TestService.cpp 58 KB

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  1. #include "TestService.h"
  2. #include "pid.h"
  3. #include "valve.h"
  4. #include "ballvalve.h"
  5. #include "PressureSensor.h"
  6. #include "Calibrationpara.h"
  7. #include<QDateTime>
  8. #include<QTime>
  9. #include<QEventLoop>
  10. #include<QMessageBox>
  11. #include<cmath>
  12. #include <QSignalSpy>
  13. #include <QDebug>
  14. #include <QFile>
  15. #include <QDir>
  16. TestService::TestService(QThread *parent)
  17. :QThread(parent)
  18. ,m_SerialUi3(nullptr)
  19. ,m_SerialUi4(nullptr)
  20. ,m_pTimer_1(nullptr)
  21. ,m_pTimer_2(nullptr)
  22. ,m_compartmentid(0)
  23. {
  24. m_bRunning=false;
  25. m_bRealEnd = true;
  26. for(int i=0; i<MAX_COMPARTMENT_NUM; i++ ){
  27. m_tank.m_comparts[i].m_id = i;
  28. }
  29. }
  30. TestService::~TestService()
  31. {
  32. }
  33. void TestService::init()
  34. {
  35. m_pTimer_1 = new QTimer(this);
  36. connect(m_pTimer_1, SIGNAL(timeout()), this, SLOT(OnTimer1()));
  37. //m_pTimer_2 = new QTimer(this);
  38. //connect(m_pTimer_2, SIGNAL(timeout()), this, SLOT(OnTimer2()));
  39. if(!m_SerialUi3.serialConnect("COM3", "9600", "8", "0", "1")){
  40. QString str = "打开串口COM3失败";
  41. emit onNotice(str);
  42. }
  43. #if 1
  44. if(!m_SerialUi4.serialConnect("COM4", "9600", "8", "2", "1")){
  45. QString str = "打开串口COM4失败";
  46. emit onNotice(str);
  47. }
  48. #endif
  49. connect(&m_report, SIGNAL(onProgress(QString)), this, SLOT(receive_reportprogress(QString)));
  50. }
  51. bool TestService::setTankinfo(const QVariantList& list)
  52. {
  53. QString standard_name;
  54. QString licenseplate_str;
  55. QString companyname_str;
  56. int compartment_num = 0;
  57. int total_volume = 0;
  58. int volume[MAX_COMPARTMENT_NUM] ={0};
  59. for(int i=0; i<list.count(); i++){
  60. QString item_string = list[i].toString();
  61. if(0 == i){
  62. standard_name = item_string;
  63. }else if(1 == i){
  64. licenseplate_str = item_string;
  65. }else if(2 == i){
  66. companyname_str = item_string;
  67. }else if(3 == i){
  68. total_volume = item_string.toInt();
  69. }else if(4 == i){
  70. compartment_num = item_string.toInt();
  71. }else{
  72. if(i< (8+5))
  73. volume[i-5] = item_string.toInt();
  74. }
  75. }
  76. //check invalid
  77. bool ret_bool = true;
  78. if( compartment_num > 0 && compartment_num <= MAX_COMPARTMENT_NUM){
  79. int volume_sum =0;
  80. for(int i=0; i<compartment_num; i++){
  81. volume_sum += volume[i];
  82. }
  83. if(total_volume != volume_sum){
  84. ret_bool = false;
  85. }
  86. }else{
  87. ret_bool = false;
  88. }
  89. if(true == ret_bool){
  90. //m_standardname = standard_name;
  91. qDebug("setTankinfo: standard_name:[%s]", standard_name.toStdString().c_str());
  92. m_tank.licenseplate_str = licenseplate_str;
  93. qDebug("setTankinfo: licenseplate:[%s]", licenseplate_str.toStdString().c_str());
  94. m_tank.companyname_str = companyname_str;
  95. qDebug("setTankinfo: companyname:[%s]", companyname_str.toStdString().c_str());
  96. m_tank.total_volume = total_volume;
  97. qDebug("setTankinfo: total_volume:[%d]", total_volume);
  98. m_tank.compartment_num = compartment_num;
  99. qDebug("setTankinfo: compartment_num:[%d]", compartment_num);
  100. //Standard standard;
  101. if(g_StandardManager->getStandard(standard_name, m_standard)){
  102. for(int i=0; i<compartment_num; i++){
  103. m_tank.m_comparts[i].m_volume = volume[i];
  104. qDebug("setTankinfo: volume [%d]:[%d]", i, volume[i]);
  105. for(int j=0; j<m_standard.item_count; j++){
  106. if(volume[i] >= m_standard.item[j].oilcompartment_volume){
  107. m_tank.m_comparts[i].m_standarditem = m_standard.item[j];
  108. qDebug("setTankinfo: compart [%d]: volume[%d]", i, m_standard.item[j].oilcompartment_volume);
  109. qDebug("setTankinfo: compart [%d]: sys[%f]", i, m_standard.item[j].system_threshold);
  110. qDebug("setTankinfo: compart [%d]: valve[%f]", i, m_standard.item[j].valve_threshold);
  111. break;
  112. }
  113. }
  114. #if 0
  115. ParaItem pid_para;
  116. g_CalibrationPara->get_pidPara(volume[i], pid_para);
  117. qDebug("setTankinfo: pid max_volume:[%d]", pid_para.max_volume);
  118. qDebug("setTankinfo: pid keep_time:[%d]", pid_para.keep_time);
  119. qDebug("setTankinfo: pid outermax:[%f]", pid_para.outermax);
  120. qDebug("setTankinfo: pid outermin:[%f]", pid_para.outermin);
  121. qDebug("setTankinfo: pid outerkp:[%f]", pid_para.outerkp);
  122. qDebug("setTankinfo: pid outerki:[%f]", pid_para.outerki);
  123. qDebug("setTankinfo: pid outerkd:[%f]", pid_para.outerkd);
  124. qDebug("setTankinfo: pid innermax:[%f]", pid_para.innermax);
  125. qDebug("setTankinfo: pid innermin:[%f]", pid_para.innermin);
  126. qDebug("setTankinfo: pid innerkp:[%f]", pid_para.innerkp);
  127. #endif
  128. }
  129. }else{
  130. QString str = "所选标准不存在!";
  131. emit onNotice(str);
  132. ret_bool = false;
  133. }
  134. }
  135. return ret_bool;
  136. }
  137. bool TestService::tstart(int compartmentid, int direction)
  138. {
  139. if(m_bRunning){
  140. QString str = "当前有任务正在进行中...";
  141. emit onNotice(str);
  142. return false;
  143. }
  144. if(false == m_bRealEnd){
  145. QString str = "当前有任务还未完全结束...";
  146. emit onNotice(str);
  147. return false;
  148. }
  149. m_compartmentid = compartmentid-1;
  150. if(0 == direction)
  151. m_direction = Test_Direction_Positive;
  152. else
  153. m_direction = Test_Direction_Negative;
  154. m_stage = Test_Stage_SysTest;
  155. m_step = Test_Step_Start;
  156. m_pressuremutex.lock();
  157. m_pressurelist.clear(); //用来计算平均压力
  158. m_pressuremutex.unlock();
  159. QMessageBox::StandardButton result = QMessageBox::information(NULL, "提示:", "请对油气回收系统相关部件进行检查", QMessageBox::Ok|QMessageBox::Abort, QMessageBox::Ok);
  160. switch (result)
  161. {
  162. case QMessageBox::Ok:
  163. qDebug()<<"Ok";
  164. m_pTimer_1->start(1*500); // 500 ms
  165. m_bRunning = true;
  166. start();
  167. break;
  168. case QMessageBox::Abort:
