IoRf2.cs 31 KB

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  1. using Aitex.Core.Common.DeviceData;
  2. using Aitex.Core.RT.DataCenter;
  3. using Aitex.Core.RT.Event;
  4. using Aitex.Core.RT.IOCore;
  5. using Aitex.Core.RT.Log;
  6. using Aitex.Core.RT.OperationCenter;
  7. using Aitex.Core.RT.SCCore;
  8. using Aitex.Core.RT.Tolerance;
  9. using Aitex.Core.Util;
  10. using MECF.Framework.Common.Event;
  11. using System;
  12. using System.Collections.Generic;
  13. using System.Linq;
  14. using System.Xml;
  15. namespace Aitex.Core.RT.Device.Unit
  16. {
  17. public class RfTuneItem
  18. {
  19. public float RangeFrom { get; set; }
  20. public float RangeTo { get; set; }
  21. public float Percent { get; set; }
  22. public float Value { get; set; }
  23. }
  24. public class IoRf2 : BaseDevice, IDevice
  25. {
  26. public float PowerRange
  27. {
  28. get
  29. {
  30. return _scPowerRange == null ? 1000 : (float)_scPowerRange.IntValue;
  31. }
  32. }
  33. public float ScaleFrequency
  34. {
  35. get
  36. {
  37. return 1000;
  38. }
  39. }
  40. public string UnitPower
  41. {
  42. get
  43. {
  44. return "W";
  45. }
  46. }
  47. public bool IsRfOn //True:on
  48. {
  49. get
  50. {
  51. if (_diStatus != null)
  52. return _diStatus.Value;
  53. return _doPowerOn.Value;
  54. }
  55. }
  56. public float PowerSetPoint
  57. {
  58. get
  59. {
  60. float tuned = _isFloatAioType ? GetTuneValue(_aoPower.FloatValue, false) : GetTuneValue(_aoPower.Value, false);
  61. float calibrated = CalibrationPower(tuned, false);
  62. if (calibrated < 0)
  63. calibrated = 0;
  64. return calibrated;
  65. }
  66. set
  67. {
  68. float tuned = GetTuneValue(value, true);
  69. float calibrated = CalibrationPower(tuned, true);
  70. if (calibrated < 0)
  71. calibrated = 0;
  72. if (_isFloatAioType)
  73. _aoPower.FloatValue = calibrated;
  74. else
  75. _aoPower.Value = (short)calibrated;
  76. }
  77. }
  78. public float RFForwardPower
  79. {
  80. get
  81. {
  82. if (_aiForwardPower == null)
  83. return 0;
  84. float tuned = _isFloatAioType
  85. ? GetTuneValue(_aiForwardPower.FloatValue, false)
  86. : GetTuneValue(_aiForwardPower.Value, false);
  87. float calibrated = CalibrationPower(tuned, false);
  88. if (calibrated < 0)
  89. calibrated = 0;
  90. return calibrated;
  91. }
  92. }
  93. public float RFReflectPower
  94. {
  95. get
  96. {
  97. return _aiReflectedPower == null ? 0 : (_isFloatAioType ? GetTuneValue(_aiReflectedPower.FloatValue, false) : GetTuneValue(_aiReflectedPower.Value, false));
  98. }
  99. }
  100. public bool RFInterlock
  101. {
  102. get
  103. {
  104. return _diIntlk == null || _diIntlk.Value;
  105. }
  106. }
  107. public bool MainPowerOnSetPoint
  108. {
  109. get
  110. {
  111. if (_doPowerOn != null)
  112. return _doPowerOn.Value;
  113. return false;
  114. }
  115. set
  116. {
  117. if (_doPowerOn != null)
  118. {
  119. if (!_doPowerOn.SetValue(value, out string reason))
  120. {
  121. LOG.Write(reason);
  122. }
  123. }
  124. }
  125. }
  126. private DateTime _powerOnStartTime;
  127. private TimeSpan _powerOnElapsedTime;
  128. public string PowerOnTime
  129. {
  130. get
  131. {
