protect.c 58 KB

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  1. /******************************************************************************
  2. 版权所有:
  3. 文件名称: protect.c
  4. 文件版本: 01.01
  5. 创建作者: xxxxxx
  6. 创建日期: 2012-03-28
  7. 功能说明: 保护整组处理过程
  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. #define SW_I_NUM 4 // 突变量算法仅涉及三相相电流及零序电流
  17. /*------------------------------ 类型结构 -------------------------------------
  18. */
  19. /*------------------------------ 全局变量 -------------------------------------
  20. */
  21. struct protect_stu g_protect; // 保护整组处理过程
  22. TRELAY_T g_tRelay[SWITCH_NUM_MAX];
  23. u16 wIQdCnt[SWITCH_NUM_MAX][SW_I_NUM]; // 突变量启动计数器
  24. static DWORD dTAfterFault=0;
  25. /*------------------------------ 函数声明 -------------------------------------
  26. */
  27. static int _protect_amp_qd(u32 dStep);
  28. static int _protect_gzcl_init(void);
  29. static int _protect_gzcl_process(void);
  30. static int _protect_zzfg_check(u32 dStep);
  31. static int _protect_zzfg(void);
  32. static int _protect_sw_tz(u32 dStep);
  33. static int _protect_sw_hz(u32 dStep);
  34. static int _protect_alarm(void);
  35. static int _protect_rmt_sw (u32 dStep);
  36. static int _protect_sfsh_clr(void);
  37. static bool _protect_check_fault(int sw);
  38. /*------------------------------ 外部函数 -------------------------------------
  39. 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.
  40. */
  41. /******************************************************************************
  42. 函数名称: protect_init
  43. 函数版本: 01.01
  44. 创建作者: xxxxxx
  45. 创建日期: 2015-05-13
  46. 函数说明: 保护相关标志初始化
  47. 参数说明: 无
  48. 返回值: 成功返回0.
  49. 修改记录:
  50. */
  51. int protect_init(void)
  52. {
  53. int i;
  54. // 初始化保护整组相关标志
  55. memset(&g_protect, 0, sizeof(g_protect));
  56. memset(&wIQdCnt,0,sizeof(wIQdCnt));
  57. // 初始化保护相关标志
  58. for(i=0;i<SWITCH_NUM_MAX;i++)
  59. {
  60. memset(&g_tRelay[i],0,sizeof(TRELAY_T));
  61. }
  62. hcbs_init();
  63. #ifdef FUN_JDXX
  64. jdxx_init();
  65. #endif
  66. return 0;
  67. }
  68. /******************************************************************************
  69. 函数名称: _protect_sg_all
  70. 函数版本: 01.01
  71. 创建作者: xxxxxx
  72. 创建日期: 2015-7-20
  73. 函数说明: 事故总巡检
  74. 参数说明: 无
  75. 返回值: 成功返回0.
  76. 修改记录:
  77. */
  78. int _protect_sg_all(void)
  79. {
  80. bool ret=0;
  81. ret = check_fault();
  82. if (ret)
  83. {
  84. if(soe_check(FAULT_ALL)==false)
  85. {
  86. soe_record_ev(FAULT_ALL, 1, 0,0,0);
  87. }
  88. }
  89. else
  90. {
  91. if(soe_check(FAULT_ALL)==true)
  92. {
  93. soe_record_ev(FAULT_ALL, 0, 0,0,0);
  94. }
  95. }
  96. return 0;
  97. }
  98. #ifdef FUNC_DRIVE_JY
  99. static void clear_func_drive(u32 dStep)
  100. {
  101. int sw = 0;
  102. if(!gb_drive.b_drive_on)
  103. {
  104. ResetTR(&gb_drive.tDriveUa1Time);
  105. ResetTR(&gb_drive.tDriveUa2Time);
  106. ResetTR(&gb_drive.tDriveU0Time);
  107. ResetTR(&gb_drive.tDriveITime);
  108. ResetTR(&gb_drive.tDriveI0Time);
  109. if(gb_drive.b_drive_on_check && soe_check(EV_HZFAIL+sw*EV_SW_NUM))
  110. {//分/合闸拒动时10S后重新分/合闸
  111. RunTR(&gb_drive.tDriveAgainTime,true,dStep);
  112. if(gb_drive.tDriveAgainTime.boolTrip)
  113. {
  114. if(soe_check(EV_DRIVE_ADD_HZ+sw*EV_SW_NUM)==false) //传动补发合闸
  115. {
  116. soe_record_ev(EV_DRIVE_ADD_HZ+sw*EV_SW_NUM, 1, 0,0,0 );
  117. }
  118. if(soe_check(EV_DRIVE_ADD_HZ+sw*EV_SW_NUM)==true) //传动补发合闸返回
  119. {
  120. soe_record_ev(EV_DRIVE_ADD_HZ+sw*EV_SW_NUM, 0, 0,0,0 );
  121. }
  122. gb_drive.b_drive_on_check = false;
  123. gb_drive.b_drive_success_again = true;
  124. if(BH_ALL_EN(sw))
  125. gb_drive.b_bh_reclose = true;
  126. else if(FA_ALL_EN(sw))
  127. gb_drive.b_fa_reclose = true;
  128. }
  129. }
  130. return;
  131. }
  132. RunTR(&gb_drive.tDriveUa1Time,true,dStep);
  133. RunTR(&gb_drive.tDriveUa2Time,true,dStep);
  134. RunTR(&gb_drive.tDriveU0Time,true,dStep);
  135. RunTR(&gb_drive.tDriveITime,true,dStep);
  136. RunTR(&gb_drive.tDriveI0Time,true,dStep);
  137. ResetTR(&gb_drive.tDriveAgainTime);
  138. if(FA_ALL_EN(sw))
  139. {
  140. if(gb_drive.tDriveUa1Time.boolTrip
  141. && gb_drive.tDriveUa2Time.boolTrip
  142. && gb_drive.tDriveU0Time.boolTrip
  143. && gb_drive.tDriveITime.boolTrip
  144. && gb_drive.tDriveI0Time.boolTrip)
  145. {
  146. gb_drive.b_drive_on = false;
  147. }
  148. }
  149. }
  150. #endif
  151. #ifdef FUNC_DRIVE
  152. //退出不停电传动功能软压板处理
  153. void quit_drive(void)
  154. {
  155. SET_VALUE *parBuf; // 定义定值查看及整定时的buf
  156. if (gb_drive.bQuit)
  157. {
  158. gb_drive.b_drive_on = false;
  159. gb_drive.b_drive_soe = false;
  160. gb_drive.b_drive_process = false;
  161. #ifdef FUNC_DRIVE_PULSE
  162. gb_drive.b_unset_pulse = true;
  163. MakeRunPara(false, false); // 恢复合分闸脉冲原来的值
  164. MakeRunSet(false); // 加入先设置一次所有定值的处理,避免提前return导致没恢复原定值内容
  165. #endif
  166. parBuf = rt_malloc(PUB_SET_NUMBER * 4);
  167. if (!parBuf)
  168. {
  169. rt_free(parBuf);
  170. rt_printf("\r\n退出不停电传动功能软压板时分配缓冲区出错!\r\n");
  171. return;
  172. }
  173. // 不停电传动投入软压板置0
  174. gb_drive.bQuit = false;
  175. if (!ReadPara((void *)parBuf, EEP_SET_ADDR + m_runsection * SETSIZE, SW_SET_NUMBER, &tSwSetTable[0]))
  176. {
  177. rt_err_set(ERR_CODE_SET, 0);
  178. GetDefPara((void *)parBuf, PUB_SET_NUMBER, &tSwSetTable[0]);
  179. }
  180. parBuf[SET_XDL_YB + gb_drive.sw * SW_SET_NUMBER].ff = 0;
  181. if (SavePara((void *)parBuf, EEP_SET_ADDR + m_runsection * SETSIZE, SW_SET_NUMBER, &tSwSetTable[0]))
  182. {
  183. soe_record_opt(EV_YBSET_OK, 0);
  184. MakeRunSet(false);
  185. rt_err_clr(ERR_CODE_SET, 0);
  186. }
  187. rt_free(parBuf);
  188. }
  189. }
  190. #endif
  191. #ifdef OCI_XB_0MS
  192. static void xb_cal_0ms(int sw, u32 dStep)
  193. {
  194. int ui_begin;
  195. bool bxbbs,bxb;
  196. bool bIazx,bIbzx,bIczx;
  197. bool bQDD,bTrip;
  198. int oc;
  199. // 电流启动
  200. ui_begin = UI_SW_INDEX_BEGIN(sw);
  201. bxb=pRunSet->tSwSet[sw].bTT_bh_xbbs;
  202. for(oc=BH_GL1;oc<=BH_GL3;oc++)
  203. {
  204. TOC_T *poc = &g_tRelay[sw].tOC[oc];
  205. OC_SET *pSet = &pRunSet->tSwSet[sw].toc[oc];
  206. poc->sta.bFlag.bIaQD = OverRelay(g_ui[ui_begin+SW_AC_IA].m2[0], pSet->dI, pSet->dI_fh, poc->sta.bFlag.bIaQD);
  207. poc->sta.bFlag.bIbQD = OverRelay(g_ui[ui_begin+SW_AC_IB].m2[0], pSet->dI, pSet->dI_fh, poc->sta.bFlag.bIbQD);
  208. poc->sta.bFlag.bIcQD = OverRelay(g_ui[ui_begin+SW_AC_IC].m2[0], pSet->dI, pSet->dI_fh, poc->sta.bFlag.bIcQD);
  209. bIazx=CalDir_A(sw,poc->sta.bFlag.bIaQD&&pSet->bDir,pRunSet->tSwSet[sw].bTT_DIR_Inv); //方向计算
  210. bIbzx=CalDir_B(sw,poc->sta.bFlag.bIbQD&&pSet->bDir,pRunSet->tSwSet[sw].bTT_DIR_Inv);
  211. bIczx=CalDir_C(sw,poc->sta.bFlag.bIcQD&&pSet->bDir,pRunSet->tSwSet[sw].bTT_DIR_Inv);
  212. poc->sta.bFlag.bIaxb =bxb&&XBCalc(sw,SW_AC_IA,pRunSet->tSwSet[sw].d_bh_xbcoe,poc->sta.bFlag.bIaQD);
  213. poc->sta.bFlag.bIbxb=bxb&&XBCalc(sw,SW_AC_IB,pRunSet->tSwSet[sw].d_bh_xbcoe,poc->sta.bFlag.bIbQD);
  214. poc->sta.bFlag.bIcxb=bxb&&XBCalc(sw,SW_AC_IC,pRunSet->tSwSet[sw].d_bh_xbcoe,poc->sta.bFlag.bIcQD);
  215. bQDD=poc->sta.bFlag.bIaQD||poc->sta.bFlag.bIbQD||poc->sta.bFlag.bIcQD;
  216. bxbbs=(poc->sta.bFlag.bIaxb||poc->sta.bFlag.bIbxb||poc->sta.bFlag.bIcxb); //谐波闭锁
  217. if(BH_ALL_EN(sw))
  218. {
  219. poc->sta.bFlag.bXBbs = (BH_ALL_EN(sw)
  220. && (pSet->bTz||pSet->bGj)
  221. && bQDD)
  222. && bxbbs;
  223. if( oc== BH_GL1)
  224. xb_bs_soe(g_protect.sw,dStep);
  225. }
  226. }
  227. }
  228. #endif
  229. void yc_refresh_en(int sw)
  230. {
  231. TRELAY_T *pR=&g_tRelay[sw];
  232. int ui_begin;
  233. DWORD Ia,Ib,Ic;
  234. DWORD I0;
  235. ui_begin = UI_SW_INDEX_BEGIN(sw);
  236. Ia = _Mul_Div_U(sqrt_32fix(g_ui[ui_begin + SW_AC_IA].m2[0]), 256, g_ui[ui_begin + SW_AC_IA].m2_factor_k);
  237. Ib = _Mul_Div_U(sqrt_32fix(g_ui[ui_begin + SW_AC_IB].m2[0]), 256, g_ui[ui_begin + SW_AC_IB].m2_factor_k);
  238. Ic = _Mul_Div_U(sqrt_32fix(g_ui[ui_begin + SW_AC_IC].m2[0]), 256, g_ui[ui_begin + SW_AC_IC].m2_factor_k);
  239. I0 = _Mul_Div_U(sqrt_32fix(g_ui[ui_begin + SW_AC_I0].m2[0]), 256, g_ui[ui_begin + SW_AC_I0].m2_factor_k);
  240. if(pR->bYcRefresh.bAGl)
  241. {
  242. pR->bYcRefresh.bAGl = false;
  243. g_sw_pub.ac_in[PUB_AC_YC9] = Ia;
  244. }
  245. if(pR->bYcRefresh.bBGl)
  246. {
  247. pR->bYcRefresh.bBGl = false;
  248. g_sw_pub.ac_in[PUB_AC_YC10] = Ib;
  249. }
  250. if(pR->bYcRefresh.bCGl)
  251. {
  252. pR->bYcRefresh.bCGl = false;
  253. g_sw_pub.ac_in[PUB_AC_YC11] = Ic;
  254. }
  255. if(pR->bYcRefresh.bLx)
  256. {
  257. pR->bYcRefresh.bLx = false;
  258. g_sw_pub.ac_in[PUB_AC_YC12] = I0;
  259. }
  260. if(g_run_stu.button_on)
  261. {
  262. int i=0;
  263. g_run_stu.button_on = false;
  264. for(i=PUB_AC_YC9;i<=PUB_AC_YC12;i++)
  265. {
  266. g_sw_pub.ac_in[i] = 0;
  267. }
  268. }
  269. }
  270. /******************************************************************************
  271. 函数名称: protect_polling
  272. 函数版本: 01.01
  273. 创建作者: xxxxxx
  274. 创建日期: 2015-05-13
  275. 函数说明: 保护5ms巡检
  276. 参数说明: 无
  277. 返回值: 成功返回0.