  169. qDebug()<<"Abort";
  170. return false;
  171. break;
  172. default:
  173. qDebug()<<"default";
  174. return false;
  175. break;
  176. }
  177. return true;
  178. }
  179. bool TestService::tselfstart(int compartmentid, int direction)
  180. {
  181. if(m_bRunning){
  182. QString str = "当前有任务正在进行中...";
  183. emit onNotice(str);
  184. return false;
  185. }
  186. if(false == m_bRealEnd){
  187. QString str = "当前有任务还未完全结束...";
  188. emit onNotice(str);
  189. return false;
  190. }
  191. m_compartmentid = compartmentid-1;
  192. if(0 == direction)
  193. m_direction = Test_Direction_Positive;
  194. else
  195. m_direction = Test_Direction_Negative;
  196. m_stage = Test_Stage_SysTest;
  197. m_step = Test_Step_Start;
  198. m_pressuremutex.lock();
  199. m_pressurelist.clear(); //用来计算平均压力
  200. m_pressuremutex.unlock();
  201. QMessageBox::StandardButton result = QMessageBox::question(NULL, "提示:", "系统即将自检,请确认所有部件都己接好", QMessageBox::Ok|QMessageBox::Abort, QMessageBox::Ok);
  202. switch (result)
  203. {
  204. case QMessageBox::Ok:
  205. qDebug()<<"Ok";
  206. m_pTimer_1->start(1*500); // 1s
  207. m_bRunning = true;
  208. start();
  209. break;
  210. case QMessageBox::Abort:
  211. qDebug()<<"Abort";
  212. return false;
  213. break;
  214. default:
  215. qDebug()<<"default";
  216. return false;
  217. break;
  218. }
  219. return true;
  220. }
  221. bool TestService::tstop(int compartmentid)
  222. {
  223. if(m_compartmentid != compartmentid-1){
  224. return false;
  225. }
  226. if(m_pTimer_1->isActive())
  227. m_pTimer_1->stop();
  228. //if(m_pTimer_2->isActive())
  229. // m_pTimer_2->stop();
  230. if(m_bRunning){
  231. //stop();
  232. m_bRunning = false;
  233. }
  234. return true;
  235. }
  236. bool TestService::reportpic_Ready(int compartmentid)
  237. {
  238. Compartment& com = m_tank.get_compartment(compartmentid-1);
  239. com.m_testfinished = true;
  240. return true;
  241. }
  242. bool TestService::check_alltest_ok(int with_tips)
  243. {
  244. bool ret_flag = true;
  245. for(int i=0; i< m_tank.compartment_num; i++){
  246. Compartment& com = m_tank.get_compartment(i);
  247. if(com.m_testfinished == false ){
  248. ret_flag = false;
  249. break;
  250. }
  251. }
  252. if((false == ret_flag) && (1 == with_tips)){
  253. QMessageBox::StandardButton result = QMessageBox::question(NULL, "提示:", "有油仓还未进行检测,是否强制生成报告?", QMessageBox::Yes|QMessageBox::No, QMessageBox::No);
  254. switch (result)
  255. {
  256. case QMessageBox::Yes:
  257. ret_flag = true;
  258. break;
  259. case QMessageBox::No:
  260. break;
  261. default:
  262. break;
  263. }
  264. }
  265. return ret_flag;
  266. }
  267. void TestService::receive_reportprogress(QString qstr)
  268. {
  269. qDebug() << "TestService::receive_reportprogress ";
  270. qDebug() << qstr;
  271. emit onGenreportProgress(qstr);
  272. }
  273. bool TestService::genReport(QString word_path, QString pic_dir)
  274. {
  275. bool ret = false;
  276. if(word_path.contains(".doc") || word_path.contains(".pdf") ){
  277. m_report.makeReport(m_tank, word_path, pic_dir);
  278. }else{
  279. QString str = "word_path invalid!";
  280. qDebug() << str;
  281. }
  282. return ret;
  283. }
  284. bool TestService::genReport_Self(QString word_path, QString pic_dir)
  285. {
  286. bool ret = false;
  287. if(word_path.contains(".doc") || word_path.contains(".pdf") ){
  288. m_report.makeReport_Self(m_devinfo, word_path, pic_dir);
  289. }else{
  290. QString str = "word_path invalid!";
  291. qDebug() << str;
  292. }
  293. return ret;
  294. }
  295. bool TestService::genReport_Self2(const QString& jsonStr, QString word_path, QString pic_dir)
  296. {
  297. bool ret = false;
  298. if(word_path.contains(".doc") || word_path.contains(".pdf") ){
  299. qDebug() << "genReport_Self2 jsonStr:" << jsonStr;
  300. m_devinfo2.update_testinfo(jsonStr);
  301. m_report.makeReport_Self(m_devinfo2, word_path, pic_dir);
  302. }else{
  303. QString str = "word_path invalid!";
  304. qDebug() << str;
  305. }
  306. return ret;
  307. }
  308. QJsonObject TestService::get_vrs_items()
  309. {
  310. return m_tank.get_vrs_items();
  311. }
  312. QJsonObject TestService::get_bls_items()
  313. {
  314. return m_tank.get_bls_items();
  315. }
  316. bool TestService::set_item_result(const QString& jsonStr )
  317. {
  318. return m_tank.set_item_result(jsonStr);
  319. }
  320. bool TestService::set_leakage_value(const QString& jsonStr)
  321. {
  322. return m_tank.set_leakage_value(jsonStr);
  323. }
  324. QJsonObject TestService::get_selftest_info()
  325. {
  326. QJsonObject rootObj;
  327. rootObj.insert("target", m_devinfo.m_testinfo.m_target);
  328. rootObj.insert("interval", m_devinfo.m_testinfo.m_interval);
  329. rootObj.insert("threshold", m_devinfo.m_testinfo.m_threshold);
  330. rootObj.insert("begin", m_devinfo.m_testinfo.m_begin);
  331. rootObj.insert("end", m_devinfo.m_testinfo.m_end);
  332. rootObj.insert("delta", m_devinfo.m_testinfo.m_delta);
  333. rootObj.insert("passed", m_devinfo.m_testinfo.m_passed);
  334. return rootObj;
  335. }
  336. void TestService::push_pressurelist(double pressure)
  337. {
  338. m_pressuremutex.lock();
  339. if(m_pressurelist.size() == AVERAGE_PRESSURE_COUNT){
  340. m_pressurelist.removeAt(0);
  341. }
  342. m_pressurelist.append(pressure);
  343. m_pressuremutex.unlock();
  344. }
  345. void TestService::clear_pressurelist()
  346. {
  347. m_pressuremutex.lock();
  348. m_pressurelist.clear(); //用来计算平均压力
  349. m_pressuremutex.unlock();
  350. }
  351. double TestService::calculate_averagepressure()
  352. {
  353. double average = 0.0;
  354. m_pressuremutex.lock();
  355. int n = m_pressurelist.size();
  356. if(n>0){
  357. double sum = 0.0;
  358. for(int i=0; i<n; i++){
  359. sum += m_pressurelist.at(i);
  360. //qDebug("push_pressurelist 333 size[%f]", m_pressurelist.at(i));
  361. }
  362. average = sum/n;
  363. }
  364. m_pressuremutex.unlock();
  365. return average;