  132. if (IsRfOn)
  133. _powerOnElapsedTime = DateTime.Now - _powerOnStartTime;
  134. return string.Format("{0}:{1}:{2}", ((int)_powerOnElapsedTime.TotalHours).ToString("00"),
  135. _powerOnElapsedTime.Minutes.ToString("00"), (_powerOnElapsedTime.Seconds > 0 ? (_powerOnElapsedTime.Seconds + 1) : 0).ToString("00"));
  136. }
  137. }
  138. private AITRfData DeviceData
  139. {
  140. get
  141. {
  142. AITRfData data = new AITRfData()
  143. {
  144. Module = Module,
  145. DeviceName = Name,
  146. DeviceSchematicId = DeviceID,
  147. DisplayName = Display,
  148. ForwardPower = RFForwardPower,
  149. ReflectPower = RFReflectPower,
  150. IsInterlockOk = RFInterlock,
  151. IsRfOn = IsRfOn,
  152. IsRfAlarm = _diAlarm.Value,
  153. PowerSetPoint = PowerSetPoint,
  154. ScalePower = PowerRange,
  155. UnitPower = UnitPower,
  156. PowerOnElapsedTime = PowerOnTime,
  157. EnablePulsing = false,
  158. EnableVoltageCurrent = false,
  159. IsToleranceError = !AlarmPowerToleranceAlarm.IsAcknowledged || !AlarmReflectPowerToleranceAlarm.IsAcknowledged,
  160. IsToleranceWarning = !AlarmPowerToleranceWarning.IsAcknowledged || !AlarmReflectPowerToleranceWarning.IsAcknowledged,
  161. WorkMode = (int)RfMode.ContinuousWaveMode,
  162. };
  163. return data;
  164. }
  165. }
  166. private DIAccessor _diStatus = null;
  167. private DIAccessor _diIntlk = null;
  168. private DIAccessor _diAlarm;
  169. private DOAccessor _doPowerOn = null;
  170. private DOAccessor _doOn = null;
  171. private AIAccessor _aiReflectedPower = null;
  172. private AIAccessor _aiForwardPower = null;
  173. private AOAccessor _aoPower = null;
  174. //SC
  175. private SCConfigItem _scEnablePowerAlarm;
  176. private SCConfigItem _scPowerAlarmRange = null;
  177. private SCConfigItem _scPowerAlarmTime = null;
  178. private SCConfigItem _scPowerWarningRange = null;
  179. private SCConfigItem _scPowerWarningTime = null;
  180. private SCConfigItem _scEnableReflectPowerAlarm;
  181. private SCConfigItem _scReflectPowerAlarmRange = null;
  182. private SCConfigItem _scReflectPowerAlarmTime = null;
  183. private SCConfigItem _scReflectPowerWarningRange = null;
  184. private SCConfigItem _scReflectPowerWarningTime = null;
  185. private SCConfigItem _scPowerRange;
  186. private SCConfigItem _scCoefficient;
  187. private SCConfigItem _scPowerOnTimeout;
  188. private SCConfigItem _scPowerTuneEnable;
  189. private SCConfigItem _scPowerTuneIsPercent;
  190. private SCConfigItem _scPowerTuneTable;
  191. private SCConfigItem[] _scPowerCalibrationTable;
  192. private SCConfigItem _scPowerCalibrationEnable;
  193. private F_TRIG _trigInterlock = new F_TRIG();
  194. private R_TRIG _trigOn = new R_TRIG();
  195. private R_TRIG _trigError = new R_TRIG();
  196. readonly DeviceTimer _powerOnTimer = new DeviceTimer();
  197. private const string RFHighReflect = "RFHighReflect";
  198. private const string RFHardwareInterlock = "RFHardwareInterlock";
  199. private const string RFOutOfTolerance = "RFOutOfTolerance";
  200. public AlarmEventItem AlarmPowerOnFailed { get; set; }
  201. public AlarmEventItem AlarmPowerToleranceWarning { get; set; }
  202. public AlarmEventItem AlarmPowerToleranceAlarm { get; set; }
