  472. {
  473. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_JX]];
  474. g_run_stu.bjx= dido_di_is_on(ecd->slot,ecd->index);
  475. }
  476. if ((short)g_sw_pub.di_cfg_index[PUB_DI_REBOOT] != INDEX_INVALLID)
  477. {
  478. u8 reboot;
  479. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_REBOOT]];
  480. reboot= dido_di_is_on(ecd->slot,ecd->index);
  481. if(reboot)
  482. {
  483. rt_printf("装置复位\r\n");
  484. watchdog_reset_cpu(2); //装置复位
  485. }
  486. }
  487. #ifdef KZ_OUT_TT
  488. if ((short)g_sw_pub.di_cfg_index[PUB_KZ_OUT_TT] != INDEX_INVALLID)
  489. {
  490. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_KZ_OUT_TT]];
  491. g_run_stu.kz_out_tt = dido_di_is_on(ecd->slot,ecd->index);
  492. }
  493. #endif
  494. if ((short)g_sw_pub.di_cfg_index[PUB_DI_RST_JS] != INDEX_INVALLID)
  495. {
  496. ecd = &g_equ_config_di[g_sw_pub.di_cfg_index[PUB_DI_RST_JS]];
  497. g_run_stu.fg_js = dido_di_is_on(ecd->slot,ecd->index);
  498. if(g_run_stu.fg_js)
  499. {
  500. g_run_stu.fg=1;
  501. g_run_stu.js=1;
  502. }
  503. else
  504. {
  505. g_run_stu.fg=0;
  506. g_run_stu.js=0;
  507. }
  508. }
  509. _rst_key_app();
  510. _rmt_key_app(dStep);
  511. g_run_stu.rmt_A = (g_rmt_op.key == (1<<RMT_A));
  512. g_run_stu.rmt_B = (g_rmt_op.key == (1<<RMT_B));
  513. g_run_stu.rmt_C = (g_rmt_op.key == (1<<RMT_C));
  514. g_run_stu.rmt_D = (g_rmt_op.key == (1<<RMT_D));
  515. for(sw=0;sw<g_sw_num;sw++)
  516. {
  517. TRELAY_T *pR=&g_tRelay[sw];
  518. RUN_STU_SW *prun=&pR->run_stu;
  519. TSWST *pSW =&pR->tSWST;
  520. TLOSTVOT_T *pSWLV = &g_tRelay[sw].tLostVot;
  521. TSWST *pSWST =&g_tRelay[sw].tSWST;
  522. bool pt1cyy,pt2cyy;
  523. static bool bhtt,fatt,fa_g_tt,fa_ls;
  524. if ((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] != INDEX_INVALLID)
  525. {
  526. //g_run_stu.hw[sw] = (g_di_stu.sw_di[sw] & (1<<SW_DI_KRHW))?1:0;
  527. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_KRHW]];
  528. prun->hw = dido_di_is_on(ecd->slot,ecd->index);
  529. }
  530. if ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] != INDEX_INVALLID)
  531. {
  532. //g_run_stu.tw[sw] = (g_di_stu.sw_di[sw] & (1<<SW_DI_KRTW))?1:0;
  533. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_KRTW]];
  534. prun->tw = dido_di_is_on(ecd->slot,ecd->index);
  535. }
  536. if ((short)g_sw[sw].di_cfg_index[SW_DI_HZWZ] != INDEX_INVALLID)
  537. {
  538. //g_run_stu.hw[sw] = (g_di_stu.sw_di[sw] & (1<<SW_DI_KRHW))?1:0;
  539. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_HZWZ]];
  540. prun->hzw = dido_di_is_on(ecd->slot,ecd->index);
  541. }
  542. if ((short)g_sw[sw].di_cfg_index[SW_DI_TZWZ] != INDEX_INVALLID)
  543. {
  544. //g_run_stu.tw[sw] = (g_di_stu.sw_di[sw] & (1<<SW_DI_KRTW))?1:0;
  545. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_TZWZ]];
  546. prun->tzw = dido_di_is_on(ecd->slot,ecd->index);
  547. }
  548. if ((short)g_sw[sw].di_cfg_index[SW_DI_WCN] != INDEX_INVALLID)
  549. {
  550. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_WCN]];
  551. prun->wcn = dido_di_is_on(ecd->slot, ecd->index);
  552. }
  553. else if ((short)g_sw[sw].di_cfg_index[SW_DI_YCN] != INDEX_INVALLID &&
  554. (short)g_sw[sw].di_cfg_index[SW_DI_WCN] == INDEX_INVALLID) // 2020-10-8 只配置了已储能遥信
  555. {
  556. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_YCN]];
  557. prun->wcn = !dido_di_is_on(ecd->slot, ecd->index); // 已储能取反
  558. }
  559. if ((short)g_sw[sw].di_cfg_index[SW_DI_GLDZ_HW] != INDEX_INVALLID)
  560. {
  561. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_GLDZ_HW]];
  562. prun->gld = dido_di_is_on(ecd->slot, ecd->index);
  563. }
  564. else if ((short)g_sw[sw].di_cfg_index[SW_DI_GLDZ_FW] != INDEX_INVALLID)
  565. {
  566. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_GLDZ_FW]];
  567. prun->gld = (dido_di_is_on(ecd->slot, ecd->index) == 1) ? 1 : 0;
  568. }
  569. if ((short)g_sw[sw].di_cfg_index[SW_DI_JDDZ_HW] != INDEX_INVALLID)
  570. {
  571. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_JDDZ_HW]];
  572. prun->jdd = dido_di_is_on(ecd->slot,ecd->index);
  573. }
  574. else if ((short)g_sw[sw].di_cfg_index[SW_DI_JDDZ_FW] != INDEX_INVALLID)
  575. {
  576. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_JDDZ_FW]];
  577. prun->gld = (dido_di_is_on(ecd->slot, ecd->index) == 1) ? 1 : 0;