  366. }
  367. bool TestService::valve_open(Valve_ID id)
  368. {
  369. if(Valve_ID_All == id){
  370. Valve v(&m_SerialUi3, ALL_VALVE);
  371. return v.Open();
  372. }else{
  373. Valve v(&m_SerialUi3, id);
  374. return v.Open();
  375. }
  376. }
  377. bool TestService::valve_close(Valve_ID id)
  378. {
  379. if(Valve_ID_All == id){
  380. Valve v(&m_SerialUi3, ALL_VALVE);
  381. return v.Close();
  382. }else{
  383. Valve v(&m_SerialUi3, id);
  384. return v.Close();
  385. }
  386. }
  387. QString TestService::read_PressureValue()
  388. {
  389. float pressure = 0.0;
  390. double d_pressure = 0.0;
  391. static int timeout_count =0;
  392. PressureSensor ps(&m_SerialUi4);
  393. if(ps.Read(pressure)){
  394. push_pressurelist(pressure);
  395. timeout_count=0;
  396. }else{
  397. pressure = calculate_averagepressure();
  398. qDebug("Read_PressureValue failed");
  399. timeout_count++;
  400. if(timeout_count >= AVERAGE_PRESSURE_COUNT){
  401. //data is to old, clear
  402. clear_pressurelist();
  403. qDebug("clear_pressurelist ");
  404. }
  405. }
  406. int _ipressure = pressure*1000;
  407. _ipressure = (_ipressure/PRESSURE_DIVISION_VALUE)*PRESSURE_DIVISION_VALUE;
  408. d_pressure = _ipressure/1000.0;
  409. QString pressure_str = QString("%1").arg(d_pressure, 4,'f',2,QLatin1Char('0'));
  410. return pressure_str;
  411. }
  412. bool TestService::pressure_zero()
  413. {
  414. PressureSensor ps(&m_SerialUi4);
  415. return ps.Set_Zero();
  416. }
  417. bool TestService::ballvalve_control(QString position_str)
  418. {
  419. bool ok;
  420. ushort position = position_str.toUShort(&ok, 10);
  421. BallValve ball_v(&m_SerialUi4);
  422. return ball_v.SetPosition(position);
  423. }
  424. QJsonObject TestService::ballvalve_status()
  425. {
  426. unsigned char status;
  427. unsigned short value = 0;
  428. QJsonObject rootObj;
  429. BallValve ball_v(&m_SerialUi4);
  430. if(ball_v.GetSP(status, value)){
  431. switch(status){
  432. case BALLVALVE_STATUS_OPENING:
  433. rootObj.insert("status", "opening");
  434. break;
  435. case BALLVALVE_STATUS_CLOSING:
  436. rootObj.insert("status", "closing");
  437. break;
  438. case BALLVALVE_STATUS_OPENEND:
  439. rootObj.insert("status", "opened");
  440. break;
  441. case BALLVALVE_STATUS_CLOSEEND:
  442. rootObj.insert("status", "closed");
  443. break;
  444. case BALLVALVE_STATUS_BREAK:
  445. rootObj.insert("status", "break");
  446. break;
  447. case BALLVALVE_STATUS_FAULT:
  448. rootObj.insert("status", "fault");
  449. break;
  450. default:
  451. rootObj.insert("status", "unkown");
  452. break;
  453. }
  454. rootObj.insert("position", value);
  455. }else{
  456. rootObj.insert("status", "unkown");
  457. rootObj.insert("position", 0);
  458. }
  459. return rootObj;
  460. }
  461. void TestService::dump_comstatistic()
  462. {
  463. QString filepath = "D:/VaporRecoverySystemTest/comstatistic.txt";
  464. Valve in_v(&m_SerialUi3, VALVE_INTAKE);
  465. in_v.Dump_Statistics(filepath);
  466. PressureSensor ps(&m_SerialUi4);
  467. ps.Dump_Statistics(filepath);
  468. BallValve bv(&m_SerialUi4);
  469. bv.Dump_Statistics(filepath);
  470. }
  471. void TestService::OnTimer1()
  472. {
  473. float pressure = 0.00;
  474. static int timeout_count =0;
  475. static int times_count = 0;
  476. PressureSensor ps(&m_SerialUi4);
  477. if(ps.Read(pressure)){
  478. if(m_direction == Test_Direction_Positive){
  479. //正压检测,不允许出现负值
  480. if(pressure < 0.0){
  481. pressure = 0.0;
  482. }
  483. }else {
  484. // 负压检测,不允许出现正值
  485. if(pressure > 0.0){
  486. pressure = 0.0;
  487. }
  488. }
  489. push_pressurelist(pressure);
  490. timeout_count=0;
  491. }else{
  492. qDebug("Read_PressureValue failed");
  493. pressure = calculate_averagepressure();
  494. timeout_count++;
  495. if(timeout_count >= AVERAGE_PRESSURE_COUNT){
  496. //data is to old, clear
  497. clear_pressurelist();
  498. qDebug("clear_pressurelist ");
  499. }
  500. }
  501. times_count++;
  502. if(0 == times_count%2){
  503. int _ipressure = 0;
  504. double d_pressure = 0.00;
  505. _ipressure = pressure*1000;
  506. _ipressure = (_ipressure/PRESSURE_DIVISION_VALUE)*PRESSURE_DIVISION_VALUE;
  507. d_pressure = _ipressure/1000.0;
  508. QString pressure_str = QString("%1").arg(d_pressure, 4,'f',2,QLatin1Char('0'));
  509. PressureItem item;
  510. //item.m_pressure = pressure_str;
  511. item.m_testDirection = m_direction;
  512. item.m_testStage = m_stage;
  513. item.m_testStep = m_step;
  514. QVariantMap map;
  515. map.clear();
  516. map.insert("pressure", pressure_str);
  517. map.insert("direction", item.m_testDirection);
  518. map.insert("stage", item.m_testStage);
  519. map.insert("step", item.m_testStep);
  520. //QString pressure_str = QString("%1").arg(pressure, 5,'f',3,QLatin1Char('0'));
  521. //m_tank.m_comparts[m_compartmentid].m_currentpressure= pressure_str.toFloat();
  522. emit sigPressure(m_compartmentid+1, map);
  523. }
  524. }
  525. void TestService::OnTimer2()
  526. {
  527. //qDebug("OnTimer2 >>>enter ");
  528. //float pressure;
  529. //Read_pressure(pressure);
  530. //QThread::sleep(5);
  531. //emit Pressure_changed(QDateTime::currentDateTime().toString("yyyy-MM-dd hh:mm:ss"));
  532. //qDebug("OnTimer2 >>>leave ");
  533. }
  534. Ret_Value TestService::PositivePressure_Add(const TestExpect& expect, bool bSavedata)
  535. {
  536. Ret_Value ret_v = Ret_OK;
  537. int interval_time = 500; // ms
  538. int count = 0;
  539. int delay_count = 0;
  540. int exceed_times =0;
  541. QElapsedTimer timer;
  542. timer.start();
  543. double prev_pressure = 0;
  544. double current_pressure = 0;
  545. double current_speed = 0;
  546. unsigned char bvstatus;
  547. unsigned short bvposition;
  548. unsigned short bvoffset = 150;
  549. int keep_times = 60;
  550. int stable_count = 0; //稳压计数
  551. PressureSensor ps(&m_SerialUi4);
  552. BallValve bv(&m_SerialUi4);
  553. bool bv_ready = false;
  554. bv.SetPosition(bvoffset);