  203. public AlarmEventItem AlarmReflectPowerToleranceWarning { get; set; }
  204. public AlarmEventItem AlarmReflectPowerToleranceAlarm { get; set; }
  205. public AlarmEventItem AlarmDeviceAlarm { get; set; }
  206. private ToleranceChecker _checkerPowerWarning;
  207. private ToleranceChecker _checkerPowerAlarm;
  208. private ToleranceChecker _checkerReflectPowerWarning;
  209. private ToleranceChecker _checkerReflectPowerAlarm;
  210. private bool _isFloatAioType = false;
  211. private List<RfTuneItem> _tuneTable;
  212. //calibration
  213. private List<CalbrationParas> _calibrationFormla;
  214. private List<RFCalibrationItem> _rfCalibrationDatas = new List<RFCalibrationItem>();
  215. private const int TenPoints = 10;
  216. public IoRf2(string module, XmlElement node, string ioModule = "")
  217. {
  218. var attrModule = node.GetAttribute("module");
  219. base.Module = string.IsNullOrEmpty(attrModule) ? module : attrModule;
  220. base.Name = node.GetAttribute("id");
  221. base.Display = node.GetAttribute("display");
  222. base.DeviceID = node.GetAttribute("schematicId");
  223. string scBasePath = node.GetAttribute("scBasePath");
  224. if (string.IsNullOrEmpty(scBasePath))
  225. scBasePath = $"{Module}.{Name}";
  226. else
  227. {
  228. scBasePath = scBasePath.Replace("{module}", Module);
  229. }
  230. _isFloatAioType = !string.IsNullOrEmpty(node.GetAttribute("aioType")) && (node.GetAttribute("aioType") == "float");
  231. _diStatus = ParseDiNode("diOn", node, ioModule);
  232. _diIntlk = ParseDiNode("diInterlock", node, ioModule);
  233. _diAlarm = ParseDiNode("diAlarm", node, ioModule);
  234. _doPowerOn = ParseDoNode("doPowerOn", node, ioModule);
  235. _doOn = ParseDoNode("doOn", node, ioModule);
  236. _aiReflectedPower = ParseAiNode("aiReflectPower", node, ioModule);
  237. _aiForwardPower = ParseAiNode("aiForwardPower", node, ioModule);
  238. _aoPower = ParseAoNode("aoPower", node, ioModule);
  239. _scEnablePowerAlarm = ParseScNode("scEnablePowerAlarm", node, ioModule, $"{scBasePath}.{Name}.EnablePowerAlarm");
  240. _scPowerAlarmRange = ParseScNode("scPowerAlarmRange", node, ioModule, $"{scBasePath}.{Name}.PowerAlarmRange");
  241. _scPowerAlarmTime = ParseScNode("scPowerAlarmTime", node, ioModule, $"{scBasePath}.{Name}.PowerAlarmTime");
  242. _scPowerWarningRange = ParseScNode("scPowerWarningRange", node, ioModule, $"{scBasePath}.{Name}.PowerWarningRange");
  243. _scPowerWarningTime = ParseScNode("scPowerWarningTime", node, ioModule, $"{scBasePath}.{Name}.PowerWarningTime");
  244. _scEnableReflectPowerAlarm = ParseScNode("scEnableReflectPowerAlarm", node, ioModule, $"{scBasePath}.{Name}.EnableReflectPowerAlarm");
  245. _scReflectPowerAlarmRange = ParseScNode("scReflectPowerAlarmRange", node, ioModule, $"{scBasePath}.{Name}.ReflectPowerAlarmRange");
  246. _scReflectPowerAlarmTime = ParseScNode("scReflectPowerAlarmTime", node, ioModule, $"{scBasePath}.{Name}.ReflectPowerAlarmTime");
  247. _scReflectPowerWarningRange = ParseScNode("scReflectPowerWarningRange", node, ioModule, $"{scBasePath}.{Name}.ReflectPowerWarningRange");
  248. _scReflectPowerWarningTime = ParseScNode("scReflectPowerWarningTime", node, ioModule, $"{scBasePath}.{Name}.ReflectPowerWarningTime");