  578. }
  579. if ((short)g_sw[sw].di_cfg_index[SW_DI_QYD_BS] != INDEX_INVALLID)
  580. {
  581. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_QYD_BS]];
  582. prun->qyd_bs= dido_di_is_on(ecd->slot,ecd->index);
  583. }
  584. if ((short)g_sw[sw].di_cfg_index[SW_DI_QYD_GJ] != INDEX_INVALLID)
  585. {
  586. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_QYD_GJ]];
  587. prun->qyd_gj = dido_di_is_on(ecd->slot,ecd->index);
  588. }
  589. if ((short)g_sw[sw].di_cfg_index[SW_DI_KZDX] != INDEX_INVALLID)
  590. {
  591. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_KZDX]];
  592. prun->kzdx= dido_di_is_on(ecd->slot,ecd->index);
  593. }
  594. if ((short)g_sw[sw].di_cfg_index[SW_DI_PT1SY] != INDEX_INVALLID)
  595. {
  596. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_PT1SY]];
  597. prun->pt1uf = dido_di_is_on(ecd->slot,ecd->index);
  598. }
  599. if ((short)g_sw[sw].di_cfg_index[SW_DI_PT2SY] != INDEX_INVALLID)
  600. {
  601. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_PT2SY]];
  602. prun->pt2uf = dido_di_is_on(ecd->slot,ecd->index);
  603. }
  604. sw_sh[sw] = 0;
  605. if ((short)g_sw[sw].di_cfg_index[SW_DI_SH] != INDEX_INVALLID)
  606. {
  607. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_SH]];
  608. sw_sh[sw] = dido_di_is_on(ecd->slot,ecd->index);
  609. }
  610. sw_sf[sw] = 0;
  611. if ((short)g_sw[sw].di_cfg_index[SW_DI_SF] != INDEX_INVALLID)
  612. {
  613. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_SF]];
  614. sw_sf[sw] = dido_di_is_on(ecd->slot,ecd->index);
  615. }
  616. if (((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] != INDEX_INVALLID)
  617. && ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] != INDEX_INVALLID))
  618. {
  619. prun->sw = (prun->hw<<1) | prun->tw;
  620. }
  621. else if (((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] != INDEX_INVALLID)
  622. && ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] == INDEX_INVALLID))
  623. {
  624. if (prun->hw) prun->sw = 2;
  625. if (!prun->hw) prun->sw = 1;
  626. prun->tw = !prun->hw;
  627. }
  628. else if (((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] == INDEX_INVALLID)
  629. && ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] != INDEX_INVALLID))
  630. {
  631. if (prun->tw) prun->sw = 1;
  632. if (!prun->tw) prun->sw = 2;
  633. prun->hw = !prun->tw;
  634. }
  635. else
  636. {
  637. prun->sw = 0;
  638. }
  639. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHZTT] != INDEX_INVALLID)
  640. {
  641. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BHZTT]];
  642. prun->bhztt = dido_di_is_on(ecd->slot,ecd->index);
  643. //#ifdef GD_AREA_ECZD_2020//2020指导意见使用停用FA及保护
  644. #if defined GD_AREA_ECZD_2020 || defined GD_AREA_MAIN_2020
  645. prun->bhztt= !prun->bhztt;
  646. #endif
  647. }
  648. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHTT] != INDEX_INVALLID)
  649. {
  650. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BHTT]];
  651. prun->bhtt = dido_di_is_on(ecd->slot,ecd->index)&&prun->bhztt;
  652. prun->bh_yx = dido_di_is_on(ecd->slot,ecd->index);
  653. }
  654. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_TT] != INDEX_INVALLID )
  655. {
  656. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_FA_TT]];
  657. prun->fatt = dido_di_is_on(ecd->slot,ecd->index)&&prun->bhztt;
  658. prun->fa_yx = dido_di_is_on(ecd->slot,ecd->index);
  659. }
  660. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_BS_TT] != INDEX_INVALLID )
  661. {
  662. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_FA_BS_TT]];
  663. if(dido_di_is_on(ecd->slot,ecd->index) == 1)//闭锁FA压板 广东电网提出预留此功能
  664. prun->fatt=0;//闭锁FA信号产生,强制退出就地FA功能
  665. }
  666. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_GOOSE] != INDEX_INVALLID)
  667. {
  668. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_FA_GOOSE]];
  669. prun->fa_g_tt = dido_di_is_on(ecd->slot,ecd->index)&&prun->bhztt;
  670. prun->fa_g_yx = dido_di_is_on(ecd->slot,ecd->index);
  671. }
  672. if ((short)g_sw[sw].di_cfg_index[SW_DI_CHZ] != INDEX_INVALLID)
  673. {
  674. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_CHZ]];
  675. prun->chzyb = (dido_di_is_on(ecd->slot,ecd->index));
  676. }