  555. PID* pPIDouter = NULL;
  556. PID* pPIDinner = NULL;
  557. double speed_target = 0.0;
  558. QList<float> _pressurelist;
  559. ParaItem pid_para;
  560. g_CalibrationPara->get_pidPara(expect.volume, pid_para);
  561. pPIDouter = new PID(0.5, pid_para.outermax, pid_para.outermin, pid_para.outerkp, 0, 0);
  562. //pPIDouter = new PID(0.5, pid_para.outermax, pid_para.outermin, pid_para.outerkp, pid_para.outerkd, pid_para.outerki);
  563. pPIDinner = new PID(0.5, pid_para.innermax, pid_para.innermin, pid_para.innerkp, pid_para.innerkd, pid_para.innerki,pid_para.innermaxI, pid_para.innerIstep, pid_para.innerDstep);
  564. //将稳压时间转换成计数
  565. keep_times = pid_para.keep_time *(1000/interval_time);
  566. prev_pressure = calculate_averagepressure();
  567. Valve in_v(&m_SerialUi3, VALVE_INTAKE);
  568. bool bOpen_intake = false;
  569. bOpen_intake = in_v.Open();
  570. //
  571. QDateTime datetime = QDateTime::currentDateTime();
  572. QString timestr = datetime.toString("ddHHmmzzz");
  573. QString filepath = "D:/VaporRecoverySystemTest/";
  574. QFile datafile(filepath+timestr+"_PIDdata.csv");
  575. bool datafile_opened = false;
  576. if(true == bSavedata){
  577. datafile_opened = datafile.open(QFile::WriteOnly | QFile::Truncate);
  578. }
  579. //等待压力达到目标值附近
  580. while(m_bRunning){
  581. //等待球阀,到达指定位置 100
  582. if(false == bv_ready){
  583. if(false == bv.GetSP(bvstatus, bvposition)){
  584. qDebug(" PositivePressure_Add, bv.GetSP failed");
  585. }else{
  586. if(BALLVALVE_STATUS_FAULT == bvstatus){
  587. ret_v = Ret_Failed;
  588. break;
  589. }
  590. if((BALLVALVE_STATUS_OPENEND == bvstatus) || (BALLVALVE_STATUS_CLOSEEND == bvstatus) ){
  591. int ps_offset = bvoffset;
  592. int cu_position = bvposition;
  593. if(abs(cu_position-ps_offset) <= 12){
  594. bv_ready=true;
  595. }
  596. }else{
  597. bv.SetPosition(bvoffset);
  598. }
  599. }
  600. //
  601. if(true == bv_ready){
  602. pPIDinner->reset();
  603. }
  604. }else{
  605. current_pressure = calculate_averagepressure();
  606. current_speed = current_pressure - prev_pressure;
  607. prev_pressure = current_pressure;
  608. qDebug(" PositivePressure_Add, current_pressure : %f target: %f", current_pressure, expect.target);
  609. if(current_pressure >= expect.target+0.01){
  610. count = 0;
  611. stable_count++;
  612. if(bOpen_intake){
  613. qDebug(" PositivePressure_Add, in_v.Close ");
  614. if(in_v.Close()){
  615. bOpen_intake = false;
  616. exceed_times++;
  617. }
  618. //bOpen_intake = false;
  619. }else{
  620. // 过充了,压力下不来。 主要是系统自测会出现这种情况
  621. if((1 == exceed_times) && (stable_count > keep_times)){
  622. count = keep_times+10;
  623. }
  624. }
  625. #if 1
  626. if(exceed_times <= 2){
  627. delay_count = 15*(1000/interval_time);
  628. }else if(3 == exceed_times){
  629. delay_count =10*(1000/interval_time);
  630. }else{
  631. delay_count =5*(1000/interval_time);
  632. }
  633. if(expect.volume < 200){ // 电磁阀与球阀之间的气管内有高压气体,对压力影响较大
  634. if(bvposition != 0){
  635. qDebug(" PositivePressure_Add, position : %d", 0);
  636. if(bv.SetPosition(0))
  637. bvposition = 0;
  638. }
  639. }
  640. #endif
  641. }else{
  642. // stable_count 需要从第一次超出目标压力时,开始增加
  643. if(stable_count > 0) stable_count++;
  644. if(current_pressure >= expect.target && current_pressure < expect.target + 0.01){
  645. count++;
  646. //if(((false == bOpen_intake) && count >=10*(1000/interval_time))||((stable_count > keep_times)&&(false == bOpen_intake))){
  647. // count = keep_times+10;
  648. //}
  649. if(false == bOpen_intake){
  650. //在进气阀关闭,压力回落过程中,两种情况触发加压过程退出
  651. // 1. 压力值连续10秒都没有下降0.01Kpa, 说明压力基本稳定了
  652. // 2. 计数超出稳压所需计数
  653. if((count >=10*(1000/interval_time)) || (stable_count > keep_times) ){
  654. count = keep_times+10;
  655. }
  656. }
  657. // 进行阀门密闭性测试,加压过程中。 只要加压到目标压力就退出
  658. if(m_stage == Test_Stage_ValveTest){
  659. count = keep_times+10;
  660. }
  661. }else{
  662. count=0;
  663. if(delay_count > 0){
  664. delay_count--;
  665. }
  666. if(false == bOpen_intake && 0 == delay_count){
  667. bOpen_intake = in_v.Open();
  668. qDebug(" PositivePressure_Add, in_v.Open 222 ");
  669. pPIDinner->reset();
  670. if(bv.SetPosition(bvoffset))
  671. bvposition = bvoffset;
  672. }
  673. }
  674. if(NULL != pPIDouter && NULL != pPIDinner && 0 == delay_count){
  675. speed_target = pPIDouter->calculate(expect.target, current_pressure);
  676. qDebug(" PositivePressure_Add, pPIDinner speed_target:%f, current_speed:%f", speed_target, current_speed);
  677. double inc = pPIDinner->calculate(speed_target, current_speed);
  678. unsigned short position = bvoffset +inc;
  679. //qDebug(" PositivePressure_Add, position : %d", position);
  680. if(bvposition != position){
  681. qDebug(" PositivePressure_Add, position : %d", position);
  682. if(bv.SetPosition(position))
  683. bvposition = position;
  684. }
  685. }else{
  686. if(0 == delay_count){
  687. qDebug(" PositivePressure_Add, NULL = pPIDouter NULL == pPIDinner ");
  688. }
  689. //qDebug(" PositivePressure_Add, NULL = pPIDouter NULL == pPIDinner ");
  690. }
  691. }
  692. }
  693. //判断是否有泄露(球阀开度值打到最大, 连续20秒压力不上升,切达不到目标压力)
  694. if(bvposition == bvoffset+pid_para.innermax){
  695. _pressurelist.push_back(current_pressure);
  696. if(_pressurelist.size() == 20*(1000/interval_time)){
  697. float first = _pressurelist.front();
  698. if((current_pressure - first) <= 0.2){ //20秒了, 压力上升小于0.2,判为漏气,退出
  699. ret_v = Ret_Excepion;
  700. break;
  701. }
  702. _pressurelist.removeFirst();
  703. }
  704. }else{
  705. if(true != _pressurelist.isEmpty()){
  706. _pressurelist.clear();
  707. }
  708. }
  709. if(count >= keep_times){ //about 60s
  710. break;
  711. }
  712. if(true == bSavedata && true == datafile_opened){
  713. QTextStream out(&datafile); // 输入流
  714. QString str1 = QString("%1").arg(expect.target, 8,'f',6,QLatin1Char('0'));
  715. QString str2 = QString("%1").arg(current_pressure, 8,'f',6,QLatin1Char('0'));