  278. 修改记录:
  279. */
  280. int protect_polling(void)
  281. {
  282. u64 us0;
  283. u64 dTDelta; // 5ms巡检时间片
  284. // 首次进入初始化
  285. if (!g_protect.update)
  286. {
  287. g_protect.t_rcd_bh = dTCounter;
  288. g_protect.update = 1;
  289. return 0;
  290. }
  291. // 取得5ms巡检的时间间隔
  292. dTDelta = dTCounter - g_protect.t_rcd_bh;
  293. g_protect.t_rcd_bh = dTCounter;
  294. // 计算全波FFT
  295. us0 = ustimer_get_origin();
  296. sw_cal_protect();
  297. rt_stat_other_in(1,ustimer_get_duration(us0)/USTIMER_US);
  298. // 定值有修改,重新初始化
  299. if(bRunSetModify)
  300. {
  301. ProtectRelayInit1();
  302. bRunSetModify = 0;
  303. }
  304. #ifdef FUNC_DRIVE_JY
  305. clear_func_drive(dTDelta);
  306. #endif
  307. // 内部状态识别
  308. run_status_check(dTDelta);
  309. if(rt_err_count())return -1; //系统异常,退出保护处理
  310. // 公共轮巡类保护
  311. {
  312. Pro_vol(dTDelta); // 电压告警逻辑
  313. #ifdef XDL_ZT //小电流接地
  314. xdl_protect(dTDelta); // 小电流接地保护
  315. #endif
  316. PT_Check(dTDelta);
  317. FDL_Check(dTDelta);
  318. hcbs_dataset();
  319. }
  320. // 开关类保护
  321. for (g_protect.sw=0; g_protect.sw<g_sw_num; g_protect.sw++)
  322. {
  323. TRELAY_T *pR=&g_tRelay[g_protect.sw];
  324. _protect_rmt_sw(dTDelta); // 遥控器,其手分或手合标志在其他保护逻辑中有使用,故放在最开始
  325. XBCalc_goc(g_protect.sw); // goose 谐波计算:处理标志:谐波闭锁动作
  326. // 电流轮巡类
  327. Pro_over_i(g_protect.sw,dTDelta,BH_OVI_ZZ,EV_DLZZ); // 电流重载
  328. Pro_over_i(g_protect.sw,dTDelta,BH_OVI_GZ,EV_DLGZ); // 电流过载
  329. Pro_over_i(g_protect.sw,dTDelta,BH_OVI,EV_DLYX); // 电流越限
  330. Pro_over_i0(g_protect.sw,dTDelta,BH_OVI0,EV_I0YX); // 零序电流越限
  331. #ifdef FUN_JDXX
  332. jdxx_pro(g_protect.sw,dTDelta);
  333. #endif
  334. // 电压轮巡类
  335. // Pro_U0Tz(g_protect.sw,dTDelta);
  336. //FA_OverU0Tz(g_protect.sw,dTDelta); // 合后接地故障
  337. //FA_lostvotTz(g_protect.sw,dTDelta); // 失压分闸
  338. Pro_TQHz(g_protect.sw,dTDelta); // 合环
  339. Pro_TQBS(g_protect.sw,dTDelta); // 手动闭锁
  340. Pro_3U0(g_protect.sw,dTDelta);
  341. vol_DYJL(g_protect.sw,dTDelta);
  342. vol_PLJL(g_protect.sw,dTDelta);
  343. fag_bh(g_protect.sw,dTDelta);
  344. Pro_hzbs(g_protect.sw,dTDelta);
  345. // 其他轮巡类
  346. AutoReclose(g_protect.sw,dTDelta); // 重合闸保护逻辑
  347. // 分段、联络就地馈线自动化逻辑,完成独立存在,不需要进入故障处理过程
  348. FA_Run(dTDelta);
  349. #ifdef CUSTOMIZE_BZT //备自投
  350. bzt_process(g_protect.sw,dTDelta);
  351. #endif
  352. #ifdef GD_AREA_ZHONGSHAN_2020
  353. fag_oc_acc(g_protect.sw,dTDelta);
  354. #endif
  355. sw_op_fail(dTDelta);
  356. // 保护合闸
  357. _protect_sw_hz(dTDelta);
  358. #ifdef OCI_XB_0MS
  359. //谐波闭锁判断放到循环中,实时判断,解决过流1段时间为0、谐波闭锁后一直幅值启动-整组复归的问题
  360. xb_cal_0ms(g_protect.sw,dTDelta);
  361. #endif
  362. // 幅值启动判别
  363. if(! pR->zqd)
  364. {
  365. _protect_amp_qd(dTDelta);
  366. }
  367. #ifdef FUNC_DRIVE
  368. if(gb_drive.b_drive_on)
  369. {
  370. // 保护跳合闸处理
  371. _protect_sw_tz(dTDelta);
  372. return 0;
  373. }
  374. #endif
  375. // 故障处理流程
  376. if(pR->zqd)
  377. {
  378. switch(pR->gz_process)
  379. {
  380. // 保护处理初始化
  381. case CXLC_BHIN:
  382. _protect_gzcl_init();
  383. break;
  384. // 保护处理
  385. case CXLC_BHCL:
  386. _protect_gzcl_process();
  387. break;
  388. // 整组复归
  389. case CXLC_ZZFG:
  390. _protect_zzfg();
  391. break;
  392. default:
  393. watchdog_reset_cpu(51);
  394. break;
  395. }
  396. }
  397. yc_refresh_en(g_protect.sw);
  398. _protect_alarm(); // 异常告警类逻辑
  399. _protect_sfsh_clr(); // 清除手分、手合标志
  400. }
  401. // 保护巡检完毕,检查事故总
  402. _protect_sg_all();
  403. rt_stat_other_in(2,ustimer_get_duration(us0)/USTIMER_US);
  404. return 0;
  405. }
  406. /******************************************************************************
  407. 函数名称: protect_tbl_qd
  408. 函数版本: 01.01
  409. 创建作者: xxxxxx
  410. 创建日期: 2015-05-13
  411. 函数说明: 保护突变量启动
  412. 参数说明: 无
  413. 返回值: 成功返回0.
  414. 修改记录:
  415. */
  416. int protect_tbl_qd(void)
  417. {
  418. short pnSam[3] = {0};
  419. long laaa;
  420. DWORD daaa;
  421. int i;
  422. u32 sw;
  423. int caulp = g_adc_dots_index;
  424. for (sw=0; sw<g_sw_num; sw++)
  425. {
  426. TRELAY_T *pR=&g_tRelay[sw];
  427. // 保护已启动,直接返回
  428. if(pR->zqd)
  429. {
  430. continue;
  431. }
  432. // 保护未启动,获取故障的第一个点时刻,作为故障启动时刻,+1是因为
  433. if((wIQdCnt[sw][SW_AC_IA] == 0) && (wIQdCnt[sw][SW_AC_IB] == 0) && (wIQdCnt[sw][SW_AC_IC] == 0) &&(wIQdCnt[sw][SW_AC_I0] == 0))
  434. {
  435. pR->t_rcd_qd = dTCounter+1;
  436. pR->us_tbl = ustimer_get_origin();
  437. pR->tblqd = 0;
  438. }
  439. else
  440. {
  441. if (!pR->tblqd)
  442. {
  443. pR->tblqd = 1;
  444. pR->tbldz = 0;
  445. pR->tblzzdz = 0;
  446. }
  447. }
  448. //保护未起动、突变量启动判断
  449. for(i=0; i<SW_I_NUM; i++)
  450. {
  451. // 如果索引通道不存在,不需计算
  452. if(g_ui[UI_SW_INDEX(sw,i)].chn_index == CFG_ADC_CHANNEL_ZERO)
  453. {
  454. continue;
  455. }
  456. // 取出连续三周波的同一对应点
  457. pnSam[0] = g_adc_dots[g_ui[UI_SW_INDEX(sw,i)].chn_index][(caulp - 1) & SAMLENGTH];
  458. pnSam[1] = g_adc_dots[g_ui[UI_SW_INDEX(sw,i)].chn_index][(caulp - SAMFREQ -1) & SAMLENGTH];
  459. pnSam[2] = g_adc_dots[g_ui[UI_SW_INDEX(sw,i)].chn_index][(caulp - 2*SAMFREQ -1) & SAMLENGTH];
  460. // 计算突变量并取绝对值,i(k)-2*i(k-N)+i(K-2N)
  461. laaa = ( pnSam[0] - pnSam[1]*2 + pnSam[2]);
  462. if(laaa < 0)
  463. {
  464. daaa = -laaa;//
  465. }
  466. else
  467. {
  468. daaa = laaa;
  469. }
  470. // 检查是否超过突变量门槛,且需满足3次,即对应相电流突变量满足要求
  471. if(daaa > pRunSet->dTBLValue[sw] )
  472. {
  473. wIQdCnt[sw][i] += 2;
  474. if(wIQdCnt[sw][i] >= TBLQDDSMK)
  475. {
  476. pR->uBHQD.bFlag.bTBQD = true;
  477. rt_printf("protect_tbl_qd:i=%d,daaa=%d,dTBLValue=%d.\r\n",i,daaa,pRunSet->dTBLValue[sw]);
  478. break;
  479. }
  480. }
  481. else
  482. {
  483. if(wIQdCnt[sw][i] >= 1)
  484. {
  485. wIQdCnt[sw][i]--;
  486. }
  487. }
  488. }
  489. if(pR->uBHQD.bFlag.bTBQD)
  490. {
  491. // 进入故障流程:故障初始化
  492. pR->gz_process = CXLC_BHIN;
  493. // 保护总启动标志置位
  494. pR->zqd = 1;
  495. pR->uBHQD.bFlag.bZQD = 1;
  496. // 清除计数
  497. memset(&wIQdCnt[sw], 0, SW_I_NUM*2);
  498. // 突变量启动时间统计
  499. rt_stat_in(&pR->tbl_stat, ustimer_get_duration(pR->us_tbl)/USTIMER_US);
  500. }
  501. }
  502. return 0;
  503. }
  504. // 速断幅值启动滤波加速,加快幅值启动过程
  505. int protect_amp_qd_js(int sw)
  506. {
  507. int i,v,r;
  508. int ui_begin;
  509. int chn_index;
  510. u32 m2_max;
  511. s16* dots;
  512. u32 threshold;
  513. // 寻找最大值的相
  514. ui_begin = UI_SW_INDEX_BEGIN(sw);
  515. m2_max = 0;
  516. chn_index = 0;
  517. for(i=0;i<3;i++)
  518. {
  519. if(g_ui[ui_begin].m2[0] > m2_max && g_ui[ui_begin].chn_index != CFG_ADC_CHANNEL_ZERO)
  520. {
  521. m2_max = g_ui[ui_begin].m2[0];
  522. chn_index = g_ui[ui_begin].chn_index;
  523. }
  524. ui_begin++;
  525. }
  526. if(m2_max == 0)
  527. {
  528. // 理论上,有采样通道的最大值相不可能不存在
  529. // rt_printf("Pro_SDGJ:m2_max == 0.\r\n");
  530. return 0;
  531. }
  532. // 在最大值的通道里,计算傅立叶的采样点中,检查相位相差180度的两点之和是否大约设定值。
  533. // 条件满足就算存在干扰
  534. dots = adc_fourier_address(chn_index,g_prot_index);
  535. threshold = (u32)rt_round(sqrt_32fix(m2_max)*pRunSet->fFZLBXS/Q16_BASE);
  536. r = 1;
  537. for(i=0; i<CFG_ADC_DOTS_PER_PERIOD/2; i++)
  538. {
  539. #if 0
  540. v = *(s16 *)((u32)(dots+i)&CFG_ADC_BUF_MASK);
  541. v+= *(s16 *)((u32)(dots+i+CFG_ADC_DOTS_PER_PERIOD/2)&CFG_ADC_BUF_MASK);
  542. #else
  543. v = *(dots+i);
  544. v+= *(dots+i+CFG_ADC_DOTS_PER_PERIOD/2);
  545. #endif
  546. v = abs(v);
  547. if(v >= threshold) // 如果系数设置为0,则幅值加速没有效果。
  548. {
  549. // 干扰存在
  550. r = 0;
  551. break;
  552. }
  553. }
  554. {
  555. #if 0
  556. float it,iv;
  557. // it = (float)_Mul_Div_U(threshold*Q16_BASE, 256, g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k);
  558. // iv = (float)_Mul_Div_U(v*Q16_BASE, 256, g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k);
  559. it = (float)threshold*256/g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k;
  560. iv = (float)v*256/g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k;
  561. // modify for xxxxxx 当输入量在保护定值的边界值时,会反复打印,导致装置重启
  562. rt_printf("threshold=%d,v=%d,r=%d,m2_max=%d,fFZLBXS=%f.\r\n",threshold,v,r,m2_max,pRunSet->fFZLBXS);
  563. rt_printf("it=%f,iv=%f,iv/it=%f.\r\n",it,iv,iv/it);
  564. #endif
  565. }
  566. return r;
  567. }
  568. // 零序幅值启动滤波加速,加快幅值启动过程
  569. int protect_amp_lx_js(int sw)
  570. {
  571. int i,v,r;
  572. int ui_begin;
  573. int chn_index;
  574. u32 m2_max;
  575. s16* dots;
  576. u32 threshold;
  577. ui_begin = UI_SW_INDEX(sw,SW_AC_I0);
  578. m2_max = g_ui[ui_begin].m2[0];
  579. chn_index = g_ui[ui_begin].chn_index;
  580. if(m2_max == 0)
  581. {
  582. // 理论上,有采样通道的最大值相不可能不存在
  583. rt_printf("protect_amp_lx_js:m2_max == 0.\r\n");
  584. return 0;
  585. }
  586. // 在最大值的通道里,计算傅立叶的采样点中,检查相位相差180度的两点之和是否大约设定值。
  587. // 条件满足就算存在干扰
  588. dots = adc_fourier_address(chn_index,g_prot_index);
  589. threshold = (u32)rt_round(sqrt_32fix(m2_max)*pRunSet->fFZLBXS/Q16_BASE);
  590. r = 1;
  591. for(i=0; i<CFG_ADC_DOTS_PER_PERIOD/2; i++)
  592. {
  593. #if 0
  594. v = *(s16 *)((u32)(dots+i)&CFG_ADC_BUF_MASK);
  595. v+= *(s16 *)((u32)(dots+i+CFG_ADC_DOTS_PER_PERIOD/2)&CFG_ADC_BUF_MASK);
  596. #else
  597. v = *(dots+i);
  598. v+= *(dots+i+CFG_ADC_DOTS_PER_PERIOD/2);
  599. #endif
  600. v = abs(v);
  601. if(v >= threshold) // 如果系数设置为0,则幅值加速没有效果。
  602. {
  603. // 干扰存在
  604. r = 0;
  605. break;
  606. }
  607. }
  608. {
  609. // float it,iv;
  610. // it = (float)_Mul_Div_U(threshold*Q16_BASE, 256, g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k);
  611. // iv = (float)_Mul_Div_U(v*Q16_BASE, 256, g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k);
  612. // it = (float)threshold*256/g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k;
  613. // iv = (float)v*256/g_ui[UI_SW_INDEX_BEGIN(sw)].m2_factor_k;
  614. #if 0 // modify for xxxxxx 当输入量在保护定值的边界值时,会反复打印,导致装置重启
  615. rt_printf("lx_threshold=%d,v=%d,r=%d,m2_max=%d,fFZLBXS=%f.\r\n",threshold,v,r,m2_max,pRunSet->fFZLBXS);
  616. rt_printf("lx_it=%f,iv=%f,iv/it=%f.\r\n",it,iv,iv/it);
  617. #endif
  618. }
  619. return r;
  620. }
  621. /*------------------------------ 内部函数 -------------------------------------
  622. 内部函数以下划线‘_’开头,不需要检查参数的合法性.