  677. if ((short)g_sw[sw].di_cfg_index[SW_DI_JZS_TT] != INDEX_INVALLID)
  678. {
  679. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_JZS_TT]];
  680. prun->jzs_tt = dido_di_is_on(ecd->slot,ecd->index);
  681. }
  682. #if defined GD_AREA_LIAONING_2021
  683. if ((short)g_sw[sw].di_cfg_index[SW_DI_B_SW] != INDEX_INVALLID)
  684. {
  685. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_B_SW]];
  686. prun->fa_start_hz = dido_di_is_on(ecd->slot,ecd->index);
  687. }
  688. #endif
  689. if ((short)g_sw[sw].di_cfg_index[SW_DI_KGYF] != INDEX_INVALLID)
  690. {
  691. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_KGYF]];
  692. prun->kgyf= dido_di_is_on(ecd->slot,ecd->index);
  693. }
  694. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_LS] != INDEX_INVALLID)
  695. {
  696. int dat;
  697. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_FA_LS]];
  698. dat= dido_di_is_on(ecd->slot,ecd->index);
  699. prun->fa_ls =dat;
  700. }
  701. else
  702. {
  703. prun->fa_ls = pRunSet->tSwSet[sw].bTT_fa_LL;
  704. }
  705. if ((short)g_sw[sw].di_cfg_index[SW_DI_BSCH] != INDEX_INVALLID)
  706. {
  707. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BSCH]];
  708. prun->bsch = dido_di_is_on(ecd->slot,ecd->index);
  709. }
  710. //相间且零序小于有流值,才认为线路无流
  711. pSW->uSWST.bFlag.bSXWL = LowRelay(g_sw[sw].m2_max,pRunSet->dIWL_SQR[sw],pRunSet->dIWL_SQR[sw],false) && LowRelay(g_ui[UI_SW_INDEX_BEGIN(sw)+SW_AC_I0].m2[0],pRunSet->dIWL_SQR[sw],pRunSet->dIWL_SQR[sw],false);
  712. // 外部开入合位,跳位判断
  713. pSW->uSWST.bFlag.bDIHW = (prun->sw==2 )?true:false;
  714. pSW->uSWST.bFlag.bDITW = (prun->sw==1 )?true:false;
  715. // 三相跳位,合闸位置
  716. pSW->uSWST.bFlag.bTZWZ = pSW->uSWST.bFlag.bDITW && pSW->uSWST.bFlag.bSXWL;
  717. pSW->uSWST.bFlag.bHZWZ = pSW->uSWST.bFlag.bDIHW || (!pSW->uSWST.bFlag.bSXWL);
  718. // 手合加速判断
  719. RunTR(&pSW->tTRunST_20s1s,pSW->uSWST.bFlag.bTZWZ,dStep);
  720. pSW->uSWST.bFlag.bSHJS = pSW->tTRunST_20s1s.boolTrip
  721. && (!pSW->uSWST.bFlag.bTZWZ);
  722. if((bhtt!=prun->bhtt)
  723. ||(fatt!=prun->fatt)
  724. ||(fa_g_tt!=prun->fa_g_tt)
  725. ||(fa_ls!=prun->fa_ls))
  726. {
  727. bhtt=prun->bhtt;
  728. fatt=prun->fatt;
  729. fa_g_tt=prun->fa_g_tt;
  730. fa_ls=prun->fa_ls;
  731. }
  732. // 曾有压判断,用于失压分闸
  733. pt1cyy = OverRelay(g_sw_pub.m2_max[2], pRunSet->tSwSet[sw].dU_fa_YY,pRunSet->tSwSet[sw].dU_fa_YY_fh, prun->pt1yy);
  734. //pt2cyy = OverRelay(g_sw_pub.m2_max[3], pRunSet->tSwSet[sw].dU_fa_YY, pRunSet->tSwSet[sw].dU_fa_YY_fh, prun->pt2yy);
  735. pt2cyy = OverRelay(g_sw_pub.m2_max[3], pRunSet->tSwSet[sw].dU_fa_YY2, pRunSet->tSwSet[sw].dU_fa_YY2_fh, prun->pt2yy);
  736. prun->pt1yy = pt1cyy;
  737. prun->pt2yy = pt2cyy;
  738. if(g_equ_config_ac[0].type-1==PUB_AC_UAB2 || g_equ_config_ac[0].type-1==PUB_AC_UA2)
  739. RunTR(&pSWLV->tCYY25ms0ms, pt2cyy||pSWST->uSWST.bFlag.bCYY, dStep);
  740. else
  741. RunTR(&pSWLV->tCYY25ms0ms, pt1cyy||pSWST->uSWST.bFlag.bCYY, dStep);
  742. pSWST->uSWST.bFlag.bCYY = pSWLV->tCYY25ms0ms.boolTrip&&pSW->uSWST.bFlag.bHZWZ;
  743. RunTR(&pR->tgoc.tCYY3sdelayms, pt1cyy||pt2cyy, dStep);
  744. pR->tgoc.psta.bFlag.bCYY =pR->tgoc.tCYY3sdelayms.boolTrip;
  745. // 弹簧未储能告警处理
  746. bTHWCNState = (pR->run_stu.wcn && pRunSet->tSwSet[sw].bTT_WCN);
  747. RunTR(&pSW->tTWCNGJ1s, bTHWCNState, dStep);
  748. pSW->uSWST.bFlag.bWCN = pSW->tTWCNGJ1s.boolTrip;
  749. // 控制回路告警处理
  750. #if 0
  751. bY = ((prun->tzw==0&&prun->hzw==0)||(prun->tzw==1&&prun->hzw==1))
  752. && ((short)g_sw[sw].di_cfg_index[SW_DI_HZWZ] != INDEX_INVALLID)
  753. && ((short)g_sw[sw].di_cfg_index[SW_DI_TZWZ] != INDEX_INVALLID)
  754. && pRunSet->tSwSet[sw].bTT_KZHL;
  755. bY1=pR->run_stu.kzdx&& pRunSet->tSwSet[sw].bTT_KZHL;
  756. #else//控制回路断线 1、控制回路断线遥信输入 2、HQ&TQ错误态&未知态 3、开关位置错误态&未知态
  757. if( ((short)g_sw[sw].di_cfg_index[SW_DI_HZWZ] != INDEX_INVALLID)&& ((short)g_sw[sw].di_cfg_index[SW_DI_TZWZ] != INDEX_INVALLID))//配置了HQ&TQ
  758. bY = (((prun->tzw==0&&prun->hzw==0)||(prun->tzw==1&&prun->hzw==1))&& pRunSet->tSwSet[sw].bTT_KZHL); //HQ&TQ错误
  759. else if( ((short)g_sw[sw].di_cfg_index[SW_DI_KRHW] != INDEX_INVALLID)&& ((short)g_sw[sw].di_cfg_index[SW_DI_KRTW] != INDEX_INVALLID))//必须配置开关双位置状态
  760. bY = (((prun->tw==0&&prun->hw==0)||(prun->tw==1&&prun->hw==1))&& pRunSet->tSwSet[sw].bTT_KZHL); //开关位置错误
  761. else