  716. //out << QString::number(expect.target) << "," << QString::number(current_pressure) << ",";
  717. out << str1 << "," << str2 << ",";
  718. str1 = QString("%1").arg(speed_target, 8,'f',6,QLatin1Char('0'));
  719. str2 = QString("%1").arg(current_speed, 8,'f',6,QLatin1Char('0'));
  720. //out << QString::number(speed_target) << "," << QString::number(current_speed) << ",";
  721. out << str1 << "," << str2 << ",";
  722. out << QString::number(bvposition) << "\n";
  723. }
  724. QThread::msleep(interval_time);
  725. int remainingtime = expect.timeout*1000 - timer.elapsed();
  726. if(remainingtime <= 0){
  727. qDebug(" add_pressure timeout, Rough valve will colse");
  728. ret_v = Ret_Timeout;
  729. break;
  730. }
  731. }
  732. if(!m_bRunning){
  733. // be stoped
  734. ret_v = Ret_Exit;
  735. }
  736. if(NULL != pPIDouter){
  737. delete pPIDouter;
  738. }
  739. if(NULL != pPIDinner){
  740. delete pPIDinner;
  741. }
  742. in_v.Close();
  743. bv.SetPosition(0);
  744. if(true == bSavedata && true == datafile_opened){
  745. datafile.close();
  746. }
  747. return ret_v;
  748. }
  749. Ret_Value TestService::PositivePressure_Add_V2(const TestExpect& expect)
  750. {
  751. Ret_Value ret_v = Ret_OK;
  752. int count = 0;
  753. QElapsedTimer timer;
  754. timer.start();
  755. double current_pressure = 0;
  756. unsigned char bvstatus;
  757. unsigned short bvposition;
  758. unsigned short bvoffset = 120;
  759. int holding_time = 60;
  760. PressureSensor ps(&m_SerialUi4);
  761. BallValve bv(&m_SerialUi4);
  762. bool bv_ready = false;
  763. bv.SetPosition(bvoffset);
  764. PID* pPID = NULL;
  765. if(expect.volume <= 200){
  766. pPID = new PID(1, 200, 0, 0, 2, 0.4);
  767. holding_time = 60;
  768. }else if(expect.volume <= 4000){
  769. pPID = new PID(1, 500, 0, 0, 5, 0.6);
  770. holding_time = 60;
  771. }else if(expect.volume <= 6000){
  772. pPID = new PID(1, 800, 0, 0, 6, 1.0);
  773. holding_time = 120;
  774. }else if(expect.volume <= 8000){
  775. pPID = new PID(1, 800, 0, 0, 7, 2);
  776. holding_time = 180;
  777. }else{
  778. pPID = new PID(1, 800, 0, 0, 8, 3);
  779. holding_time = 180;
  780. }
  781. Valve in_v(&m_SerialUi3, VALVE_INTAKE);
  782. bool bOpen_intake = false;
  783. //bOpen_intake = in_v.Open();
  784. //等待压力达到目标值附近
  785. while(m_bRunning){
  786. //等待球阀,到达指定位置 100
  787. if(false == bv_ready){
  788. if(false == bv.GetSP(bvstatus, bvposition)){
  789. qDebug(" PositivePressure_Add, bv.GetSP failed");
  790. }else{
  791. if(BALLVALVE_STATUS_FAULT == bvstatus){
  792. ret_v = Ret_Failed;
  793. break;
  794. }
  795. if((BALLVALVE_STATUS_OPENEND == bvstatus) || (BALLVALVE_STATUS_CLOSEEND == bvstatus) ){
  796. int ps_offset = bvoffset;
  797. int cu_position = bvposition;
  798. if(abs(cu_position-ps_offset) < 10){
  799. bv_ready=true;
  800. }
  801. }else{
  802. bv.SetPosition(bvoffset);
  803. }
  804. }
  805. }else{
  806. current_pressure = calculate_averagepressure();
  807. qDebug(" PositivePressure_Add, current_pressure : %f target: %f", current_pressure, expect.target);
  808. if(current_pressure >= expect.target+0.05){
  809. count++;
  810. if(bOpen_intake){
  811. qDebug(" PositivePressure_Add, in_v.Close ");
  812. if(in_v.Close())
  813. bOpen_intake = false;
  814. }
  815. //系统自测及容积较小时,球阀最好归零,否则因球阀不太紧漏气, 进气阀与球阀之间的气体会压向系统,导致压力升高
  816. //当容器过大时, 如果压力超出后又降下来或系统存在漏气,需要重新加压,设置 bvoffset,能让重新加压速度快起来。
  817. if(expect.volume < 100){
  818. if(bv.SetPosition(0))
  819. bvposition = 0;
  820. qDebug(" PositivePressure_Add, bv.SetPosition 0");
  821. }else {
  822. if(bvoffset != bvposition){
  823. if(bv.SetPosition(bvoffset))
  824. bvposition = bvoffset;
  825. qDebug(" PositivePressure_Add, bv.SetPosition bvoffset");
  826. }
  827. }
  828. }else if((current_pressure < expect.target+0.05) & (current_pressure >= expect.target) ){
  829. count++;
  830. }else{
  831. count = 0;
  832. if(false == bOpen_intake){
  833. bOpen_intake = in_v.Open();
  834. qDebug(" PositivePressure_Add, in_v.Open ");
  835. pPID->reset();
  836. }else{
  837. if(NULL != pPID){
  838. double inc = pPID->calculate_v2(expect.target+0.05, current_pressure);
  839. unsigned short position = bvoffset +inc;
  840. //qDebug(" PositivePressure_Add, position : %d", position);
  841. if(bvposition != position){
  842. qDebug(" PositivePressure_Add, position : %d", position);
  843. if(bv.SetPosition(position))
  844. bvposition = position;
  845. }
  846. }else{
  847. qDebug(" PositivePressure_Add, NULL = pPID ");
  848. }
  849. }
  850. }
  851. }
  852. if(count >= holding_time){ //about 60s
  853. break;
  854. }
  855. QThread::msleep(1000);
  856. int remainingtime = expect.timeout*1000 - timer.elapsed();
  857. if(remainingtime <= 0){
  858. qDebug(" add_pressure timeout, Rough valve will colse");
  859. ret_v = Ret_Timeout;
  860. break;
  861. }
  862. }
  863. if(!m_bRunning){
  864. // be stoped
  865. ret_v = Ret_Exit;
  866. }
  867. if(NULL != pPID){
  868. delete pPID;
  869. }
  870. in_v.Close();
  871. bv.SetPosition(0);
  872. return ret_v;
  873. }
  874. //将打开泄压阀,等待压力归零 (小于 0.01Kpa )。
  875. Ret_Value TestService::Pressure_Relief(const TestExpect& expect)
  876. {
  877. Ret_Value ret_v = Ret_OK;
  878. bool bOpen_ventv = false;
  879. Valve vent_v(&m_SerialUi3, VALVE_VENT);
  880. float current_pressure;
  881. float last_pressure = calculate_averagepressure();
  882. QElapsedTimer timer;
  883. timer.start();
  884. int count = 0;
  885. //打开泄压阀
  886. bOpen_ventv = vent_v.Open();
  887. //last_pressure = calculate_averagepressure();
  888. //等待压力清零
  889. while(m_bRunning){
  890. if(false == bOpen_ventv){
  891. bOpen_ventv = vent_v.Open();
  892. }
  893. current_pressure = calculate_averagepressure();
  894. if(fabs(current_pressure - last_pressure) <= 0.01){
  895. qDebug(" Pressure_Relief 111 finished");
  896. count++;
  897. }else{
  898. count=0;
  899. last_pressure = current_pressure;
  900. }
  901. if((count > 20) ||(fabs(current_pressure) < 0.01)){
  902. //关闭泄压阀
  903. vent_v.Close();