  623. */
  624. /******************************************************************************
  625. 函数名称: _protect_amp_qd
  626. 函数版本: 01.01
  627. 创建作者: xxxxxx
  628. 创建日期: 2015-05-13
  629. 函数说明: 保护幅值启动
  630. 参数说明: 无
  631. 返回值: 成功返回0.
  632. 修改记录:
  633. */
  634. static int _protect_amp_qd(u32 dStep)
  635. {
  636. bool bQD;
  637. bool bFZJS=false; // 幅值加速
  638. bool bFZQD=false; // 幅值加速
  639. u32 sw = g_protect.sw;
  640. int i;
  641. TRELAY_T *pR=&g_tRelay[sw];
  642. bQD = 0;
  643. //过流类启动
  644. for(i=BH_GL1;i<=FA_DLBS;i++)
  645. {
  646. TOC_T *pSW = &g_tRelay[sw].tOC[i];
  647. OC_SET *pSet = &pRunSet->tSwSet[sw].toc[i];
  648. bool bY1=false,bEn;
  649. if(i<=BH_LXJS)bEn=BH_ALL_EN(sw);
  650. else bEn=FA_ALL_EN(sw);
  651. if (bEn&& (pSet->bTz||pSet->bGj))
  652. {
  653. if(i==BH_LX1||i==BH_LX2||i==BH_LX3||i==BH_LXJS||i==FA_LX)
  654. {
  655. bY1 = OverRelay(g_ui[UI_SW_INDEX(sw,SW_AC_I0)].m2[0], pSet->dI, pSet->dI, false);
  656. }
  657. else
  658. {
  659. #ifdef OCI_XB_0MS
  660. bY1 = OverRelay(g_sw[sw].m2_max, pSet->dI, pSet->dI, false) && (!pR->tOC[BH_GL1].sta.bFlag.bXBbs);
  661. #else
  662. bY1 = OverRelay(g_sw[sw].m2_max, pSet->dI, pSet->dI, false);
  663. #endif
  664. }
  665. }
  666. //幅值启动25ms延时
  667. RunTR(&pSW->tFz25ms, bY1, dStep);
  668. bQD|=bY1;
  669. bFZQD|=pSW->tFz25ms.boolTrip;
  670. }
  671. //反时限启动
  672. {
  673. TSETSW *pSet = &pRunSet->tSwSet[sw];
  674. bool bY1;
  675. if (BH_ALL_EN(sw)&&pSet->bTT_FSX)
  676. {
  677. bY1 = OverRelay(g_sw[sw].fz_max, pSet->dIglfsx, pSet->dIglfsx, false);
  678. bFZQD|=bY1;
  679. }
  680. }
  681. //智能分布式启动判断
  682. {
  683. TGOC_T *poc = &g_tRelay[sw].tgoc;
  684. GOC_SET *pSet = &pRunSet->tSwSet[sw].tGocSet;
  685. bool bY1=false,bY2=false;
  686. if (BH_GOOSE_EN(sw))
  687. {
  688. bY1 = OverRelay(g_sw[sw].m2_max, pSet->dIgl, pSet->dIgl, false);
  689. bY2 = OverRelay(g_ui[UI_SW_INDEX(sw,SW_AC_I0)].m2[0], pSet->dIlx, pSet->dIlx, false);
  690. }
  691. //幅值启动25ms延时
  692. RunTR(&poc->tglFz25ms, bY1, dStep);
  693. RunTR(&poc->tlxFz25ms, bY2, dStep);
  694. bQD|=(bY1|bY2);
  695. bFZQD|=poc->tglFz25ms.boolTrip;
  696. bFZQD|=poc->tlxFz25ms.boolTrip;
  697. #if defined GD_AREA_ZHONGSHAN || defined GD_AREA_ZHONGSHAN_2020
  698. if (BH_GOOSE_EN(sw))
  699. {
  700. bY1 = OverRelay(g_sw[sw].m2_max, pSet->dIgl2, pSet->dIgl2, false);
  701. }
  702. //幅值启动25ms延时
  703. RunTR(&poc->tgl2Fz25ms, bY1, dStep);
  704. bQD|=(bY1);
  705. bFZQD|=poc->tgl2Fz25ms.boolTrip;
  706. #endif
  707. }
  708. if (bQD)
  709. {
  710. if (!pR->fzqd)
  711. {
  712. pR->us_fz = ustimer_get_origin();
  713. pR->fzqd = 1;
  714. pR->fzdz = 0;
  715. pR->fzzzdz = 0;
  716. dStep = 0;
  717. }
  718. // 幅值启动加速
  719. bFZJS = protect_amp_qd_js(sw);
  720. bFZJS |= protect_amp_lx_js(sw); //xj
  721. }
  722. else
  723. {
  724. pR->fzqd = 0;
  725. }
  726. pR->uBHQD.bFlag.bFZQD = bFZJS||bFZQD ; // 幅值启动加速
  727. // 其他启动,借助幅值启动,进入故障处理流程,以实现录波、出口、整组复归过程
  728. {
  729. bool bY1=false;
  730. bY1|=pR->tgoc.sta.bFlag.bgzglQD
  731. ||pR->tgoc.sta.bFlag.bsdQD
  732. ||pR->tgoc.sta.bFlag.berrQD
  733. ||pR->tgoc.sta.bFlag.bextQD
  734. ||pR->tgoc.sta.bFlag.bllQD;
  735. for(i=0;i<8;i++)
  736. {
  737. bY1|=pR->tFdl[i].sta.bFlag.bTz;
  738. }
  739. #ifdef GD_AREA_ZHONGSHAN_2020
  740. bY1|=pR->tgoc.tOc[FAG_GL1].sta.bFlag.bQD // 启动
  741. ||pR->tgoc.tOc[FAG_GL2].sta.bFlag.bQD
  742. ||pR->tgoc.tOc[FAG_LX].sta.bFlag.bQD;
  743. #endif
  744. pR->uBHQD.bFlag.bBHQD = bY1||pR->tCHZ.sta.bFlag.bCHQD // 重合闸
  745. || pR->tU0TZ.uZOV.bFlag.bQD // 合后接地跳闸
  746. || pR->tDYJL.sta.bFlag.bQD // 电压解列
  747. || pR->tPLJL.sta.bFlag.bQD // 频率解列
  748. || pR->tXXTZ.uZOV.bFlag.bQD // 选线跳闸
  749. || pR->tLostVot.uLostVot.bFlag.bQD // 失压分闸
  750. || pR->tOVER_U0TZ.uZOV.bFlag.bTz // 过零序电压跳闸
  751. || pR->tOC[FA_GL].sta.bFlag.bQD
  752. || pR->tOC[FA_GL_II].sta.bFlag.bQD
  753. || pR->tOC[FA_LX].sta.bFlag.bQD //零序电流启动
  754. #ifdef FUN_JDXX
  755. || pR->tJD.sta.bFlag.bTz // 接地选线跳
  756. #endif
  757. ;
  758. }
  759. //幅值启动 + 其他启动 = 总启动
  760. if (pR->uBHQD.bFlag.bFZQD || pR->uBHQD.bFlag.bBHQD)
  761. {
  762. WORD wSubCnt;
  763. #ifdef FUNC_DRIVE
  764. gb_drive.b_drive_on = false;
  765. #endif
  766. // 如果是幅值启动,故障启动时刻倒退25ms
  767. if(pR->uBHQD.bFlag.bFZQD)
  768. {
  769. wSubCnt = T_25ms;
  770. }
  771. else
  772. {
  773. wSubCnt = 0;
  774. }
  775. // 记录故障启动时刻
  776. pR->t_rcd_qd = dTCounter - wSubCnt;
  777. // 进入故障流程:故障初始化
  778. pR->gz_process = CXLC_BHIN;
  779. // 保护总启动标志置位
  780. pR->zqd = 1;
  781. pR->uBHQD.bFlag.bZQD = 1;
  782. // 此时突变量未启动,将故障处理的等待限制取消
  783. if(!pR->uBHQD.bFlag.bTBQD)
  784. {
  785. pR->uBHQD.bFlag.bQD25ms = true;
  786. }
  787. // 幅值启动时间统计
  788. if (pR->uBHQD.bFlag.bFZQD)
  789. {
  790. rt_stat_in(&pR->fz_stat, ustimer_get_duration(pR->us_fz)/USTIMER_US);
  791. }
  792. rt_printf("开关%d辐值启动(bFZJS=%d)\r\n", sw,bFZJS);
  793. }
  794. return 0;
  795. }
  796. /******************************************************************************
  797. 函数名称: _protect_gzcl_init
  798. 函数版本: 01.01
  799. 创建作者: xxxxxx
  800. 创建日期: 2015-05-13
  801. 函数说明: 保护故障处理初始化
  802. 参数说明: 无
  803. 返回值: 成功返回0.