  762. bY = false;
  763. bY1=pR->run_stu.kzdx && pRunSet->tSwSet[sw].bTT_KZHL;
  764. #endif
  765. RunTR(&pSW->tTKZHLGJ1s, (bY||bY1), dStep);
  766. pSW->uSWST.bFlag.bKZHL = pSW->tTKZHLGJ1s.boolTrip;
  767. // 跳位有流告警处理
  768. bTWYL = (pSW->uSWST.bFlag.bDITW && (!pSW->uSWST.bFlag.bSXWL));
  769. RunTR(&pSW->tTTWYL_10S1S, bTWYL, dStep);
  770. pSW->uSWST.bFlag.bTWYL = pSW->tTTWYL_10S1S.boolTrip;
  771. // 每3秒才可进行一次手合动作,且仅能保持10ms
  772. RunTR(&pSW->tSHz3s10ms, (!sw_sh[sw]), dStep);
  773. pR->run_stu.sw_sh = (pSW->tSHz3s10ms.boolTrip && sw_sh[sw]&& g_run_stu.jd );
  774. // 每3秒才可进行一次手分动作
  775. RunTR(&pSW->tSTz3s10ms, (!sw_sf[sw]), dStep);
  776. pR->run_stu.sw_sf = (pSW->tSTz3s10ms.boolTrip && sw_sf[sw] && g_run_stu.jd );
  777. //CT相序检查
  778. {
  779. bool bok,bCheck;
  780. u32 da,db,dc;
  781. u16 soeno=EV_CTXXYC+sw*EV_SW_NUM;
  782. bCheck=((g_ui[UI_SW_INDEX(sw,SW_AC_IA)].chn_index != INDEX_INVALLID)
  783. &&(g_ui[UI_SW_INDEX(sw,SW_AC_IB)].chn_index != INDEX_INVALLID)
  784. &&(g_ui[UI_SW_INDEX(sw,SW_AC_IC)].chn_index != INDEX_INVALLID));
  785. da = _AbsL(g_ui[UI_SW_INDEX(sw,SW_AC_IA)].p - g_ui[UI_SW_INDEX(sw,SW_AC_IB)].p-120*65536);
  786. db = _AbsL(g_ui[UI_SW_INDEX(sw,SW_AC_IB)].p - g_ui[UI_SW_INDEX(sw,SW_AC_IC)].p+240*65536);
  787. dc = _AbsL(g_ui[UI_SW_INDEX(sw,SW_AC_IA)].p - g_ui[UI_SW_INDEX(sw,SW_AC_IC)].p+120*65536);
  788. bok=pRunSet->bTT_CheckPhase
  789. &&(g_sw[sw].m2_min>pRunSet->dIWL_SQR[sw]) //大于无流定值
  790. &&bCheck
  791. &&((da>15*65536)||(db>15*65536)||(dc>15*65536)); //三相电压角度差30度
  792. RunTR(&pSW->tCTXXYC, bok, dStep);
  793. if(pSW->tCTXXYC.boolTrip)
  794. {
  795. if(soe_check(soeno)==false) //
  796. {
  797. soe_record_ev(soeno, 1, 0,0,0 );
  798. }
  799. }
  800. else
  801. {
  802. if(soe_check(soeno)==true) //
  803. {
  804. soe_record_ev(soeno, 0, 0,0,0 );
  805. }
  806. }
  807. }
  808. // CT 异常判断
  809. {
  810. bool bok,bCheck;
  811. u16 soeno=EV_CTYC+sw*EV_SW_NUM;
  812. bCheck=((g_ui[UI_SW_INDEX(sw,SW_AC_IA)].chn_index != INDEX_INVALLID)
  813. &&(g_ui[UI_SW_INDEX(sw,SW_AC_IC)].chn_index != INDEX_INVALLID));
  814. bok=pRunSet->bTT_CTYC
  815. &&(g_sw[sw].m2_min<pRunSet->dIWL_SQR[sw]) //最小值小于无流定值
  816. &&(g_sw[sw].m2_max>pRunSet->dIWL_SQR[sw])// 最大值大于无流定值
  817. &&bCheck;
  818. RunTR(&pSW->tCTYC, bok, dStep);
  819. if(pSW->tCTYC.boolTrip)
  820. {
  821. if(soe_check(soeno)==false) //
  822. {
  823. soe_record_ev(soeno, 1, 0,0,0 );
  824. }
  825. }
  826. else
  827. {
  828. if(soe_check(soeno)==true) //
  829. {
  830. soe_record_ev(soeno, 0, 0,0,0 );
  831. }
  832. }
  833. }
  834. { //电池电压低判断:两路直流,任一路大于直流整定值的一半,小于整定值0.8倍,3秒后报异常,若定值为0 ,退出判断
  835. bool bCheck,bCheck2,bLowDC;
  836. #ifdef DC_TEST_ONE
  837. bCheck=((g_sw_pub.ac_in[PUB_AC_IN_UZ1]>(pRunSet->dwZL/2))&&(g_sw_pub.ac_in[PUB_AC_IN_UZ1]<pRunSet->dwZL*0.8))
  838. &&(pRunSet->dwZL>0);
  839. bCheck2=(g_sw_pub.ac_in[PUB_AC_IN_UZ1]>(pRunSet->dwZL+pRunSet->dwZL*0.2))
  840. &&pRunSet->dwZL>0; //任一直流电压大于1.2倍->过压
  841. #else
  842. bCheck=((((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ1]>(pRunSet->dwZL/2))&&((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ1]<pRunSet->dwZL*0.8))
  843. ||(((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ2]>(pRunSet->dwZL/2))&&((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ2]<pRunSet->dwZL*0.8)))
  844. &&(pRunSet->dwZL>0);
  845. bCheck2=(((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ1]>(pRunSet->dwZL+pRunSet->dwZL*0.2))
  846. ||((DWORD)g_sw_pub.ac_in[PUB_AC_IN_UZ2]>(pRunSet->dwZL+pRunSet->dwZL*0.2)))
  847. &&pRunSet->dwZL>0; //任一直流电压大于1.2倍->过压
  848. #endif
  849. RunTR(&pSW->tBatChk, bCheck, dStep);
  850. RunTR(&pSW->tBatOver, bCheck2, dStep);
  851. if ((short)g_sw_pub.di_cfg_index[PUB_DI_DCQY] == INDEX_INVALLID)
  852. {
  853. bLowDC = pSW->tBatChk.boolTrip;
  854. }
  855. else
  856. {
  857. bLowDC = g_run_stu.dcqy;
  858. }
  859. if(pSW->tBatOver.boolTrip)//电池过压
  860. {
  861. if(soe_check(EV_BAT_OVER)==false)
  862. {
  863. soe_record_ev(EV_BAT_OVER, 1, 0,0,0 );
  864. }
  865. }
  866. else if(soe_check(EV_BAT_OVER)==true) //
  867. {
  868. soe_record_ev(EV_BAT_OVER, 0, 0,0,0 );
  869. }
  870. if(bLowDC)
  871. {
  872. if(soe_check(EV_BATERR)==false) //
  873. {
  874. soe_record_ev(EV_BATERR, 1, 0,0,0 );
  875. }
  876. }