  904. break;
  905. }
  906. QThread::msleep(1000);
  907. int remainingtime = expect.timeout*1000 - timer.elapsed();
  908. if(remainingtime < 0){
  909. ret_v = Ret_Timeout;
  910. qDebug("timeout, Pressure_Relief Timeout");
  911. break;
  912. }
  913. }
  914. if(!m_bRunning){
  915. ret_v = Ret_Exit;
  916. }
  917. vent_v.Close();
  918. return ret_v;
  919. }
  920. Ret_Value TestService::Pressure_Relief()
  921. {
  922. Ret_Value ret_v = Ret_OK;
  923. bool bOpen_ventv = false;
  924. Valve vent_v(&m_SerialUi3, VALVE_VENT);
  925. float current_pressure;
  926. QElapsedTimer timer;
  927. timer.start();
  928. int count = 0;
  929. //打开泄压阀
  930. bOpen_ventv = vent_v.Open();
  931. //等待压力清零
  932. while(1){
  933. if(false == bOpen_ventv){
  934. bOpen_ventv = vent_v.Open();
  935. }
  936. if(false == m_pTimer_1->isActive())
  937. OnTimer1();
  938. current_pressure = calculate_averagepressure();
  939. if(current_pressure < 0.2){
  940. qDebug(" Pressure_Relief finished 222");
  941. count++;
  942. }else{
  943. count=0;
  944. }
  945. if(count > 0){
  946. //关闭泄压阀
  947. vent_v.Close();
  948. break;
  949. }
  950. QThread::msleep(1000);
  951. int remainingtime = 60*1000 - timer.elapsed();
  952. if(remainingtime < 0){
  953. ret_v = Ret_Timeout;
  954. qDebug("timeout, Pressure_Relief Timeout");
  955. break;
  956. }
  957. }
  958. vent_v.Close();
  959. qDebug(" Pressure_Relief leave");
  960. return ret_v;
  961. }
  962. Ret_Value TestService::Pressure_Keep(int keeptime, double& start_value, double& end_value)
  963. {
  964. int count = 0;
  965. Ret_Value ret_v = Ret_OK;
  966. start_value = calculate_averagepressure();
  967. int _ipressure = start_value*1000;
  968. _ipressure = (_ipressure/PRESSURE_DIVISION_VALUE)*PRESSURE_DIVISION_VALUE;
  969. start_value = _ipressure/1000.0;
  970. while((count < keeptime) && m_bRunning){
  971. QThread::msleep(1000);
  972. count++;
  973. }
  974. end_value = calculate_averagepressure();
  975. _ipressure = end_value*1000;
  976. _ipressure = (_ipressure/PRESSURE_DIVISION_VALUE)*PRESSURE_DIVISION_VALUE;
  977. end_value = _ipressure/1000.0;
  978. if(!m_bRunning){
  979. // be stoped
  980. ret_v = Ret_Exit;
  981. }
  982. return ret_v;
  983. }
  984. bool TestService::self_checking()
  985. {
  986. //读继电器状态
  987. Valve all_v(&m_SerialUi3, ALL_VALVE);
  988. if(false == all_v.Close()){
  989. return false;
  990. }
  991. //读取球阀状态
  992. BallValve ball_v(&m_SerialUi4);
  993. unsigned char status;
  994. unsigned short value;
  995. if(false == ball_v.GetSP(status, value)){
  996. return false;
  997. }
  998. if(status == BALLVALVE_STATUS_FAULT){
  999. return false;
  1000. }
  1001. ball_v.SetPosition(0);
  1002. PressureSensor ps(&m_SerialUi4);
  1003. float pressure = 0.0;
  1004. if(false == ps.Read(pressure)){
  1005. return false;
  1006. }
  1007. return true;
  1008. }
  1009. bool TestService::test_init()
  1010. {
  1011. //bool ret_v=true;
  1012. Valve all_v(&m_SerialUi3, ALL_VALVE);
  1013. all_v.Close();
  1014. BallValve ball_v(&m_SerialUi4);
  1015. unsigned char status;
  1016. unsigned short value;
  1017. if(ball_v.GetSP(status, value)){
  1018. if(value > 20){
  1019. ball_v.SetPosition(0);
  1020. int wait_time = (1+value/100);
  1021. QThread::msleep(wait_time*1000);
  1022. }
  1023. }else{
  1024. return false;
  1025. }
  1026. return true;
  1027. }
  1028. int TestService::make_messagebox(Test_Direction direction, Test_Step step, Ret_Value ret_v)
  1029. {
  1030. int ret_btn = QMessageBox::NoButton;
  1031. QString notice_str;
  1032. if(Test_Direction_Positive == direction){
  1033. switch(step){
  1034. case Test_Step_AddPressure:
  1035. if(Ret_Timeout == ret_v){
  1036. notice_str = "加压超时, 是否重试?";
  1037. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Retry|QMessageBox::Abort, QMessageBox::Retry);
  1038. }else if(Ret_Failed == ret_v){
  1039. notice_str = "继电器通信失败, 和序终止";
  1040. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Ok, QMessageBox::Ok);
  1041. }else if(Ret_Excepion == ret_v){
  1042. notice_str = "持续性压力不上升,请检测是否有漏气或阀门未关或气源没打开";
  1043. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Ok, QMessageBox::Ok);
  1044. }
  1045. break;
  1046. case Test_Step_AdjustPressure:
  1047. if( Ret_Timeout == ret_v ){
  1048. notice_str = "比例阀调压精调超时, 是否重试?";
  1049. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Retry|QMessageBox::Abort, QMessageBox::Retry);
  1050. //emit onNotice(notice_str);
  1051. }else if(Ret_Failed == ret_v){
  1052. notice_str = "继电器通信失败, 程序终止";
  1053. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Ok, QMessageBox::Ok);
  1054. //emit onNotice(notice_str);
  1055. }
  1056. break;
  1057. default:
  1058. break;
  1059. }
  1060. }else {
  1061. }
  1062. return ret_btn;
  1063. }
  1064. void TestService::run()
  1065. {
  1066. qDebug("doTest >>>enter ");
  1067. QString notice_str;
  1068. //QElapsedTimer q_time;
  1069. int ret_btn = QMessageBox::NoButton;
  1070. TestExpect texpect;
  1071. bool bQuit = false;
  1072. //q_time.start();
  1073. Ret_Value ret_v = Ret_OK;
  1074. m_bRealEnd = false;
  1075. if(m_compartmentid >= 0){
  1076. if(m_direction == Test_Direction_Positive){
  1077. while(m_bRunning && (bQuit == false)){
  1078. switch(m_step){
  1079. case Test_Step_Start:
  1080. {
  1081. m_tank.get_compartment(m_compartmentid).clear_result();
  1082. if(false == self_checking()){
  1083. ret_btn = m_msgbox.information(NULL, "提示:", "通信故障,请终止检测", QMessageBox::Abort, QMessageBox::Abort);
  1084. }else{
  1085. test_init();
  1086. ret_btn = m_msgbox.information(NULL, "提示:", "请确认已经打开旋拧阀", QMessageBox::Ok, QMessageBox::Ok);
  1087. }
  1088. switch (ret_btn)
  1089. {
  1090. case QMessageBox::Ok:
  1091. m_step = Test_Step_AddPressure;
  1092. break;
  1093. case QMessageBox::Abort:
  1094. bQuit = true;
  1095. break;
  1096. default:
  1097. break;
  1098. }
  1099. }
  1100. break;
  1101. case Test_Step_AddPressure:
  1102. {
  1103. if(m_stage == Test_Stage_SysTest){