  804. 修改记录:
  805. */
  806. static int _protect_gzcl_init(void)
  807. {
  808. u32 sw = g_protect.sw;
  809. TRELAY_T *pR=&g_tRelay[sw];
  810. int oc;
  811. // 校验保护启动标志:
  812. if(!pR->zqd)
  813. {
  814. watchdog_reset_cpu(52);
  815. }
  816. // 校验定值
  817. if(!CheckRunSet())
  818. {
  819. watchdog_reset_cpu(53);
  820. }
  821. // 初始化标志字与时间继电器
  822. for(oc=0;oc<=FA_DLBS;oc++)
  823. {
  824. TOC_T *poc = &g_tRelay[sw].tOC[oc];
  825. OC_SET *pSet = &pRunSet->tSwSet[sw].toc[oc];
  826. if(!(oc==FA_GL||oc==FA_LX||oc==FA_GL_II))//FA逻辑不清所有标志位
  827. {
  828. poc->sta.wfFlag=0;
  829. }
  830. if(oc != FA_DLBS) // 遮断返回时间需设置长一点,防止故障量跌落太快,闭锁不住
  831. {
  832. InitTR(&poc->tQDTime, pSet->dT, PRO_RET_TIME);
  833. }
  834. else
  835. {
  836. InitTR(&poc->tQDTime, pSet->dT, T_200ms);
  837. }
  838. InitTR(&poc->tQD25ms, T_25ms, 0);
  839. // 突变量启动时预置定时器,因为突变量启动会死等35个采样点的延时,但实际置的延时只是20ms附近,没有过于精准
  840. if(pR->uBHQD.bFlag.bTBQD)
  841. {
  842. PreSetTime(&poc->tQDTime, T_10ms+T_5ms);
  843. PreSetTime(&poc->tQD25ms, T_10ms);
  844. //rt_printf("dT = %d\r\n",dTCounter);
  845. }
  846. #ifdef YX_RESET_TIME
  847. if(pRunSet->dT_ZZFG>tRunPara.dTEventRst)
  848. {
  849. InitTR_Time(&pR->tTZZFG_5S0ms, pRunSet->dT_ZZFG, 0); //无故障延时5s
  850. }
  851. else
  852. {
  853. InitTR_Time(&pR->tTZZFG_5S0ms, tRunPara.dTEventRst, 0); //无故障延时5s
  854. }
  855. #else
  856. InitTR_Time(&pR->tTZZFG_5S0ms, pRunSet->dT_ZZFG, 0); //无故障延时5s
  857. #endif
  858. }
  859. // 取得故障启动时刻,以便故障处理流程中,第一次计算的时间片是从故障启动时刻开始
  860. pR->t_rcd_gz = pR->t_rcd_qd;
  861. // 提前打开启动继电器,以节省硬件耗用时间
  862. sw_do(sw,SW_DO_FZ,SW_DO_TYPE_SELECT_ON);
  863. sw_do(sw,SW_DO_BHT,SW_DO_TYPE_SELECT_ON);
  864. // 录波:保护启动
  865. // 20160918:目前策略,启动不录波,动作时再录波
  866. // rcd_start(sw,RECORD_WAVE_TYPE_QD, RECORD_LEN_TZQD);
  867. // 进入故障流程:故障处理
  868. if(pR->gz_process == CXLC_BHIN)
  869. {
  870. pR->gz_process = CXLC_BHCL;
  871. }
  872. else
  873. {
  874. watchdog_reset_cpu(54);
  875. }
  876. // 巡检类保护,逻辑已经判断,如果延时已到达,可在此快速出口
  877. _protect_sw_tz(0);
  878. return 0;
  879. }
  880. /******************************************************************************
  881. 函数名称: _protect_gzcl_process
  882. 函数版本: 01.01
  883. 创建作者: xxxxxx
  884. 创建日期: 2015-05-13
  885. 函数说明: 保护故障处理
  886. 参数说明: 无
  887. 返回值: 成功返回0.
  888. 修改记录:
  889. */
  890. static int _protect_gzcl_process(void)
  891. {
  892. // static DWORD dTAfterFault=0;
  893. u32 dTGZDelta; // 5ms故障巡检时间片
  894. u32 sw = g_protect.sw;
  895. TRELAY_T *pR=&g_tRelay[sw];
  896. u32 tmpstep;
  897. // 校验流程
  898. if(pR->gz_process != CXLC_BHCL)
  899. {
  900. watchdog_reset_cpu(55);
  901. }
  902. // 突变量启动36采样点之后才进入故障处理,否则返回.
  903. dTAfterFault = dTCounter - pR->t_rcd_qd;
  904. if(dTAfterFault >= 24&&dTAfterFault<36)
  905. {
  906. #ifdef CPU_FUXI
  907. return 0;
  908. #else
  909. tmpstep=dTCounter;
  910. do
  911. {
  912. dTAfterFault = dTCounter - pR->t_rcd_qd;
  913. }
  914. while(dTAfterFault < 36);
  915. // 等待36点满后,重新计算一下全部的傅式值
  916. sw_cal_protect();
  917. GOC_dir_check(sw,dTCounter-tmpstep); //重新计算一下故障信息
  918. pR->uBHQD.bFlag.bQD25ms = true;
  919. #endif
  920. }
  921. #ifdef CPU_FUXI
  922. else if(dTAfterFault>=36)
  923. {
  924. dTAfterFault=36;
  925. pR->uBHQD.bFlag.bQD25ms = true;
  926. }
  927. #endif
  928. // 更新故障处理的时间片
  929. dTGZDelta = dTCounter -pR->t_rcd_gz;
  930. pR->t_rcd_gz = dTCounter;
  931. // 保护逻辑
  932. if(pR->uBHQD.bFlag.bQD25ms)
  933. {
  934. Pro_BSTZ(sw,dTGZDelta,BH_DLBS,EV_BSTZ);
  935. Pro_OC(sw,dTGZDelta,BH_GL1,EV_GL1TZ);
  936. Pro_OC(sw,dTGZDelta,BH_GL2,EV_GL2TZ);
  937. Pro_OC(sw,dTGZDelta,BH_GL3,EV_GL3TZ);
  938. Pro_LX(sw,dTGZDelta,BH_LX1,EV_LX1TZ);
  939. Pro_LX(sw,dTGZDelta,BH_LX2,EV_LX2TZ);
  940. Pro_LX(sw,dTGZDelta,BH_LX3,EV_LX3TZ);
  941. Pro_Accheck(sw,dTGZDelta,BH_GLJS,EV_GLJS);
  942. Pro_Accheck(sw,dTGZDelta,BH_LXJS,EV_LXJS);
  943. // Pro_Accheck(sw,dTGZDelta,FA_GL,EV_FA_GL_TZ);
  944. // Pro_Accheck(sw,dTGZDelta,FA_LX,EV_FA_LX_TZ);
  945. fag_oc_gl(sw,dTGZDelta);
  946. fag_oc_lx(sw,dTGZDelta);
  947. fsxGL(sw,dTGZDelta); //反时限过流
  948. }
  949. // 保护跳合闸处理
  950. _protect_sw_tz(dTGZDelta);
  951. // 保护动作时间统计
  952. if (_protect_check_fault(sw))
  953. {
  954. if ((!pR->tbldz) && pR->tblqd)
  955. {
  956. rt_stat_in(&pR->tbldz_stat, ustimer_get_duration(pR->us_tbl)/USTIMER_US);
  957. pR->tbldz = 1;
  958. pR->tblqd = 0;
  959. }
  960. else if ((!pR->fzdz) && pR->fzqd)
  961. {
  962. rt_stat_in(&pR->fzdz_stat, ustimer_get_duration(pR->us_fz)/USTIMER_US);
  963. pR->fzdz = 1;
  964. pR->fzqd = 0;
  965. }
  966. }
  967. // 等待保护返回,转入整组复归流程
  968. _protect_zzfg_check(dTGZDelta);
  969. return 0;
  970. }
  971. /******************************************************************************
  972. 函数名称: _protect_gzcl_zzfg
  973. 函数版本: 01.01
  974. 创建作者: xxxxxx
  975. 创建日期: 2015-05-13
  976. 函数说明: 保护故障整组复归检查
  977. 参数说明: 无
  978. 返回值: 成功返回0.
  979. 修改记录:
  980. */
  981. static int _protect_zzfg_check(u32 dStep)
  982. {
  983. bool bQD, bQDFH;
  984. u32 sw = g_protect.sw;
  985. TRELAY_T *pR=&g_tRelay[sw];
  986. bool bY1=false;
  987. int i;
  988. for(i=0;i<=FA_DLBS;i++)
  989. {
  990. bY1|=(pR->tOC[i].sta.bFlag.bQD||pR->tOC[i].sta.bFlag.bXBbs|| pR->tOC[i].sta.bFlag.bTz||pR->tOC[i].sta.bFlag.bGj);
  991. }
  992. for(i=0;i<8;i++)
  993. {
  994. bY1|=pR->tFdl[i].sta.bFlag.bTz;
  995. }
  996. #ifdef GD_AREA_ZHONGSHAN_2020
  997. bY1|=pR->tgoc.tOc[FAG_GL1].sta.bFlag.bQD // 复归
  998. ||pR->tgoc.tOc[FAG_GL2].sta.bFlag.bQD
  999. ||pR->tgoc.tOc[FAG_LX].sta.bFlag.bQD;
  1000. #endif
  1001. bY1|=pR->uGLFSX.bFlag.bFXQD;
  1002. bY1|=pR->tgoc.sta.bFlag.bglQD
  1003. #if defined GD_AREA_ZHONGSHAN || defined GD_AREA_ZHONGSHAN_2020
  1004. ||pR->tgoc.sta.bFlag.bgl2QD
  1005. #endif
  1006. ||pR->tgoc.sta.bFlag.blxQD
  1007. ||pR->tgoc.sta.bFlag.bgzglQD
  1008. ||pR->tgoc.sta.bFlag.bsdQD
  1009. ||pR->tgoc.sta.bFlag.berrQD
  1010. ||pR->tgoc.sta.bFlag.bextQD
  1011. ||pR->tgoc.sta.bFlag.bllQD;
  1012. // 检查保护是否返回
  1013. bQD = (bY1
  1014. ||pR->tU0TZ.uZOV.bFlag.bQD // 合后接地保护启动
  1015. ||pR->tDYJL.sta.bFlag.bQD
  1016. ||pR->tPLJL.sta.bFlag.bQD
  1017. || pR->tXXTZ.uZOV.bFlag.bQD // 选线跳闸
  1018. //||pR->tCHZ.sta.bFlag.bQDFG // 重合闸保护启动202004
  1019. ||pR->tCHZ.sta.bFlag.bCHQD // 重合闸保护启动
  1020. ||pR->tLostVot.uLostVot.bFlag.bQD // 失压分闸保护启动
  1021. ||pR->tTQHz.uTQHz.bFlag.bQD // 合环保护启动
  1022. ||pR->tTQHz.uTQHz.bFlag.bLock // 合环闭锁启动
  1023. ||pR->tOVER_U0TZ.uZOV.bFlag.bTz // 过零序电压跳闸
  1024. #ifdef FUN_JDXX
  1025. || pR->tJD.sta.bFlag.bTz // 接地选线跳
  1026. #endif
  1027. );
  1028. // 所有保护返回后,等待5S进入整组复归流程
  1029. RunTR(&pR->tTZZFG_5S0ms, !bQD, dStep);
  1030. bQDFH = pR->tTZZFG_5S0ms.boolTrip;
  1031. pR->uBHQD.bFlag.bZZFG = bQDFH;
  1032. if(pR->uBHQD.bFlag.bZZFG && (pR->gz_process == CXLC_BHCL))
  1033. {
  1034. pR->gz_process = CXLC_ZZFG;
  1035. #ifdef CPU_FUXI
  1036. dTAfterFault=0;
  1037. #endif
  1038. }
  1039. return 0;
  1040. }
  1041. /******************************************************************************
  1042. 函数名称: _protect_zzfg
  1043. 函数版本: 01.01
  1044. 创建作者: xxxxxx
  1045. 创建日期: 2015-05-13
  1046. 函数说明: 保护整组复归
  1047. 参数说明: 无
  1048. 返回值: 成功返回0.