  877. else if(soe_check(EV_BATERR)==true) //
  878. {
  879. soe_record_ev(EV_BATERR, 0, 0,0,0 );
  880. }
  881. }
  882. #ifdef CUSTOMIZE_BZT //备自投
  883. //备自投#1线路开关位置
  884. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL1_HW] != INDEX_INVALLID)
  885. {
  886. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL1_HW]];
  887. pSW->uSWST.bFlag.b1DLHW = dido_di_is_on(ecd->slot,ecd->index);
  888. }
  889. else
  890. {
  891. pSW->uSWST.bFlag.b1DLHW = prun->hw; //合位、进线1合位共用
  892. }
  893. if((short)g_sw[sw].di_cfg_index[SW_DI_DL1_TW] != INDEX_INVALLID)
  894. {
  895. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL1_TW]];
  896. pSW->uSWST.bFlag.b1DLHW = !dido_di_is_on(ecd->slot,ecd->index);
  897. }
  898. else
  899. {
  900. pSW->uSWST.bFlag.b1DLHW = !prun->tw;
  901. }
  902. //备自投#2线路开关位置
  903. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL2_HW] != INDEX_INVALLID)
  904. {
  905. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL2_HW]];
  906. pSW->uSWST.bFlag.b2DLHW = dido_di_is_on(ecd->slot,ecd->index);
  907. }
  908. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL2_TW] != INDEX_INVALLID)
  909. {
  910. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL2_TW]];
  911. pSW->uSWST.bFlag.b2DLHW = !dido_di_is_on(ecd->slot,ecd->index);
  912. }
  913. //备自投#3线路开关位置
  914. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL3_HW] != INDEX_INVALLID)
  915. {
  916. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL3_HW]];
  917. pSW->uSWST.bFlag.b3DLHW = dido_di_is_on(ecd->slot,ecd->index);
  918. }
  919. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL3_TW] != INDEX_INVALLID)
  920. {
  921. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL3_TW]];
  922. pSW->uSWST.bFlag.b3DLHW = !dido_di_is_on(ecd->slot,ecd->index);
  923. }
  924. //备自投闭锁位置
  925. if ((short)g_sw[sw].di_cfg_index[SW_DI_BSBZT] != INDEX_INVALLID)
  926. {
  927. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BSBZT]];
  928. pSW->uSWST.bFlag.bBZTBS = dido_di_is_on(ecd->slot,ecd->index);
  929. }
  930. if ((short)g_sw[sw].di_cfg_index[SW_DI_BSBZT] != INDEX_INVALLID)
  931. {
  932. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BSBZT]];
  933. pSW->uSWST.bFlag.bBZTBS = dido_di_is_on(ecd->slot,ecd->index);
  934. }
  935. if ((short)g_sw[sw].di_cfg_index[SW_DI_BZT_SY] != INDEX_INVALLID)
  936. {
  937. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_BZT_SY]];
  938. pSW->uSWST.bFlag.bBZTSY = dido_di_is_on(ecd->slot,ecd->index) || pSW->uSWST.bFlag.bBZTSY;
  939. }
  940. if(pRunSet->tSwSet[sw].bZF)
  941. {
  942. if((g_sw[sw].do_cfg_index[SW_DO_JX1_SY] < g_equ_config->do_num) && (g_sw[sw].do_cfg_index[SW_DO_JX2_SY] == 0xffff))
  943. {
  944. pSW->uSWST.bFlag.b1DLHW = prun->hw; //使用分合位
  945. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL2_HW] != INDEX_INVALLID)
  946. {
  947. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL2_HW]];
  948. pSW->uSWST.bFlag.b2DLHW = dido_di_is_on(ecd->slot,ecd->index);
  949. }
  950. }
  951. else if((g_sw[sw].do_cfg_index[SW_DO_JX2_SY] < g_equ_config->do_num) && (g_sw[sw].do_cfg_index[SW_DO_JX1_SY] == 0xffff))
  952. {
  953. if ((short)g_sw[sw].di_cfg_index[SW_DI_DL1_HW] != INDEX_INVALLID)
  954. {
  955. ecd = &g_equ_config_di[g_sw[sw].di_cfg_index[SW_DI_DL1_HW]];
  956. pSW->uSWST.bFlag.b1DLHW = dido_di_is_on(ecd->slot,ecd->index);
  957. }
  958. pSW->uSWST.bFlag.b2DLHW = prun->hw; //使用分合位
  959. }
  960. }
  961. #endif
  962. //大电流闭锁重合
  963. {
  964. //大电流闭锁重合
  965. bIBSCHZ = OverRelay(g_sw[sw].m2_max, pRunSet->tSwSet[sw].dIBSCHZ, pRunSet->tSwSet[sw].dIBSCHZ, false);
  966. RunTR(&pSW->tIBSCHZ, bIBSCHZ && pRunSet->tSwSet[sw].bTT_IBSCHZ, dStep);
  967. pSW->uSWST.bFlag.bIBSCHZ = pSW->tIBSCHZ.boolTrip;
  968. }
  969. }
  970. #ifdef IEC_NOLINK_NO_CALLYX
  971. g_link_comm.link_err = getIecLink101Status();
  972. RunTR(&g_link_comm.tLinkBreak,g_link_comm.link_err,dStep);
  973. g_link_comm.link_flag = g_link_comm.tLinkBreak.boolTrip||(!g_link_comm.link_err);
  974. #endif
  975. return 0;
  976. }
  977. /******************************************************************************
  978. 函数名称: app_action_result
  979. 函数版本: 01.01
  980. 创建作者: xxxxxx
  981. 创建日期: 2015-10-23
  982. 函数说明: 应用逻辑运行结果
  983. 参数说明: 无
  984. 返回值: 成功返回0.