  1104. emit sigState(m_compartmentid+1, "回收系统测试,开始加压", "");
  1105. }else{
  1106. emit sigState(m_compartmentid+1, "回收阀测试,开始加压", "");
  1107. }
  1108. texpect.target = m_standard.positive_target;
  1109. texpect.volume = m_tank.m_comparts[m_compartmentid].m_volume;
  1110. texpect.timeout = m_tank.m_comparts[m_compartmentid].get_addpressure_timeout();
  1111. ret_v = PositivePressure_Add(texpect);
  1112. if(Ret_OK == ret_v){
  1113. if(m_stage == Test_Stage_SysTest){
  1114. m_step = Test_Step_KeepPressure;
  1115. }else if(m_stage == Test_Stage_ValveTest){
  1116. m_msgbox.information(NULL, "提示:", "即将泄压, 请确认已经关闭油气回收阀。", QMessageBox::Ok, QMessageBox::Ok);
  1117. m_step = Test_Step_reliefPressure;
  1118. }
  1119. }else if(Ret_Exit == ret_v){
  1120. bQuit = true;
  1121. }else{
  1122. ret_btn = make_messagebox(m_direction, m_step, ret_v);
  1123. switch (ret_btn)
  1124. {
  1125. case QMessageBox::Retry:
  1126. qDebug()<<"Retry";
  1127. break;
  1128. case QMessageBox::Abort:
  1129. qDebug()<<"Abort";
  1130. bQuit = true;
  1131. break;
  1132. case QMessageBox::Ok:
  1133. qDebug()<<"OK";
  1134. bQuit = true;
  1135. break;
  1136. default:
  1137. break;
  1138. }
  1139. }
  1140. }
  1141. break;
  1142. case Test_Step_KeepPressure:
  1143. {
  1144. if(m_stage == Test_Stage_SysTest){
  1145. emit sigState(m_compartmentid+1, "油气回收系统测试,开始保压", "");
  1146. }else{
  1147. emit sigState(m_compartmentid+1, "油气回收阀测试,开始保压", "");
  1148. }
  1149. // 检测 5分钟都没超限,就是通过了
  1150. //float delta = 0;
  1151. //float threshold = 0.0;
  1152. //bool bPassed = true;
  1153. // 检测 5分钟都没超限,就是通过了
  1154. double delta = 0.0;
  1155. double start_value = 0.0;
  1156. double end_value = 0.0;
  1157. bool bPassed = true;
  1158. //ret_v = Pressure_Keep2(5*60, start_value, end_value);
  1159. if(m_stage == Test_Stage_SysTest){
  1160. ret_v = Pressure_Keep(m_standard.interval_time, start_value, end_value);
  1161. m_tank.m_comparts[m_compartmentid].m_result.sysstart_pressure = start_value;
  1162. m_tank.m_comparts[m_compartmentid].m_result.sysend_pressure = end_value;
  1163. delta = start_value - end_value;
  1164. m_tank.m_comparts[m_compartmentid].m_result.delta_sys_pressure = delta;
  1165. if(Ret_Exit == ret_v){
  1166. bQuit = true;
  1167. } else {
  1168. if(delta < m_tank.m_comparts[m_compartmentid].m_standarditem.system_threshold){
  1169. bPassed = true;
  1170. m_tank.m_comparts[m_compartmentid].m_result.pass_sys_pressure = true;
  1171. }else{
  1172. bPassed = false;
  1173. m_tank.m_comparts[m_compartmentid].m_result.pass_sys_pressure = false;
  1174. }
  1175. m_tank.m_comparts[m_compartmentid].m_result.sys_test_finished = true;
  1176. QString delta_str = QString("%1").arg(delta, 4,'f',2,QLatin1Char('0'));
  1177. emit sigSystemResult(m_compartmentid+1, delta_str, bPassed);
  1178. emit sigState(m_compartmentid+1, "油气回收系统检测,结束", "");
  1179. ret_btn = QMessageBox::NoButton;
  1180. notice_str = "系统密闭性已经检测完成,是否进行阀门密闭性检测?";
  1181. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Yes|QMessageBox::No, QMessageBox::Yes);
  1182. switch (ret_btn)
  1183. {
  1184. case QMessageBox::Yes:
  1185. m_stage = Test_Stage_ValveTest;
  1186. if(calculate_averagepressure() < m_standard.positive_target){
  1187. m_step = Test_Step_AddPressure;
  1188. }else{
  1189. m_msgbox.information(NULL, "提示:", "即将泄压, 请确认已经关闭油气回收阀", QMessageBox::Ok, QMessageBox::Ok);
  1190. m_step = Test_Step_reliefPressure; //如果压力还在4.5以上, 可以不调压
  1191. }
  1192. break;
  1193. case QMessageBox::No:
  1194. m_step = Test_Step_End;
  1195. break;
  1196. default:
  1197. break;
  1198. }
  1199. }
  1200. }else{
  1201. ret_v = Pressure_Keep(m_standard.interval_time, start_value, end_value);
  1202. float offset = 0;
  1203. //修正 强制初始压力为 0
  1204. if(start_value != 0.0){
  1205. offset = start_value;
  1206. start_value = 0.0;
  1207. end_value -= offset;
  1208. }
  1209. m_tank.m_comparts[m_compartmentid].m_result.valvestart_pressure = start_value;
  1210. m_tank.m_comparts[m_compartmentid].m_result.valveend_pressure = end_value;
  1211. delta = end_value - start_value;
  1212. m_tank.m_comparts[m_compartmentid].m_result.delta_valve_pressure = delta;
  1213. if(Ret_Exit == ret_v){
  1214. bQuit = true;
  1215. }else {
  1216. if(delta <= m_tank.m_comparts[m_compartmentid].m_standarditem.valve_threshold){
  1217. m_tank.m_comparts[m_compartmentid].m_result.pass_valve_pressure = true;
  1218. bPassed = true;
  1219. }else{
  1220. m_tank.m_comparts[m_compartmentid].m_result.pass_valve_pressure = false;
  1221. bPassed = false;
  1222. }
  1223. m_tank.m_comparts[m_compartmentid].m_result.valve_test_finished = true;
  1224. QString delta_str = QString("%1").arg(delta, 4,'f',2,QLatin1Char('0'));
  1225. emit sigValveResult(m_compartmentid+1, delta_str, bPassed);
  1226. emit sigState(m_compartmentid+1, "油气回收阀测试,结束", "");
  1227. m_step = Test_Step_End;
  1228. }
  1229. }
  1230. }
  1231. break;
  1232. case Test_Step_reliefPressure:
  1233. {
  1234. if(m_stage == Test_Stage_SysTest){
  1235. emit sigState(m_compartmentid+1, "油气回收系统测试结束,开始泄压", "");
  1236. }else if(m_stage == Test_Stage_ValveTest){
  1237. emit sigState(m_compartmentid+1, "油气回收阀测试,开始泄压", "");
  1238. }
  1239. texpect.volume = 0;
  1240. texpect.target = 0.0;
  1241. texpect.timeout = 90;//m_tank.m_comparts[m_compartmentid].get_adjust_timeout();
  1242. ret_v = Pressure_Relief(texpect);
  1243. if(Ret_Exit == ret_v){
  1244. bQuit = true;
  1245. }else if(Ret_OK == ret_v){
  1246. m_step = Test_Step_KeepPressure;
  1247. if(m_stage == Test_Stage_ValveTest){
  1248. m_step = Test_Step_KeepPressure;
  1249. }else{
  1250. m_step = Test_Step_End;
  1251. }
  1252. }else{
  1253. ret_btn = QMessageBox::NoButton;
  1254. notice_str = "泄压超时, 是否重试?";
  1255. ret_btn = m_msgbox.information(NULL, "提示:", notice_str, QMessageBox::Retry|QMessageBox::Abort, QMessageBox::Retry);
  1256. switch (ret_btn)
  1257. {
  1258. case QMessageBox::Retry:
  1259. break;
  1260. case QMessageBox::Abort:
  1261. bQuit = true;
  1262. break;
  1263. default:
  1264. break;
  1265. }
  1266. }
  1267. }
  1268. break;
  1269. default:
  1270. break;
  1271. }
  1272. if(Test_Step_End == m_step){
  1273. break;
  1274. }
  1275. }
  1276. if(Test_Step_End == m_step){
  1277. ret_btn = m_msgbox.information(NULL, "提示:", "检测结束,是否要泄压? 此过程可能需要很长时间", QMessageBox::Yes|QMessageBox::No, QMessageBox::Yes);
  1278. }else{
  1279. ret_btn = QMessageBox::NoButton;
  1280. if(true == bQuit){
  1281. ret_btn = m_msgbox.information(NULL, "提示:", "程序即将退出,是否要泄压? 此过程可能需要很长时间", QMessageBox::Yes|QMessageBox::No, QMessageBox::Yes);
  1282. }
  1283. }
  1284. switch (ret_btn)
  1285. {
  1286. case QMessageBox::Yes:
  1287. if(m_step == Test_Step_reliefPressure){
  1288. m_msgbox.information(NULL, "提示:", "即将对罐仓内压力进行泄放,请确认已打开油气回收阀", QMessageBox::Yes, QMessageBox::Yes);
  1289. }
  1290. Pressure_Relief();
  1291. break;
  1292. default:
  1293. break;
  1294. }
  1295. if((true == m_tank.m_comparts[m_compartmentid].m_result.sys_test_finished))
  1296. //&& (true == m_tank.m_comparts[m_compartmentid].m_result.valve_test_finished))
  1297. {
  1298. m_tank.m_comparts[m_compartmentid].m_testfinished = true;
  1299. }
  1300. emit sigStop(m_compartmentid+1);
  1301. }else{
  1302. //负压测试, 暂不支持
  1303. m_stage = Test_Stage_SysTest;
  1304. qDebug(" negative test is not support now ");
  1305. }
  1306. }else{
  1307. //self test
  1308. if(m_direction == Test_Direction_Positive){
  1309. while(m_bRunning && (bQuit == false)){
  1310. switch(m_step){
  1311. case Test_Step_Start:
  1312. {
  1313. emit sigState(m_compartmentid+1, "开始", "");
  1314. if(false == self_checking()){
  1315. ret_btn = m_msgbox.information(NULL, "提示:", "通信故障,请终止程序", QMessageBox::Abort, QMessageBox::Abort);
  1316. }else{
  1317. test_init();
  1318. ret_btn = m_msgbox.information(NULL, "提示:", "请确认已经打开旋拧阀", QMessageBox::Ok, QMessageBox::Ok);
  1319. }
  1320. switch (ret_btn)
  1321. {
  1322. case QMessageBox::Ok:
  1323. qDebug()<<"Yes";
  1324. m_step = Test_Step_AddPressure;
  1325. break;
  1326. case QMessageBox::Abort:
  1327. bQuit = true;
  1328. break;
  1329. }
  1330. }
  1331. break;
  1332. case Test_Step_AddPressure:
  1333. {
  1334. emit sigState(m_compartmentid+1, "加压", "");
  1335. QThread::msleep(2000);
  1336. texpect.volume = 0;
  1337. texpect.target = m_devinfo.m_testinfo.m_target;
  1338. texpect.timeout = 5*60; //5分钟
  1339. ret_v = PositivePressure_Add(texpect);
  1340. if(Ret_Exit == ret_v){
  1341. bQuit = true;
  1342. }else if(Ret_OK == ret_v){
  1343. m_step = Test_Step_KeepPressure;
  1344. }else{
  1345. ret_btn = QMessageBox::NoButton;
  1346. ret_btn = make_messagebox(m_direction, m_step, ret_v);
  1347. switch (ret_btn)
  1348. {
  1349. case QMessageBox::Retry:
  1350. qDebug()<<"Retry";
  1351. break;
  1352. case QMessageBox::Abort:
  1353. qDebug()<<"Abort";
  1354. bQuit = true;
  1355. break;
  1356. case QMessageBox::Ok:
  1357. qDebug()<<"OK";
  1358. bQuit = true;
  1359. break;
  1360. default:
  1361. break;
  1362. }
  1363. }
  1364. }
  1365. break;
  1366. case Test_Step_KeepPressure:
  1367. {
  1368. emit sigState(m_compartmentid+1, "保压", "");
  1369. // 检测 5分钟都没超限,就是通过了
  1370. double delta = 0.0;
  1371. double start_value = 0.0;
  1372. double end_value = 0.0;
  1373. bool bPassed = true;
  1374. ret_v = Pressure_Keep(m_devinfo.m_testinfo.m_interval, start_value, end_value);
  1375. if(Ret_Exit == ret_v){
  1376. bQuit = true;
  1377. }else {
  1378. m_devinfo.m_testinfo.m_begin = start_value;
  1379. m_devinfo.m_testinfo.m_end = end_value;
  1380. delta = start_value - end_value;
  1381. if(delta <= m_devinfo.m_testinfo.m_threshold){
  1382. bPassed = true;
  1383. }else{
  1384. bPassed = false;
  1385. }
  1386. // m_devinfo.m_testinfo.m_delta = delta;
  1387. //int i_delta = delta*1000;
  1388. //i_delta = (i_delta/PRESSURE_DIVISION_VALUE)*PRESSURE_DIVISION_VALUE;
  1389. m_devinfo.m_testinfo.m_delta = delta;
  1390. m_devinfo.m_testinfo.m_passed = (bPassed == true?1:0);
  1391. //QString delta_str = QString("%1").arg(delta, 4,'f',2,QLatin1Char('0'));
  1392. QString info_str = "初始压力:";
  1393. info_str += QString("%1").arg(start_value, 4,'f',2,QLatin1Char('0'));
  1394. info_str += ", 结束压力:";
  1395. info_str += QString("%1").arg(end_value, 4,'f',2,QLatin1Char('0'));
  1396. info_str += ", Deta:";
  1397. info_str += QString("%1").arg(delta, 4,'f',2,QLatin1Char('0'));
  1398. emit sigSelfTestResult(m_compartmentid+1, info_str, bPassed);
  1399. emit sigState(m_compartmentid+1, "结束", "");
  1400. m_step = Test_Step_reliefPressure;
  1401. }
  1402. }
  1403. break;
  1404. case Test_Step_reliefPressure:
  1405. {
  1406. ret_btn = m_msgbox.information(NULL, "提示:", "栓测任务结束,是否要泄压?", QMessageBox::Yes|QMessageBox::No, QMessageBox::Yes);
  1407. m_step = Test_Step_End;
  1408. switch (ret_btn)
  1409. {
  1410. case QMessageBox::Yes:
  1411. qDebug()<<"Yes";
  1412. {
  1413. ret_v = Pressure_Relief();
  1414. if(Ret_Exit == ret_v){
  1415. bQuit = true;
  1416. }
  1417. }
  1418. break;
  1419. default:
  1420. break;
  1421. }
  1422. }
  1423. break;
  1424. default:
  1425. break;
  1426. }
  1427. if(Test_Step_End == m_step){
  1428. break;
  1429. }
  1430. }
  1431. if(Test_Step_End == m_step){
  1432. ret_btn = QMessageBox::NoButton;
  1433. }else{
  1434. ret_btn = QMessageBox::NoButton;
  1435. if(true == bQuit){
  1436. ret_btn = m_msgbox.information(NULL, "提示:", "程序即将退出,是否要泄压?", QMessageBox::Yes|QMessageBox::No, QMessageBox::Yes);
  1437. }
  1438. switch (ret_btn)
  1439. {
  1440. case QMessageBox::Yes:
  1441. Pressure_Relief();
  1442. break;
  1443. default:
  1444. break;
  1445. }
  1446. }
  1447. }else{ //negtive
  1448. }
  1449. }
  1450. if(m_bRunning){
  1451. m_bRunning = false;
  1452. emit sigStop(m_compartmentid+1);
  1453. }
  1454. Valve all_v(&m_SerialUi3, ALL_VALVE);
  1455. all_v.Close();
  1456. //dump_comstatistic();
  1457. m_bRealEnd = true;
  1458. qDebug("doTest >>>leave ");
  1459. }