  1049. 修改记录:
  1050. */
  1051. static int _protect_zzfg(void)
  1052. {
  1053. u32 sw = g_protect.sw;
  1054. TRELAY_T *pR=&g_tRelay[sw];
  1055. int oc;
  1056. for(oc=0;oc<=FA_DLBS;oc++)
  1057. {
  1058. TOC_T *poc=&pR->tOC[oc];// 过流保护相关
  1059. poc->sta.wfFlag=0;
  1060. ResetTR(&poc->tQDTime);
  1061. ResetTR(&poc->tQD25ms);
  1062. ResetTR(&poc->tFz25ms);
  1063. #ifdef YX_RESET_TIME
  1064. ResetTR(&poc->tGjEvRstTime);
  1065. ResetTR(&poc->tTzEvRstTime);
  1066. #endif
  1067. }
  1068. ResetTR(&pR->tgoc.tglFz25ms);
  1069. ResetTR(&pR->tgoc.tlxFz25ms);
  1070. // 重合闸标志复归,定时器复归
  1071. if(soe_check(EV_GOOSE_QC_QD+sw*EV_SW_NUM)==true) // 故障隔离启动
  1072. {
  1073. soe_record_ev( EV_GOOSE_QC_QD+sw*EV_SW_NUM,0, 0,0,0 );
  1074. }
  1075. if(soe_check(EV_GOOSE_QC_FAIL+sw*EV_SW_NUM)==true) // 故障切除失败
  1076. {
  1077. soe_record_ev( EV_GOOSE_QC_FAIL+sw*EV_SW_NUM,0, 0,0,0 );
  1078. }
  1079. if(soe_check(EV_GOOSE_QC_OK+sw*EV_SW_NUM)==true) // 故障切除成功
  1080. {
  1081. soe_record_ev( EV_GOOSE_QC_OK+sw*EV_SW_NUM,0, 0,0,0 );
  1082. }
  1083. if(soe_check(EV_GOOSE_GL_QD+sw*EV_SW_NUM)==true) // 故障隔离启动
  1084. {
  1085. soe_record_ev( EV_GOOSE_GL_QD+sw*EV_SW_NUM,0, 0,0,0 );
  1086. }
  1087. if(soe_check(EV_GOOSE_GL_FAIL+sw*EV_SW_NUM)==true) // 故障隔离失败
  1088. {
  1089. soe_record_ev( EV_GOOSE_GL_FAIL+sw*EV_SW_NUM,0, 0,0,0 );
  1090. }
  1091. if(soe_check(EV_GOOSE_GL_OK+sw*EV_SW_NUM)==true) // 故障隔离成功
  1092. {
  1093. soe_record_ev( EV_GOOSE_GL_OK+sw*EV_SW_NUM,0, 0,0,0 );
  1094. }
  1095. if(soe_check(EV_GOOSE_HZ_OK+sw*EV_SW_NUM)==true) // 故障切除成功
  1096. {
  1097. soe_record_ev( EV_GOOSE_HZ_OK+sw*EV_SW_NUM,0, 0,0,0 );
  1098. }
  1099. if(soe_check(EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM)==true) // 故障切除成功
  1100. {
  1101. soe_record_ev( EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM,0, 0,0,0 );
  1102. }
  1103. //if(soe_check(EV_GOOSE_LL_UNOK+sw*EV_SW_NUM)==true) // 自转电条件不满足返回
  1104. //{
  1105. // soe_record_ev( EV_GOOSE_LL_UNOK+sw*EV_SW_NUM,1, 0,0,0 );
  1106. //}
  1107. //202004
  1108. //pR->tCHZ.sta.wfFlag=0;
  1109. //pR->tCHZ.wAR_ActTimes=0;
  1110. //ResetTR(&pR->tCHZ.tTCHJD_HJS);
  1111. // 失压分闸标志复归,定时器复归
  1112. if(pR->tLostVot.uLostVot.bFlag.bTz) pR->tLostVot.uLostVot.wfFlag = 0; //只出口后才清标志
  1113. //ResetTR(&pR->tLostVot.tLostVotTime); //Z计时器禁止复归
  1114. // 合环标志复归,定时器复归
  1115. pR->tTQHz.uTQHz.wfFlag = 0;
  1116. // 跳闸失败标志复归,定时器复归
  1117. ResetTR(&pR->tTripfail_2s);
  1118. pR->uBHDZ.bFlag.bTZSB = 0;
  1119. // 启动标志复归
  1120. pR->uBHQD.dfBHQDLogic = 0;
  1121. // 整组复归定时器复归
  1122. ResetTR(&pR->tTZZFG_5S0ms);
  1123. // 保护总启动标志复归
  1124. pR->zqd = 0;
  1125. // 复归保护启动标志后,再复归启动继电器
  1126. // 如果有就地或远方的分、合闸操作,在继电器出口处会强制打开启动继电器
  1127. sw_do(sw,SW_DO_FZ,SW_DO_TYPE_SELECT_OFF);
  1128. sw_do(sw,SW_DO_BHT,SW_DO_TYPE_SELECT_OFF);
  1129. // 流程处理
  1130. if(pR->gz_process == CXLC_ZZFG)
  1131. {
  1132. pR->gz_process = CXLC_ZCCL;
  1133. }
  1134. else
  1135. {
  1136. watchdog_reset_cpu(57);
  1137. }
  1138. pR->tblqd = 0;
  1139. pR->tbldz = 0;
  1140. pR->tblzzdz = 0;
  1141. pR->fzqd = 0;
  1142. pR->fzdz = 0;
  1143. pR->fzzzdz = 0;
  1144. rt_printf("开关%d整组复归\r\n", sw);
  1145. return 0;
  1146. }
  1147. /******************************************************************************
  1148. 函数名称: _protect_sw_tz
  1149. 函数版本: 01.01
  1150. 创建作者: xxxxxx
  1151. 创建日期: 2015-05-13
  1152. 函数说明: 保护跳闸
  1153. 参数说明: 无
  1154. 返回值: 成功返回0.
  1155. 修改记录:
  1156. */
  1157. static int _protect_sw_tz(u32 dStep)
  1158. {
  1159. bool bCur;
  1160. bool bTz=false;
  1161. u32 sw = g_protect.sw;
  1162. TRELAY_T *pR=&g_tRelay[sw];
  1163. int i;
  1164. u8 bh_bs = g_tRelay[sw].tOC[BH_DLBS].sta.bFlag.bQD;
  1165. #ifdef FUNC_DRIVE
  1166. if(!gb_drive.b_drive_on)
  1167. #endif
  1168. {
  1169. // 校验流程
  1170. if(pR->gz_process != CXLC_BHCL)
  1171. {
  1172. watchdog_reset_cpu(56);
  1173. }
  1174. }
  1175. // 保护动作跳闸情况检测
  1176. for(i=BH_GL1;i<=FA_LX;i++)
  1177. {
  1178. bTz|=pR->tOC[i].sta.bFlag.bTz;
  1179. }
  1180. #ifdef GD_AREA_ZHONGSHAN_2020
  1181. for(i=FAG_GL1;i<=FAG_LX;i++)
  1182. {
  1183. bTz|=pR->tgoc.tOc[i].sta.bFlag.bTz; //跳闸
  1184. }
  1185. #endif
  1186. for(i=0;i<8;i++)
  1187. {
  1188. bTz|=pR->tFdl[i].sta.bFlag.bTz;
  1189. if(pR->tFdl[i].sta.bFlag.bTz)
  1190. pR->tCHZ.sta.bFlag.bCDWC = false; //重合闸放电
  1191. }
  1192. bTz|=pR->uGLFSX.bFlag.bFXDZ;
  1193. bTz|= (pR->tU0TZ.uZOV.bFlag.bTz // 合后接地保护动作
  1194. ||pR->tDYJL.sta.bFlag.bTz
  1195. ||pR->tPLJL.sta.bFlag.bTz
  1196. ||pR->tOVER_U0TZ.uZOV.bFlag.bTz // 过零序电压跳闸
  1197. ||pR->tLostVot.uLostVot.bFlag.bTz //失压分闸
  1198. #ifdef FUN_JDXX
  1199. || pR->tJD.sta.bFlag.bTz // 接地选线跳
  1200. #endif
  1201. );
  1202. #ifdef FUNC_DRIVE
  1203. if(gb_drive.b_drive_on
  1204. && pR->tSWST.uSWST.bFlag.bDIHW
  1205. && gb_drive.b_fa_drive)
  1206. {
  1207. RunTR(&gb_drive.tQDTime_fz,true,dStep);
  1208. }
  1209. else
  1210. {
  1211. ResetTR(&gb_drive.tQDTime_fz);
  1212. }
  1213. #endif
  1214. // 无分闸闭锁
  1215. pR->uBHDZ.bFlag.bBHTrip = bTz && (!pR->bBSTZ) && !bh_bs;
  1216. // 跳闸脉冲最短保持40ms
  1217. // DTUv4此处为100ms need to confirm
  1218. RunTR(&pR->tTrip_BHT40MS, pR->uBHDZ.bFlag.bBHTrip, dStep);
  1219. pR->uBHDZ.bFlag.bBHT = pR->tTrip_BHT40MS.boolTrip || pR->uBHDZ.bFlag.bBHTrip;
  1220. #ifdef SELF_OPEN_RELEASE
  1221. // 保护跳保持继电器 默认保持200ms,用于更准确的区分是保护跳
  1222. RunTR(&pR->tTripBHTKeep, pR->uBHDZ.bFlag.bBHT, dStep);
  1223. pR->uBHDZ.bFlag.bBHTKeep = pR->tTripBHTKeep.boolTrip || pR->uBHDZ.bFlag.bBHT;
  1224. #endif
  1225. // 跳闸失败检查: 跳闸后持续2S有流或合位
  1226. bCur = ((!pR->tSWST.uSWST.bFlag.bSXWL) || pR->tSWST.uSWST.bFlag.bHZWZ);
  1227. RunTR(&pR->tTripfail_hz, pR->uBHDZ.bFlag.bBHT, dStep); //跳闸失败,不与跳闸脉冲关联,防止失压分闸,跳闸脉冲较短,无法判位置
  1228. RunTR(&pR->tTripfail_2s, (pR->tTripfail_hz.boolTrip&&bCur), dStep); //跳闸失败,不与跳闸脉冲关联,防止失压分闸,跳闸脉冲较短,无法判位置
  1229. if (pR->tTripfail_2s.boolTrip)
  1230. {
  1231. pR->uBHDZ.bFlag.bTZSB = 1;
  1232. }
  1233. else
  1234. {
  1235. pR->uBHDZ.bFlag.bTZSB = 0;
  1236. }
  1237. // 有跳闸信号时,可由大电流闭锁不动作,
  1238. // 无闭锁时,需保证一次动作信号仅一次出口
  1239. #ifdef FUNC_DRIVE
  1240. if(!bTz)
  1241. {//避免传动延时分闸时间设为0时无法分闸出口
  1242. pR->uBHDZ.bFlag.bTZOut = 0;
  1243. }
  1244. if(bTz || gb_drive.tQDTime_fz.boolTrip)
  1245. #else
  1246. if(bTz)
  1247. #endif
  1248. {
  1249. if ((!pR->uBHDZ.bFlag.bTZOut)
  1250. && (!pR->bBSTZ) && KZ_OUT_ALL_EN(sw) && g_run_stu.kz_out_tt)
  1251. {
  1252. sw_do(sw,SW_DO_HZ,SW_DO_TYPE_OFF);
  1253. sw_do(sw,SW_DO_BHH,SW_DO_TYPE_OFF);
  1254. sw_do(sw,SW_DO_YKH,SW_DO_TYPE_OFF);
  1255. sw_do(sw,SW_DO_BHDZ,SW_DO_TYPE_ON);
  1256. sw_do(sw,SW_DO_FZ,SW_DO_TYPE_ON);
  1257. sw_do(sw,SW_DO_BHT,SW_DO_TYPE_ON);
  1258. #ifdef CUSTOMIZE_BZT //备自投
  1259. bzt_oc_sw_off(sw);
  1260. #endif
  1261. #ifdef FUNC_DRIVE
  1262. if(gb_drive.tQDTime_fz.boolTrip)
  1263. {
  1264. pR->uBHDZ.bFlag.bTZOut = 0; //传动结束后应返回原正常逻辑,不应影响原功能运行
  1265. ResetTR(&gb_drive.tQDTime_fz);
  1266. }
  1267. else
  1268. #endif
  1269. {
  1270. pR->uBHDZ.bFlag.bTZOut = 1;
  1271. }
  1272. tRunPara.sysData.wSwTzCount++;
  1273. rt_printf("开关%d保护跳闸\r\n", sw);
  1274. }
  1275. }
  1276. else
  1277. {
  1278. pR->uBHDZ.bFlag.bTZOut = 0;
  1279. }
  1280. return 0;
  1281. }
  1282. /******************************************************************************
  1283. 函数名称: _protect_sw_hz
  1284. 函数版本: 01.01
  1285. 创建作者: xxxxxx
  1286. 创建日期: 2015-05-13
  1287. 函数说明: 保护合闸
  1288. 参数说明: 无
  1289. 返回值: 成功返回0.