  985. 修改记录:
  986. */
  987. // 动作灯: 线路故障指示灯为红色,故障状态时闪烁,闭锁合闸时常亮,非故障和非闭锁状态下熄灭
  988. // LOCK灯,为FA功能使用,过流闭锁不点亮,为自动处理的状态灯,不建议复归时处理
  989. int app_action_result(void)
  990. {
  991. int sw,i;
  992. u8 exerr, gl, jd,gj, chzdz, bs, gz,bvol,sy,gy,fdl;
  993. for (sw=0; sw<g_sw_num; sw++)
  994. {
  995. TRELAY_T *pR=&g_tRelay[sw];
  996. RUN_STU_SW *prun=&pR->run_stu;
  997. // 每个开关都需要重新初始化变量
  998. exerr=0;
  999. gl=0;
  1000. jd=0;
  1001. chzdz=0;
  1002. bs=0;
  1003. gz=0;
  1004. sy=0;
  1005. gy=0;
  1006. fdl=0;
  1007. gj = 0;
  1008. // 外部异常
  1009. if (pR->tSWST.uSWST.bFlag.bWCN)
  1010. {
  1011. exerr = 1;
  1012. }
  1013. prun->gj_led =0;
  1014. //告警的时候不亮动作灯
  1015. if(pR->tOC[BH_GL1].sta.bFlag.bGjLed
  1016. || pR->tOC[BH_GL2].sta.bFlag.bGjLed
  1017. || pR->tOC[BH_GL3].sta.bFlag.bGjLed
  1018. || pR->tOC[BH_LX1].sta.bFlag.bGjLed
  1019. || pR->tOC[BH_LX2].sta.bFlag.bGjLed
  1020. #ifdef DISP_SET_LX3
  1021. || pR->tOC[BH_LX3].sta.bFlag.bGjLed
  1022. #endif
  1023. || pR->tOC[FA_GL2].sta.bFlag.bGjLed
  1024. || pR->tOC[FA_LX2].sta.bFlag.bGjLed
  1025. || pR->tOVER_U0TZ.bU0GjLed
  1026. || pR->tU0TZ.bU0GjLed)
  1027. {
  1028. if(pR->tOC[BH_GL1].sta.bFlag.bGjLed
  1029. || pR->tOC[BH_GL2].sta.bFlag.bGjLed
  1030. || pR->tOC[BH_GL3].sta.bFlag.bGjLed
  1031. || pR->tOC[FA_GL2].sta.bFlag.bGjLed)
  1032. {
  1033. gl = 1;
  1034. }
  1035. #if 0
  1036. else
  1037. #else
  1038. if(pR->tOC[BH_LX1].sta.bFlag.bGjLed
  1039. || pR->tOC[BH_LX2].sta.bFlag.bGjLed
  1040. #ifdef DISP_SET_LX3
  1041. || pR->tOC[BH_LX3].sta.bFlag.bGjLed
  1042. #endif
  1043. || pR->tOC[FA_LX2].sta.bFlag.bGjLed
  1044. || pR->tOVER_U0TZ.bU0GjLed
  1045. || pR->tU0TZ.bU0GjLed)
  1046. #endif
  1047. {
  1048. jd = 1;
  1049. }
  1050. gj = 1;
  1051. prun->gj_led =1;
  1052. prun->dz=RY_DZ_BHGJ;
  1053. }
  1054. // 保护过流
  1055. if (pR->tOC[BH_GL1].sta.bFlag.bDzLed
  1056. || pR->tOC[BH_GL2].sta.bFlag.bDzLed
  1057. || pR->tOC[BH_GL3].sta.bFlag.bDzLed
  1058. || pR->tOC[BH_GLJS].sta.bFlag.bDzLed
  1059. || pR->tOC[FA_GL].sta.bFlag.bDzLed
  1060. || pR->tOC[FA_GL_II].sta.bFlag.bDzLed
  1061. //|| pR->tOC[FA_GL2].sta.bFlag.bGj
  1062. || pR->tgoc.bglTzLed // 智能FA过流
  1063. #ifdef GD_AREA_ZHONGSHAN_2020
  1064. ||pR->tgoc.tOc[FAG_GL1].sta.bFlag.bDzLed
  1065. ||pR->tgoc.tOc[FAG_GL2].sta.bFlag.bDzLed
  1066. #endif
  1067. || pR->uGLFSX.bFlag.bDzLed
  1068. || pR->tOC[FA_DLBS].sta.bFlag.bDzLed) // 过流闭锁,点过流灯
  1069. {
  1070. gl = 1;
  1071. gj = 1;
  1072. prun->dz=RY_DZ_BHT;
  1073. prun->gj_led = 1;
  1074. }
  1075. // 保护接地
  1076. if (pR->tOC[BH_LX1].sta.bFlag.bDzLed
  1077. || pR->tOC[BH_LX2].sta.bFlag.bDzLed
  1078. #ifdef DISP_SET_LX3
  1079. || pR->tOC[BH_LX3].sta.bFlag.bDzLed
  1080. #endif
  1081. || pR->tOC[BH_LXJS].sta.bFlag.bDzLed
  1082. || pR->tOC[FA_LX].sta.bFlag.bDzLed