  1290. 修改记录:
  1291. */
  1292. static int _protect_sw_hz(u32 dStep)
  1293. {
  1294. bool bHz=false;
  1295. int sw=g_protect.sw;
  1296. TRELAY_T *pR=&g_tRelay[sw];
  1297. // 保护动作合闸情况检测
  1298. bHz =(pR->tCHZ.sta.bFlag.bHz // 重合闸
  1299. || pR->tSDHZ.uSdhz_S.bFlag.bHz // 分段开关上电合闸
  1300. || pR->tSDHZ.uSdhz_L.bFlag.bHz); // 联络开关上电合闸
  1301. #ifdef FUNC_DRIVE
  1302. if(gb_drive.b_drive_on
  1303. && pR->tSWST.uSWST.bFlag.bDITW
  1304. && gb_drive.b_fa_drive)
  1305. {
  1306. RunTR(&gb_drive.tQDTime_hz,true,dStep);
  1307. }
  1308. else
  1309. {
  1310. ResetTR(&gb_drive.tQDTime_hz);
  1311. }
  1312. #endif
  1313. pR->uBHDZ.bFlag.bBHH=bHz;
  1314. // 有合闸信号时,需保证一次动作信号仅一次出口
  1315. #ifdef FUNC_DRIVE
  1316. if(!bHz)
  1317. {//避免传动延时分闸时间设为0时无法分闸出口
  1318. pR->uBHDZ.bFlag.bHZOut = 0;
  1319. }
  1320. if(bHz || gb_drive.tQDTime_hz.boolTrip)
  1321. #else
  1322. if(bHz)
  1323. #endif
  1324. {
  1325. if (!pR->uBHDZ.bFlag.bHZOut && !pR->bBSHZ && KZ_OUT_ALL_EN(sw))
  1326. {
  1327. sw_do(sw,SW_DO_HZ,SW_DO_TYPE_ON);
  1328. sw_do(sw,SW_DO_BHH,SW_DO_TYPE_ON);
  1329. #ifdef FUNC_DRIVE
  1330. if(gb_drive.b_drive_on)
  1331. {
  1332. gb_drive.b_drive_on = false;
  1333. ResetTR(&gb_drive.tQDTime_hz);
  1334. }
  1335. #endif
  1336. pR->uBHDZ.bFlag.bHZOut = 1;
  1337. tRunPara.sysData.wSwHzCount++;
  1338. //rt_printf("开关%d保护合闸\r\n", sw);
  1339. }
  1340. }
  1341. else
  1342. {
  1343. pR->uBHDZ.bFlag.bHZOut = 0;
  1344. }
  1345. return 0;
  1346. }
  1347. void sw_op_fail(DWORD dStep)
  1348. {
  1349. int sw=g_protect.sw;
  1350. TRELAY_T *pR=&g_tRelay[sw];
  1351. TSDHZ_T *pSW =&pR->tSDHZ;
  1352. #ifdef CUSTOMIZE_BZT //备自投
  1353. UBZT *uBZT = &pR->tBzt.uBZT;
  1354. #endif
  1355. #if defined SW_FAIL_SINGLE_OUT //开关拒动发送失灵信号
  1356. static int status=0;
  1357. #endif
  1358. //分闸失败检查
  1359. RunTR(&pSW->tTz0ms2s, pR->uRmtSW.bTz_Doing, dStep);
  1360. if(pSW->tTz0ms2s.boolTrip && (pR->run_stu.sw==2))
  1361. {
  1362. if(soe_check(EV_TZFAIL+sw*EV_SW_NUM)==false)
  1363. soe_record_ev(EV_TZFAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1364. if(soe_check(EV_SWFAIL+sw*EV_SW_NUM)==false)
  1365. soe_record_ev(EV_SWFAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1366. #ifdef FUNC_DRIVE
  1367. if(gb_drive.b_drive_soe)
  1368. {
  1369. if(soe_check(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM)==false)
  1370. {
  1371. soe_record_ev(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1372. }
  1373. gb_drive.b_drive_on = false;
  1374. gb_drive.b_drive_soe = false;
  1375. }
  1376. #endif
  1377. pR->uRmtSW.bTz_Doing = 0;
  1378. #ifdef CUSTOMIZE_BZT //备自投
  1379. if(uBZT->bBZT.bZF && uBZT->bBZT.bSYFZ)
  1380. {
  1381. uBZT->bBZT.bSYFZ = 0;
  1382. pR->tSWST.uSWST.bFlag.bBZTSY = 0;
  1383. }
  1384. #endif
  1385. ResetTR(&pSW->tTz0ms2s);
  1386. #ifdef FUNC_DRIVE_JY
  1387. if(gb_drive.b_drive_on)
  1388. {
  1389. gb_drive.b_drive_on = false;
  1390. if(soe_check(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM)==false) //不停电传动开关拒分
  1391. {
  1392. soe_record_ev(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1393. }
  1394. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==false) //传动结束
  1395. {
  1396. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 1, 0,0,0 );
  1397. }
  1398. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==true) //传动结束返回
  1399. {
  1400. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 0, 0,0,0 );
  1401. }
  1402. }
  1403. gb_drive.b_drive_success = false;
  1404. #endif
  1405. }
  1406. #ifdef SOE_RECORD_DELAY
  1407. //分闸动作check
  1408. if(soe_check(EV_TZFAIL+sw*EV_SW_NUM)==true)//分闸拒动:清空延时SOE QUEUE
  1409. {
  1410. if(g_soe_queue.fzsoe_wait_flag)
  1411. memset((char *)&g_soe_queue.delay_fzsoe_tab,0,sizeof(DELAY_SOE_DATA)*DELAY_SOE_MAX);//clear delay_fzsoe_tab[] buffer
  1412. g_soe_queue.fzsoe_wait_flag = false;
  1413. g_soe_queue.fzsoe_delay_flag = false;
  1414. g_soe_queue.delay_fzsoe_count = 0;
  1415. }
  1416. else if(g_soe_queue.fzsoe_wait_flag && (pR->run_stu.sw==1))//启动转录: 分闸SOE QUEUE非空 && 分位(分闸成功)
  1417. {
  1418. int i;
  1419. g_soe_queue.fzsoe_delay_flag = true;
  1420. g_soe_queue.fzsoe_wait_flag = false;
  1421. for(i=0;i<DELAY_SOE_MAX;i++)
  1422. {
  1423. if(g_soe_queue.delay_fzsoe_tab[i].value==0) break;//null
  1424. g_soe_queue.delay_fzsoe_count = i;
  1425. //if((g_soe_queue.delay_fzsoe_tab[i].code%EV_SW_NUM)==EV_HA_FZ) //重置手分时间
  1426. //clk_time_get(&g_soe_queue.delay_fzsoe_tab[i].ts);
  1427. soe_record_ev( g_soe_queue.delay_fzsoe_tab[i].code,g_soe_queue.delay_fzsoe_tab[i].value, g_soe_queue.delay_fzsoe_tab[i].v1,g_soe_queue.delay_fzsoe_tab[i].v2,g_soe_queue.delay_fzsoe_tab[i].v3);
  1428. }
  1429. memset((char *)&g_soe_queue.delay_fzsoe_tab,0,sizeof(DELAY_SOE_DATA)*DELAY_SOE_MAX);//clear delay_soe_tab[] buffer
  1430. g_soe_queue.delay_fzsoe_count = 0;
  1431. g_soe_queue.fzsoe_delay_flag = false;
  1432. }
  1433. #endif
  1434. //合闸失败检查
  1435. RunTR(&pSW->tHz0ms2s, pR->uRmtSW.bHz_Doing, dStep);
  1436. if(pSW->tHz0ms2s.boolTrip && (pR->run_stu.sw==1))
  1437. {
  1438. if(soe_check(EV_HZFAIL+sw*EV_SW_NUM)==false)
  1439. soe_record_ev(EV_HZFAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1440. if(soe_check(EV_SWFAIL+sw*EV_SW_NUM)==false)
  1441. soe_record_ev(EV_SWFAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1442. #ifdef FUNC_DRIVE
  1443. if(gb_drive.b_drive_soe)
  1444. {
  1445. if(soe_check(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM)==false)
  1446. {
  1447. soe_record_ev(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1448. }
  1449. gb_drive.b_drive_on = false;
  1450. gb_drive.b_drive_soe = false;
  1451. }
  1452. #endif
  1453. #ifdef FUNC_DRIVE_JY
  1454. if(gb_drive.b_drive_on || gb_drive.b_drive_success_again)
  1455. {
  1456. if(soe_check(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM)==false) //不停电传动开关拒合
  1457. {
  1458. soe_record_ev(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1459. }
  1460. if(gb_drive.b_drive_success_again)
  1461. {
  1462. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==false) //传动结束
  1463. {
  1464. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 1, 0,0,0 );
  1465. }
  1466. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==true) //传动结束返回
  1467. {
  1468. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 0, 0,0,0 );
  1469. }
  1470. }
  1471. gb_drive.b_drive_success_again = false;
  1472. gb_drive.b_drive_on = false;
  1473. }
  1474. gb_drive.b_drive_success = false;
  1475. #endif
  1476. if(pSW->uSdhz_L.bFlag.bX_HZEvent)
  1477. {
  1478. #ifndef GD_AREA_ZHONGSHAN_2020 //中山2020不报分布式恢复失败SOE
  1479. if(soe_check(EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM)==false)
  1480. soe_record_ev(EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1481. #endif
  1482. }
  1483. pSW->uSdhz_L.bFlag.bX_HZEvent = false;
  1484. pR->uRmtSW.bHz_Doing = 0;
  1485. ResetTR(&pSW->tHz0ms2s);
  1486. }
  1487. #ifdef SOE_RECORD_DELAY
  1488. //合闸动作check
  1489. if(soe_check(EV_HZFAIL+sw*EV_SW_NUM)==true)//合闸拒动:清空延时SOE QUEUE
  1490. {
  1491. if(g_soe_queue.hzsoe_wait_flag)
  1492. memset((char *)&g_soe_queue.delay_hzsoe_tab,0,sizeof(DELAY_SOE_DATA)*DELAY_SOE_MAX);//clear delay_hzsoe_tab[] buffer
  1493. g_soe_queue.hzsoe_wait_flag = false;
  1494. g_soe_queue.hzsoe_delay_flag = false;
  1495. g_soe_queue.delay_hzsoe_count = 0;
  1496. }
  1497. else if(g_soe_queue.hzsoe_wait_flag && (pR->run_stu.sw==2))//启动转录: 合闸SOE QUEUE非空 && 合位(合闸成功)
  1498. {
  1499. int i;
  1500. g_soe_queue.hzsoe_delay_flag = true;//转录标志
  1501. g_soe_queue.hzsoe_wait_flag = false;
  1502. for(i=0;i<DELAY_SOE_MAX;i++)
  1503. {
  1504. if(g_soe_queue.delay_hzsoe_tab[i].value==0) break;//null
  1505. g_soe_queue.delay_hzsoe_count = i;
  1506. soe_record_ev( g_soe_queue.delay_hzsoe_tab[i].code,g_soe_queue.delay_hzsoe_tab[i].value, g_soe_queue.delay_hzsoe_tab[i].v1,g_soe_queue.delay_hzsoe_tab[i].v2,g_soe_queue.delay_hzsoe_tab[i].v3);
  1507. }
  1508. memset((char *)&g_soe_queue.delay_hzsoe_tab,0,sizeof(DELAY_SOE_DATA)*DELAY_SOE_MAX);//clear delay_soe_tab[] buffer
  1509. g_soe_queue.delay_hzsoe_count = 0;
  1510. g_soe_queue.hzsoe_delay_flag = false;
  1511. }
  1512. #endif
  1513. //合闸失败返回
  1514. pR->run_stu.hw_change = (pR->run_stu.sw==1) ? true : false || pR->run_stu.hw_change;
  1515. if(pR->run_stu.hw_change && ((pR->run_stu.sw==2)?true:false)) // 开关由分到合
  1516. {
  1517. pR->uRmtSW.bHz_Doing = false;
  1518. pR->run_stu.hw_change = false;
  1519. if(soe_check(EV_HZFAIL+sw*EV_SW_NUM)==true)
  1520. soe_record_ev(EV_HZFAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1521. if(soe_check(EV_SWFAIL+sw*EV_SW_NUM)==true)