  1083. //|| pR->tOC[FA_LX2].sta.bFlag.bGj
  1084. #ifdef XDL_ZT
  1085. || xdl_is_dz(sw) // 增加小电流接地
  1086. #endif
  1087. #ifdef FUN_JDXX
  1088. || pR->tJD.sta.bFlag.bTZLed
  1089. || pR->tJD.sta.bFlag.bGJLed
  1090. #endif
  1091. #ifdef GD_AREA_ZHONGSHAN_2020
  1092. ||pR->tgoc.tOc[FAG_LX].sta.bFlag.bDzLed
  1093. #endif
  1094. || pR->tgoc.blxTzLed // 智能FA过流
  1095. || pR->tXXTZ.bU0Led //零序选线跳闸
  1096. || pR->tU0TZ.bU0Led
  1097. || pR->tOVER_U0TZ.bU0Led)
  1098. {
  1099. jd = 1;
  1100. gj = 1;
  1101. prun->dz=RY_DZ_BHT;
  1102. prun->gj_led = 1;
  1103. }
  1104. for(i=0;i<8;i++)
  1105. {
  1106. fdl|=pR->tFdl[i].sta.bFlag.bTz;
  1107. }
  1108. //失压跳闸+智能分布式越级跳,首端失压跳,故障隔离跳,通信异常跳,都亮动作灯
  1109. if (pR->tLostVot.bLostVotLed
  1110. || pR->tgoc.bextTzLed
  1111. || pR->tgoc.bsdTzLed
  1112. || pR->tgoc.bgzglTzLed
  1113. || pR->tgoc.berrTzLed )// goose
  1114. {
  1115. prun->dz=RY_DZ_BHT;
  1116. }
  1117. //过压压跳闸
  1118. if (pR->tDYJL.bLed||pR->tPLJL.bLed)
  1119. {
  1120. gy = 1;
  1121. }
  1122. // 重合闸动作
  1123. if (pR->tCHZ.sta.bFlag.bCHZLed)
  1124. {
  1125. chzdz = 1;
  1126. }
  1127. // 闭锁
  1128. if ( pR->tSDHZ.bL_BSLed
  1129. || pR->tSDHZ.bS_BSLed)
  1130. {
  1131. bs = 1;
  1132. }
  1133. //重合闸充电标志
  1134. prun->chzcd=pR->tCHZ.sta.bFlag.bCDWC;
  1135. if(g_tRelay[sw].tCHZ.wAR_ActTimes>=pRunSet->tSwSet[sw].d_chz_times)
  1136. {
  1137. prun->chzcd=0; //最后一次重合后灭灯,复归后点亮
  1138. }
  1139. prun->exerr = exerr;
  1140. prun->gl = gl;
  1141. prun->jd = jd||pR->tOC[FA_LX2].sta.bFlag.bGj||pR->tU0TZ.bU0GjLed || pR->tU0TZ.bU0Led;
  1142. prun->chzdz = chzdz;
  1143. prun->bs = bs;
  1144. prun->gy=gy;
  1145. /*if(gj)//只告警的时候不亮动作灯
  1146. {
  1147. prun->dz = RY_DZ_NULL;
  1148. prun->gj_led =1;
  1149. }
  1150. else if (gl || jd || chzdz ||sy||gy||fdl) // 故障状态,动作灯闪烁 (过流、接地、重合闸、过载,失压)
  1151. {
  1152. prun->dz = RY_DZ_BHT;
  1153. prun->gj_led =1;
  1154. }
  1155. else */
  1156. if ( bs && pR->tSDHZ.bS_BSLed) // X Y闭锁,动作灯常亮
  1157. {
  1158. prun->dz = RY_DZ_XYBS; // 常亮
  1159. }
  1160. if(prun->dz==RY_DZ_XYBS)
  1161. {
  1162. if(!bs) //闭锁灯自动复归
  1163. {
  1164. prun->dz=RY_DZ_NULL;
  1165. }
  1166. }
  1167. bvol=false;
  1168. for(i=0;i<=VOL_DDY_Uca2;i++)
  1169. {
  1170. bvol|=g_tVol[i].sta.bFlag.bGj;
  1171. }
  1172. }
  1173. // 动作总
  1174. g_run_stu.pubdz= run_status_dz_all();
  1175. return 0;
  1176. }
  1177. u32 rmtpair_dely[2][2]={{0, 0},{0, 0}}; // 用于遥控器配对延时返回
  1178. /*------------------------------ 内部函数 -------------------------------------
  1179. 内部函数以下划线‘_’开头,不需要检查参数的合法性.
  1180. */
  1181. /******************************************************************************
  1182. 函数名称: rmt_key_app
  1183. 函数版本: 01.01
  1184. 创建作者: xxxxxx
  1185. 创建日期: 2015-05-13
  1186. 函数说明: 遥控器按键应用逻辑
  1187. 参数说明: 无
  1188. 返回值: 成功返回0.