  1522. soe_record_ev(EV_SWFAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1523. if(soe_check(EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM)==true)
  1524. soe_record_ev( EV_GOOSE_HZ_FAIL+sw*EV_SW_NUM,0, 0,0,0 );
  1525. #ifdef FUNC_DRIVE
  1526. if(soe_check(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM)==true)
  1527. {
  1528. soe_record_ev(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1529. }
  1530. #endif
  1531. #ifdef FUNC_DRIVE_JY
  1532. if(gb_drive.b_drive_on_check)
  1533. {
  1534. gb_drive.b_drive_on_check = false;
  1535. }
  1536. if(soe_check(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM)==true) //不停电传动开关拒合返回
  1537. {
  1538. soe_record_ev(EV_DRIVE_HZ_FAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1539. }
  1540. if(gb_drive.b_drive_success || gb_drive.b_drive_success_again)
  1541. {
  1542. if(BH_ALL_EN(sw))
  1543. {
  1544. gb_drive.b_drive_on = false;
  1545. }
  1546. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==false) //传动结束
  1547. {
  1548. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 1, 0,0,0 );
  1549. }
  1550. if(soe_check(EV_DRIVE_END+sw*EV_SW_NUM)==true) //传动结束返回
  1551. {
  1552. soe_record_ev(EV_DRIVE_END+sw*EV_SW_NUM, 0, 0,0,0 );
  1553. }
  1554. if(soe_check(EV_DRIVE_SUCESS+sw*EV_SW_NUM)==false) //不停电传动成功
  1555. {
  1556. soe_record_ev(EV_DRIVE_SUCESS+sw*EV_SW_NUM, 1, 0,0,0 );
  1557. }
  1558. if(soe_check(EV_DRIVE_SUCESS+sw*EV_SW_NUM)==true) //不停电传动成功返回
  1559. {
  1560. soe_record_ev(EV_DRIVE_SUCESS+sw*EV_SW_NUM, 0, 0,0,0 );
  1561. }
  1562. gb_drive.b_drive_success = false;
  1563. gb_drive.b_drive_success_again = false;
  1564. }
  1565. #endif
  1566. #ifdef SELF_OPEN_RELEASE
  1567. pR->uRmtSW.bSwTz = false;
  1568. #endif
  1569. #ifdef CUSTOMIZE_BZT //备自投
  1570. if(uBZT->bBZT.bZF && uBZT->bBZT.bSYFZ)
  1571. {
  1572. uBZT->bBZT.bSYFZ = 0;
  1573. pR->tSWST.uSWST.bFlag.bBZTSY = 0;
  1574. }
  1575. #endif
  1576. }
  1577. //跳闸失败返回
  1578. pR->run_stu.tw_change = (pR->run_stu.sw==2) ? true : false || pR->run_stu.tw_change;
  1579. if(pR->run_stu.tw_change && ((pR->run_stu.sw==1)?true:false)) // 开关由合到分
  1580. {
  1581. #ifdef SELF_OPEN_RELEASE
  1582. if(!pR->uBHDZ.bFlag.bBHTKeep)
  1583. {
  1584. pR->uRmtSW.bSwTz = true; //开关拉杆分闸
  1585. }
  1586. #endif
  1587. pR->uRmtSW.bTz_Doing = false;
  1588. pR->run_stu.tw_change = false;
  1589. if(soe_check(EV_TZFAIL+sw*EV_SW_NUM)==true)
  1590. soe_record_ev(EV_TZFAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1591. if(soe_check(EV_SWFAIL+sw*EV_SW_NUM)==true)
  1592. soe_record_ev(EV_SWFAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1593. #ifdef FUNC_DRIVE
  1594. if(soe_check(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM)==true)
  1595. {
  1596. soe_record_ev(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1597. }
  1598. #endif
  1599. #ifdef CUSTOMIZE_BZT //备自投
  1600. if(uBZT->bBZT.bZF && uBZT->bBZT.bSYFZ)
  1601. {
  1602. 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))
  1603. {
  1604. sw_do(sw,SW_DO_JX1_SY,SW_DO_TYPE_ON);
  1605. }
  1606. /*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))
  1607. {
  1608. sw_do(sw,SW_DO_JX2_SY,SW_DO_TYPE_ON);
  1609. }*/
  1610. uBZT->bBZT.bSYFZ = 0;
  1611. pR->tSWST.uSWST.bFlag.bBZTSY = 0;
  1612. }
  1613. #endif
  1614. #ifdef FUNC_DRIVE_JY
  1615. if(soe_check(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM)==true) //不停电传动开关拒分返回
  1616. {
  1617. soe_record_ev(EV_DRIVE_TZ_FAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1618. }
  1619. #endif
  1620. }
  1621. #if defined SW_FAIL_SINGLE_OUT //开关拒动发送失灵信号
  1622. if(soe_check(EV_SWFAIL+sw*EV_SW_NUM)==true)
  1623. {
  1624. sw_do(sw,SW_DO_UNSTUCK_SINGLE,SW_DO_TYPE_ON);
  1625. if(status==0)
  1626. {
  1627. status=1; //输出空接点
  1628. //rt_printf("开关拒动失灵信号发送开始\r\n");
  1629. }
  1630. }
  1631. else if((soe_check(EV_SWFAIL+sw*EV_SW_NUM)==false)&&(status==1))
  1632. {
  1633. sw_do(sw,SW_DO_UNSTUCK_SINGLE,SW_DO_TYPE_OFF);
  1634. status=0; //不输出空接点
  1635. //rt_printf("开关拒动失灵信号发送结束\r\n");
  1636. }
  1637. #endif
  1638. #ifdef FUNC_DRIVE
  1639. RunTR(&gb_drive.tQDTime_fz_end, (gb_drive.bTz_Doing && gb_drive.b_drive_process), dStep);
  1640. if(gb_drive.tQDTime_fz_end.boolTrip)
  1641. {
  1642. gb_drive.bTz_Doing = 0;
  1643. }
  1644. RunTR(&gb_drive.tQDTime_hz_end, (gb_drive.bHz_Doing && gb_drive.b_drive_process), dStep);
  1645. if(gb_drive.tQDTime_hz_end.boolTrip)
  1646. {
  1647. gb_drive.bHz_Doing = 0;
  1648. }
  1649. //分/合闸后延时结束传动
  1650. if(gb_drive.tQDTime_fz_end.boolTrip || gb_drive.tQDTime_hz_end.boolTrip)
  1651. {
  1652. gb_drive.b_drive_on = false;
  1653. gb_drive.b_drive_process = false;
  1654. gb_drive.bQuit = true;
  1655. gb_drive.sw = sw;
  1656. ResetTR(&gb_drive.tQDTime_fz_end);
  1657. ResetTR(&gb_drive.tQDTime_hz_end);
  1658. if(soe_check(EV_DRIVE_BEGIN+sw*EV_SW_NUM)==true)
  1659. {
  1660. soe_record_ev(EV_DRIVE_BEGIN+sw*EV_SW_NUM, 0, 0,0,0 );
  1661. }
  1662. }
  1663. #endif
  1664. }
  1665. /******************************************************************************
  1666. 函数名称: _alarm_process
  1667. 函数版本: 01.01
  1668. 创建作者: xxxxxx
  1669. 创建日期: 2015-10-23
  1670. 函数说明: 异常告警类逻辑
  1671. 参数说明: 无
  1672. 返回值: 成功返回0.
  1673. 修改记录:
  1674. */
  1675. static int _protect_alarm(void)
  1676. {
  1677. u32 sw = g_protect.sw;
  1678. TRELAY_T *pR=&g_tRelay[sw];
  1679. TSWST *pSW = &pR->tSWST;
  1680. // 弹簧未储能告警
  1681. if (pSW->uSWST.bFlag.bWCN)
  1682. {
  1683. if(soe_check(EV_TH_WCN+sw*EV_SW_NUM)==false)
  1684. {
  1685. soe_record_ev(EV_TH_WCN+sw*EV_SW_NUM, 1, 0,0,0 );
  1686. }
  1687. }
  1688. else
  1689. {
  1690. if(soe_check(EV_TH_WCN+sw*EV_SW_NUM)==true)
  1691. {
  1692. soe_record_ev(EV_TH_WCN+sw*EV_SW_NUM, 0, 0,0,0 );
  1693. }
  1694. }
  1695. if (pSW->uSWST.bFlag.bKZHL)
  1696. {
  1697. if(soe_check(EV_KZHL+sw*EV_SW_NUM)==false)
  1698. {
  1699. soe_record_ev(EV_KZHL+sw*EV_SW_NUM, 1, 0,0,0 );
  1700. }
  1701. }
  1702. else
  1703. {
  1704. if(soe_check(EV_KZHL+sw*EV_SW_NUM)==true)
  1705. {
  1706. soe_record_ev(EV_KZHL+sw*EV_SW_NUM, 0, 0,0,0 );
  1707. }
  1708. }
  1709. // 跳位有流告警
  1710. if (pSW->uSWST.bFlag.bTWYL && KZ_OUT_ALL_EN(sw))
  1711. {
  1712. if(soe_check(EV_TWYL+sw*EV_SW_NUM)==false)
  1713. {
  1714. soe_record_ev(EV_TWYL+sw*EV_SW_NUM, 1, 0,0,0 );
  1715. }
  1716. }
  1717. else
  1718. {
  1719. if(soe_check(EV_TWYL+sw*EV_SW_NUM)==true)
  1720. {
  1721. soe_record_ev(EV_TWYL+sw*EV_SW_NUM, 0, 0,0,0 );
  1722. }
  1723. }
  1724. // 跳闸失败
  1725. if (pR->uBHDZ.bFlag.bTZSB && KZ_OUT_ALL_EN(sw))
  1726. {
  1727. if(soe_check(EV_TZFAIL+sw*EV_SW_NUM)==false)
  1728. {
  1729. soe_record_ev(EV_TZFAIL+sw*EV_SW_NUM, 1, 0,0,0 );
  1730. }
  1731. }
  1732. else
  1733. {
  1734. if(soe_check(EV_TZFAIL+sw*EV_SW_NUM)==true)
  1735. {
  1736. soe_record_ev(EV_TZFAIL+sw*EV_SW_NUM, 0, 0,0,0 );
  1737. }
  1738. }
  1739. return 0;
  1740. }
  1741. /**************************************************************************
  1742. 函数名称:_protect_rmt_sw
  1743. 函数版本:1.00
  1744. 作者: mwd
  1745. 创建日期:2007.9.29
  1746. 函数功能说明:开关遥控:遥控器、PDA
  1747. 输入参数:
  1748. 输出参数:
  1749. 返回值:
  1750. 函数扇入清单:
  1751. 日志:
  1752. ***************************************************************************/
  1753. static int _protect_rmt_sw(u32 dStep)
  1754. {
  1755. u32 sw = g_protect.sw;
  1756. URMTSW *pRmtsw=&g_tRelay[sw].uRmtSW;
  1757. RUN_STU_SW *pRunstu=&g_tRelay[sw].run_stu;
  1758. TRELAY_T *pR=&g_tRelay[sw];
  1759. u8 Ycn= !(pR->run_stu.wcn && pRunSet->tSwSet[sw].bTT_WCN);//已储能
  1760. RunTR(&pR->tMb_yuk_time, g_run_stu.mb_yuk, dStep);//预置按键取消
  1761. if(pR->tMb_yuk_time.boolTrip)
  1762. g_run_stu.mb_yuk=0;
  1763. if (((((g_rmt_op.cmd == CMD_HZ)||pRunstu->sw_sh||g_run_stu.mb_hz) && (!g_run_stu.yf) && Ycn)
  1764. || g_tPDA.bPDAHz || g_tPDA.bMsgHz)&&(!fa_bs_hz(sw))) //有手合信号
  1765. {
  1766. if(pRunSet->tSwSet[sw].btt_gnyb_tqhz)
  1767. {
  1768. pRmtsw->bTQHz=true;
  1769. }
  1770. else if(!pRmtsw->bHandHz)
  1771. {
  1772. pRmtsw->bHandHz = true;
  1773. pRmtsw->bHandHz_fa = true;
  1774. #ifdef CUSTOMIZE_BZT //备自投
  1775. BZT_ManualOnOffHandle(sw, SW_DO_FD_HZ);
  1776. #endif
  1777. sw_do(sw,SW_DO_HZ,SW_DO_TYPE_ON);
  1778. sw_do(sw,SW_DO_YKH,SW_DO_TYPE_ON);
  1779. if(g_rmt_op.cmd == CMD_HZ)
  1780. {
  1781. soe_record_opt(EV_433M_HZ, 1);
  1782. }
  1783. else if (pRunstu->sw_sh)
  1784. {
  1785. soe_record_opt(EV_HAND_HZ, 1);
  1786. }
  1787. else if (g_run_stu.mb_hz)
  1788. {
  1789. soe_record_ev(EV_MB_HZ, 1, 0,0,0 );
  1790. g_run_stu.mb_hz=0;
  1791. }
  1792. else if(g_tPDA.bPDAHz)
  1793. {
  1794. soe_record_opt(EV_PDA_HZ, 1);
  1795. }
  1796. else
  1797. {
  1798. soe_record_opt(EV_MSG_HZ, 1);
  1799. }
  1800. }
  1801. //pRmtsw->bTQHz=false; //手合将同期合闸标志清零??
  1802. g_tPDA.bPDAHz=false;
  1803. g_tPDA.bMsgHz=false;
  1804. g_rmt_op.cmd = CMD_NILL;
  1805. }
  1806. #if 0//科陆东自V1&V2版本临时测试用, 佛山局用的永磁模块未储能时无法带动继电器,我司用开出5模拟一个该信号
  1807. if(pRunstu->wcn)
  1808. {
  1809. sw_do(sw,SW_RST_SY,SW_DO_TYPE_ON);
  1810. sw_do(sw,SW_RST_SY1,SW_DO_TYPE_OFF);
  1811. }
  1812. else
  1813. {
  1814. sw_do(sw,SW_RST_SY1,SW_DO_TYPE_ON);
  1815. sw_do(sw,SW_RST_SY,SW_DO_TYPE_OFF);
  1816. }
  1817. #else //v3版本储能信号开出
  1818. if(pRunstu->wcn)
  1819. {
  1820. sw_do(sw,SW_DO_CN,SW_DO_TYPE_OFF);
  1821. }
  1822. else
  1823. {
  1824. sw_do(sw,SW_DO_CN,SW_DO_TYPE_ON);
  1825. }
  1826. //rt_printf("pRunstu->wcn=%d \r\n",pRunstu->wcn);
  1827. #endif
  1828. if (((((g_rmt_op.cmd == CMD_FZ)||pRunstu->sw_sf||g_run_stu.mb_fz) && (!g_run_stu.yf))
  1829. || g_tPDA.bPDATz || g_tPDA.bMsgTz)&&(!pR->bBSTZ)) //有手跳信号
  1830. {
  1831. if(!pRmtsw->bHandTz)
  1832. {
  1833. pRmtsw->bHandTz = true;
  1834. pRmtsw->bHandTz_fa = true;
  1835. sw_do(sw,SW_DO_HZ,SW_DO_TYPE_OFF);
  1836. sw_do(sw,SW_DO_BHH,SW_DO_TYPE_OFF);
  1837. #ifdef CUSTOMIZE_BZT //备自投
  1838. sw_do(sw,SW_DO_FD_FZ,SW_DO_TYPE_ON);
  1839. #endif
  1840. sw_do(sw,SW_DO_BHDZ,SW_DO_TYPE_ON);
  1841. sw_do(sw,SW_DO_FZ,SW_DO_TYPE_ON);
  1842. sw_do(sw,SW_DO_YKT,SW_DO_TYPE_ON);
  1843. if(g_rmt_op.cmd == CMD_FZ)
  1844. {
  1845. soe_record_opt(EV_433M_TZ,1);
  1846. }
  1847. else if (pRunstu->sw_sf)
  1848. {
  1849. soe_record_opt(EV_HAND_TZ, 1);
  1850. }
  1851. else if (g_run_stu.mb_fz)
  1852. {
  1853. soe_record_ev(EV_MB_TZ, 1, 0,0,0 );
  1854. g_run_stu.mb_fz=0;
  1855. }
  1856. else if(g_tPDA.bPDATz)
  1857. {
  1858. soe_record_opt(EV_PDA_TZ,1);
  1859. }
  1860. else
  1861. {
  1862. soe_record_opt(EV_MSG_TZ,1);
  1863. }
  1864. }
  1865. g_tPDA.bPDATz=false;
  1866. g_tPDA.bMsgTz=false;
  1867. g_rmt_op.cmd = CMD_NILL;
  1868. }
  1869. //手持遥控复归 C 信号复归
  1870. if(g_rmt_op.cmd == CMD_FG)
  1871. {
  1872. SignalReset(0,false);
  1873. g_rmt_op.cmd = CMD_NILL;
  1874. rt_printf("遥控器复归信号产生\r\n");
  1875. }
  1876. return 0;
  1877. }
  1878. /******************************************************************************
  1879. 函数名称: _protect_sfsh_clr
  1880. 函数版本: 01.01
  1881. 创建作者: xxxxxx
  1882. 创建日期: 2015-10-23
  1883. 函数说明: 清除手分、手合标志
  1884. 参数说明: 无
  1885. 返回值: 成功返回0.
  1886. 修改记录:
  1887. */
  1888. static int _protect_sfsh_clr(void)
  1889. {
  1890. URMTSW *pRmtsw=&g_tRelay[g_protect.sw].uRmtSW;
  1891. pRmtsw->bHandHz = false;
  1892. pRmtsw->bHandTz = false;
  1893. return 0;
  1894. }
  1895. /******************************************************************************
  1896. 函数名称: _protect_check_fault
  1897. 函数版本: 01.01
  1898. 创建作者: xxxxxx
  1899. 创建日期: 2015-10-23
  1900. 函数说明: 检查保护是否返回
  1901. 参数说明: 无
  1902. 返回值: 成功返回0.
  1903. 修改记录:
  1904. */
  1905. static bool _protect_check_fault(int sw)
  1906. {
  1907. int i;
  1908. TRELAY_T *pR=&g_tRelay[sw];
  1909. bool bY1=false;
  1910. for(i=BH_GL1;i<=FA_LX;i++)
  1911. {
  1912. bY1|=(pR->tOC[i].sta.bFlag.bTz||pR->tOC[i].sta.bFlag.bGj);
  1913. }
  1914. for(i=0;i<8;i++)
  1915. {
  1916. bY1|=pR->tFdl[i].sta.bFlag.bTz;
  1917. }
  1918. bY1|=pR->tgoc.sta.bFlag.bglTz
  1919. #if defined GD_AREA_ZHONGSHAN || defined GD_AREA_ZHONGSHAN_2020
  1920. ||pR->tgoc.sta.bFlag.bgl2Tz
  1921. #endif
  1922. ||pR->tgoc.sta.bFlag.blxTz
  1923. ||pR->tgoc.sta.bFlag.bgzglTz
  1924. ||pR->tgoc.sta.bFlag.bsdTz
  1925. ||pR->tgoc.sta.bFlag.bextTz
  1926. ||pR->tgoc.sta.bFlag.berrTz
  1927. ||pR->tgoc.sta.bFlag.bllhz;
  1928. bY1|=pR->uGLFSX.bFlag.bFXDZ;
  1929. bY1|= (pR->tCHZ.sta.bFlag.bHz
  1930. ||pR->tXXTZ.uZOV.bFlag.bTz
  1931. || pR->tU0TZ.uZOV.bFlag.bTz
  1932. || pR->tDYJL.sta.bFlag.bTz
  1933. || pR->tPLJL.sta.bFlag.bTz
  1934. || pR->tLostVot.uLostVot.bFlag.bTz
  1935. ||pR->tOVER_U0TZ.uZOV.bFlag.bTz // 过零序电压跳闸
  1936. #ifdef FUN_JDXX
  1937. || pR->tJD.sta.bFlag.bTz // 接地选线跳
  1938. #endif
  1939. );
  1940. if(bY1)
  1941. {
  1942. return true;
  1943. }
  1944. return false;
  1945. }
  1946. /*------------------------------ 测试函数 -------------------------------------
  1947. 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
  1948. 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).
  1949. */
  1950. int protect_stat_reset(void)
  1951. {
  1952. int sw;
  1953. for(sw=0; sw<SWITCH_NUM_MAX; sw++)
  1954. {
  1955. TRELAY_T *pR=&g_tRelay[sw];
  1956. rt_stat_init(&pR->tbl_stat,"突变量");
  1957. rt_stat_init(&pR->tbldz_stat,"突变量动作");
  1958. rt_stat_init(&pR->tblzzdz_stat,"突变量整组动作");
  1959. rt_stat_init(&pR->fz_stat,"幅值");
  1960. rt_stat_init(&pR->fzdz_stat,"幅值动作");
  1961. rt_stat_init(&pR->fzzzdz_stat,"幅值整组动作");
  1962. }
  1963. return 0;
  1964. }
  1965. int protect_printf_process(void)
  1966. {
  1967. int sw;
  1968. rt_printf("[突变量启动耗时(us):]\r\n");
  1969. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  1970. for (sw=0; sw<g_sw_num; sw++)
  1971. {
  1972. TRELAY_T *pR=&g_tRelay[sw];
  1973. rt_printf("%d\t", sw);
  1974. rt_stat_printf(&pR->tbl_stat);
  1975. }
  1976. rt_printf("\r\n[突变量动作耗时(us):]\r\n");
  1977. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  1978. for (sw=0; sw<g_sw_num; sw++)
  1979. {
  1980. TRELAY_T *pR=&g_tRelay[sw];
  1981. rt_printf("%d\t", sw);
  1982. rt_stat_printf(&pR->tbldz_stat);
  1983. }
  1984. rt_printf("\r\n[突变量整组动作耗时(us):]\r\n");
  1985. rt_printf("[需用分闸继电器输入分位开入,防抖为0s]\r\n");
  1986. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  1987. for (sw=0; sw<g_sw_num; sw++)
  1988. {
  1989. TRELAY_T *pR=&g_tRelay[sw];
  1990. rt_printf("%d\t", sw);
  1991. rt_stat_printf(&pR->tblzzdz_stat);
  1992. }
  1993. rt_printf("\r\n[幅值启动耗时(us):]\r\n");
  1994. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  1995. for (sw=0; sw<g_sw_num; sw++)
  1996. {
  1997. TRELAY_T *pR=&g_tRelay[sw];
  1998. rt_printf("%d\t", sw);
  1999. rt_stat_printf(&pR->fz_stat);
  2000. }
  2001. rt_printf("\r\n[幅值动作耗时(us):]\r\n");
  2002. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  2003. for (sw=0; sw<g_sw_num; sw++)
  2004. {
  2005. TRELAY_T *pR=&g_tRelay[sw];
  2006. rt_printf("%d\t", sw);
  2007. rt_stat_printf(&pR->fzdz_stat);
  2008. }
  2009. rt_printf("\r\n[幅值整组动作耗时(us):]\r\n");
  2010. rt_printf("[需用分闸继电器输入分位开入,防抖为0s]\r\n");
  2011. rt_printf("sw\tname\t\t\tmin\tmax\tavg\tsum\t\tcnt\r\n");
  2012. for (sw=0; sw<g_sw_num; sw++)
  2013. {
  2014. TRELAY_T *pR=&g_tRelay[sw];
  2015. rt_printf("%d\t", sw);
  2016. rt_stat_printf(&pR->fzzzdz_stat);
  2017. }
  2018. return 0;
  2019. }
  2020. #ifdef YB_AUTO_SELECT
  2021. bool fa_yb_enable(int sw)
  2022. {
  2023. bool bY1 = false;
  2024. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_TT] != INDEX_INVALLID)
  2025. {
  2026. bY1 = g_tRelay[sw].run_stu.fatt && pRunSet->tSwSet[sw].btt_gnyb_fa; // FA
  2027. }
  2028. else
  2029. {
  2030. bY1 = pRunSet->tSwSet[sw].btt_gnyb_fa; // FA
  2031. }
  2032. return bY1;
  2033. }
  2034. bool goose_yb_enable(int sw)
  2035. {
  2036. bool bY1 = false;
  2037. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_GOOSE] != INDEX_INVALLID)
  2038. {
  2039. bY1 = g_tRelay[sw].run_stu.fa_g_tt && pRunSet->tSwSet[sw].btt_gnyb_dfa; // 智能分布式把手
  2040. }
  2041. else
  2042. {
  2043. bY1 = pRunSet->tSwSet[sw].btt_gnyb_dfa;
  2044. }
  2045. return bY1;
  2046. }
  2047. bool bh_yb_enable(int sw)
  2048. {
  2049. bool bY1 = false;
  2050. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHTT] != INDEX_INVALLID)
  2051. {
  2052. bY1 = g_tRelay[sw].run_stu.cgbhtt && pRunSet->tSwSet[sw].btt_gnyb_cg; // 保护
  2053. }
  2054. else
  2055. {
  2056. bY1 = pRunSet->tSwSet[sw].btt_gnyb_cg; // 保护
  2057. }
  2058. return bY1;
  2059. }
  2060. #endif
  2061. // #ifdef GD_AREA_ZHONGSHAN_2020 //中山要求通信异常,全系统均异常
  2062. #if defined GD_AREA_ZHONGSHAN_2020 || defined YB_AUTO_SELECT
  2063. bool fa_fun_true(int sw)
  2064. {
  2065. bool bY1 = false, bY2 = false, bY3 = false;
  2066. #ifdef YB_AUTO_SELECT
  2067. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_GOOSE] != INDEX_INVALLID)
  2068. {
  2069. bY1 = g_tRelay[sw].run_stu.fa_g_tt && pRunSet->tSwSet[sw].btt_gnyb_dfa; // 智能分布式把手
  2070. }
  2071. else
  2072. {
  2073. bY1 = pRunSet->tSwSet[sw].btt_gnyb_dfa;
  2074. }
  2075. if ((short)g_sw[sw].di_cfg_index[SW_DI_BHTT] != INDEX_INVALLID)
  2076. {
  2077. bY2 = g_tRelay[sw].run_stu.cgbhtt && pRunSet->tSwSet[sw].btt_gnyb_cg; // 保护
  2078. }
  2079. else
  2080. {
  2081. bY2 = pRunSet->tSwSet[sw].btt_gnyb_cg; // 保护
  2082. }
  2083. if ((short)g_sw[sw].di_cfg_index[SW_DI_FA_TT] != INDEX_INVALLID)
  2084. {
  2085. bY3 = g_tRelay[sw].run_stu.fatt && pRunSet->tSwSet[sw].btt_gnyb_fa; // FA
  2086. }
  2087. else
  2088. {
  2089. bY3 = pRunSet->tSwSet[sw].btt_gnyb_fa; // FA
  2090. }
  2091. #else
  2092. bY1 = g_tRelay[sw].run_stu.fa_g_tt && pRunSet->tSwSet[sw].btt_gnyb_dfa // 智能分布式把手
  2093. && ((pRunSet->tSwSet[sw].tGocSet.bsw_fz && pRunSet->tSwSet[sw].btt_gnyb_cg && !pRunSet->tSwSet[sw].btt_gnyb_fa) || (!pRunSet->tSwSet[sw].tGocSet.bsw_fz && pRunSet->tSwSet[sw].btt_gnyb_fa && !pRunSet->tSwSet[sw].btt_gnyb_cg));
  2094. bY2 = g_tRelay[sw].run_stu.cgbhtt && pRunSet->tSwSet[sw].btt_gnyb_cg // 保护
  2095. && (!pRunSet->tSwSet[sw].btt_gnyb_fa && !pRunSet->tSwSet[sw].btt_gnyb_dfa);
  2096. bY3 = g_tRelay[sw].run_stu.fatt && pRunSet->tSwSet[sw].btt_gnyb_fa // FA
  2097. && (!pRunSet->tSwSet[sw].btt_gnyb_cg && !pRunSet->tSwSet[sw].btt_gnyb_dfa);
  2098. #endif
  2099. return (bY1 || bY2 || bY3);
  2100. }
  2101. #endif
  2102. /*------------------------------ 文件结束 -------------------------------------
  2103. */