  1189. 修改记录:
  1190. */
  1191. int _rmt_key_app(u32 dStep)
  1192. {
  1193. u8 key;
  1194. if (rmtpair_dely[0][0] || rmtpair_dely[1][0])
  1195. {
  1196. return -1;
  1197. }
  1198. for (key=0; key<RMT_KEY_NUM; key++)
  1199. {
  1200. switch(g_rmt_op.step[key])
  1201. {
  1202. case 0:
  1203. // 按键0状态
  1204. g_rmt_op.step[key] = (g_rmt_op.key == (1<<key)) ? 1 : 0;
  1205. break;
  1206. case 1:
  1207. // 按键1->0状态
  1208. g_rmt_op.step[key] = (g_rmt_op.key == (1<<key)) ? 1 : 2;
  1209. break;
  1210. case 2:
  1211. // 按键1->0状态
  1212. g_rmt_op.key_en[key] = 1;
  1213. g_rmt_op.step[key] = 0;
  1214. break;
  1215. }
  1216. }
  1217. switch(g_rmt_op.stu)
  1218. {
  1219. case RMTSTU_NULL:
  1220. // 在空闲态,有解锁按键时,进入解锁状态
  1221. if (g_rmt_op.key_en[RMT_KEY_ULK])
  1222. {
  1223. g_rmt_op.stu = RMTSTU_ULOCK;
  1224. g_rmt_op.key_en[RMT_KEY_ULK] = 0;
  1225. ResetTR(&g_rmt_op.tTULK3STime);
  1226. }
  1227. g_rmt_op.key_en[RMT_KEY_FZ] = 0;
  1228. g_rmt_op.key_en[RMT_KEY_HZ] = 0;
  1229. break;
  1230. case RMTSTU_ULOCK:
  1231. // 在解锁态,打开3秒计时,3秒内有分闸或合闸按键,进入分闸或合闸处理,否则返回空闲态
  1232. RunTR(&g_rmt_op.tTULK3STime, 1, dStep);
  1233. if (g_rmt_op.tTULK3STime.boolTrip)
  1234. {
  1235. g_rmt_op.stu = RMTSTU_NULL;
  1236. }
  1237. else
  1238. {
  1239. if (g_rmt_op.key_en[RMT_KEY_FZ])
  1240. {
  1241. g_rmt_op.stu = RMTSTU_FZ;
  1242. g_rmt_op.key_en[RMT_KEY_FZ] = 0;
  1243. ResetTR(&g_rmt_op.tTULK3STime);
  1244. }
  1245. else if (g_rmt_op.key_en[RMT_KEY_HZ])
  1246. {
  1247. g_rmt_op.stu = RMTSTU_HZ;
  1248. g_rmt_op.key_en[RMT_KEY_HZ] = 0;
  1249. ResetTR(&g_rmt_op.tTULK3STime);
  1250. }
  1251. }
  1252. break;
  1253. case RMTSTU_FZ:
  1254. // 发出分闸指令,返回空闲态
  1255. g_rmt_op.cmd = CMD_FZ;
  1256. g_rmt_op.stu = RMTSTU_NULL;
  1257. break;
  1258. case RMTSTU_HZ:
  1259. // 发出合闸指令,返回空闲态
  1260. g_rmt_op.cmd = CMD_HZ;
  1261. g_rmt_op.stu = RMTSTU_NULL;
  1262. break;
  1263. }
  1264. // 有复归按键,发出复归指令
  1265. if (g_rmt_op.key_en[RMT_KEY_FG])
  1266. {
  1267. g_rmt_op.cmd = CMD_FG;
  1268. g_rmt_op.key_en[RMT_KEY_FG] = 0;
  1269. }
  1270. return 0;
  1271. }
  1272. /******************************************************************************
  1273. 函数名称: _rst_key_app
  1274. 函数版本: 01.01
  1275. 创建作者: xxxxxx
  1276. 创建日期: 2015-05-13
  1277. 函数说明: 复归按键
  1278. 参数说明: 无
  1279. 返回值: 成功返回0.
  1280. 修改记录:
  1281. */
  1282. int _rst_key_app(void)
  1283. {
  1284. static u8 fg_flag=0;
  1285. if(g_run_stu.fg)
  1286. {
  1287. if (!fg_flag)
  1288. {
  1289. ResetHzLed(0);
  1290. SignalReset(0,true);
  1291. fg_flag = 1;
  1292. }
  1293. }
  1294. else
  1295. {
  1296. fg_flag = 0;
  1297. }
  1298. return 0;
  1299. }
  1300. /******************************************************************************
  1301. 函数名称: _create_instu_file
  1302. 函数版本: 01.01
  1303. 创建作者: xxxxxx
  1304. 创建日期: 2015-04-16
  1305. 函数说明: 创建内部状态描述文件
  1306. 参数说明: 无
  1307. 返回值: 成功返回0.
  1308. 修改记录:
  1309. */
  1310. int _create_instu_file(void)
  1311. {
  1312. unsigned int i,file_length;
  1313. u16 crc16;
  1314. char *p;
  1315. loff_t pos;
  1316. struct file * pfile;
  1317. struct instu_file_head_data fh;
  1318. struct instu_desc desc;
  1319. // 写文件头
  1320. // 配置文件头
  1321. memset(&fh,0,sizeof(fh));
  1322. fh.cfh.signature = SIG_INSTU_FILE;
  1323. fh.cfh.version = INSTU_FILE_VERSION;
  1324. //装置类型
  1325. // 公共类三遥资源
  1326. fh.instu_addr = FILE_ADDR_ALGIN(sizeof(fh));
  1327. fh.instu_num = INSTU_NUM;
  1328. // 得到文件长度
  1329. file_length = FILE_ADDR_ALGIN(fh.instu_addr + fh.instu_num * sizeof(struct instu_desc));
  1330. // 分配并初始化空间
  1331. p = rt_malloc(file_length + 2); //加crc长度
  1332. if(!p)
  1333. {
  1334. return -1;
  1335. }
  1336. memset(p,0,file_length);
  1337. // 写入文件头
  1338. memcpy(p,(char *)&fh,sizeof(fh));
  1339. // 写内部状态描述
  1340. for(i=0; i<fh.instu_num; i++)
  1341. {
  1342. memset(&desc,0,sizeof(desc));
  1343. if (i < INSTU_NUM)
  1344. {
  1345. desc.type = g_instu_desc[i].type;
  1346. strncpy(desc.name,g_instu_desc[i].name,20);
  1347. desc.name[20-1] = 0;
  1348. }
  1349. memcpy(p + fh.instu_addr + i*sizeof(desc), (char *)&desc, sizeof(desc));
  1350. }
  1351. // 创建描述文件
  1352. pfile = rt_file_open("/tmp/instu.bin",O_CREAT|O_RDWR|O_TRUNC,0);
  1353. if(IS_ERR(pfile))
  1354. {
  1355. rt_free(p);
  1356. return -1;
  1357. }
  1358. // 计算CRC
  1359. crc16 = CrcStr(p,file_length);
  1360. memcpy(p+file_length,&crc16,2);
  1361. pos = 0;
  1362. rt_file_write(pfile,p,file_length + 2,&pos);
  1363. rt_file_close(pfile,0);
  1364. rt_free(p);
  1365. return 0;
  1366. }
  1367. /*------------------------------ 测试函数 -------------------------------------
  1368. 一个实体文件必须带一个本模块的测试函数来进行单元测试,如果的确不方便在本模块中
  1369. 进行单元测试,必须在此注明实际的测试位置(例如在哪个实体文件中使用哪个测试函数).
  1370. */
  1371. int runstu_printf(void)
  1372. {
  1373. rt_printf("内部状态信息:\r\n");
  1374. rt_printf("yf=%d\r\n",g_run_stu.yf);
  1375. return 0;
  1376. }
  1377. //========================== 本文件结束 =============================