  249. _scPowerRange = ParseScNode("scPowerRange", node, ioModule, $"{scBasePath}.{Name}.PowerRange");
  250. _scCoefficient = ParseScNode("scPowerCoefficient", node, ioModule, $"{scBasePath}.{Name}.PowerCoefficient");
  251. _scPowerOnTimeout = ParseScNode("scPowerOnTimeout", node, ioModule, $"{scBasePath}.{Name}.PowerOnTimeout");
  252. _scPowerTuneEnable = SC.GetConfigItem($"{scBasePath}.{Name}.PowerTuneEnable");
  253. _scPowerTuneIsPercent = SC.GetConfigItem($"{scBasePath}.{Name}.PowerTuneIsPercent");
  254. _scPowerTuneTable = SC.GetConfigItem($"{scBasePath}.{Name}.PowerTuneTable");
  255. _scPowerCalibrationTable = new SCConfigItem[10];
  256. for (int i = 0; i < _scPowerCalibrationTable.Length; i++)
  257. {
  258. _scPowerCalibrationTable[i] = SC.GetConfigItem($"{scBasePath}.{Name}.Rate{i + 1}MeterPower");
  259. }
  260. _scPowerCalibrationEnable = SC.GetConfigItem($"{scBasePath}.{Name}.PowerCalibrationEnable");
  261. }
  262. public bool Initialize()
  263. {
  264. UpdateTuneTable();
  265. InitializeCalalibration();
  266. DATA.Subscribe($"{Module}.{Name}.DeviceData", () => DeviceData);
  267. DATA.Subscribe($"{Module}.{Name}.PowerSetPoint", () => PowerSetPoint);
  268. DATA.Subscribe($"{Module}.{Name}.ForwardPower", () => RFForwardPower);
  269. DATA.Subscribe($"{Module}.{Name}.ReflectPower", () => RFReflectPower);
  270. DATA.Subscribe($"{Module}.{Name}.IsRfOn", () => _diStatus.Value);
  271. DATA.Subscribe($"{Module}.{Name}.IsInterlockOK", () => RFInterlock);
  272. DATA.Subscribe($"{Module}.{Name}.RfOnSetPoint", () => _doOn.Value);
  273. DATA.Subscribe($"{Module}.{Name}.IsAlarm", () => _diAlarm.Value);
  274. OP.Subscribe($"{Module}.{Name}.{AITRfOperation.SetPowerOnOff}", SetPowerOnOff);
  275. OP.Subscribe($"{Module}.{Name}.{AITRfOperation.SetPower}", SetPower);
  276. AlarmPowerToleranceWarning = SubscribeAlarm($"{Module}.{Name}.PowerToleranceWarning", "", ResetPowerWarningChecker, EventLevel.Warning);
  277. AlarmPowerToleranceAlarm = SubscribeAlarm($"{Module}.{Name}.PowerToleranceAlarm", "", ResetPowerAlarmChecker);
  278. AlarmReflectPowerToleranceWarning = SubscribeAlarm($"{Module}.{Name}.ReflectPowerToleranceWarning", "", ResetReflectPowerWarningChecker, EventLevel.Warning);
  279. AlarmReflectPowerToleranceAlarm = SubscribeAlarm($"{Module}.{Name}.ReflectPowerToleranceAlarm", "", ResetReflectPowerAlarmChecker);
  280. AlarmPowerOnFailed = SubscribeAlarm($"{Module}.{Name}.PowerOnFailed", $"Failed turn {Display} on", null);
  281. AlarmDeviceAlarm = SubscribeAlarm($"{Module}.{Name}.DeviceAlarm", $"{Display} alarmed", ResetDeviceAlarmChecker);
  282. _checkerPowerWarning = new ToleranceChecker(_scPowerAlarmTime.IntValue);
  283. _checkerPowerAlarm = new ToleranceChecker(_scReflectPowerAlarmTime.IntValue);
  284. _checkerReflectPowerWarning = new ToleranceChecker(_scPowerAlarmTime.IntValue);
  285. _checkerReflectPowerAlarm = new ToleranceChecker(_scReflectPowerAlarmTime.IntValue);
  286. return true;
  287. }
  288. private bool SetPowerOnOff(out string reason, int time, object[] param)
  289. {
  290. return SetPowerOnOff(Convert.ToBoolean((string)param[0]), out reason);
  291. }
  292. public bool SetMainPowerOnOff(bool isOn, out string reason)
  293. {
  294. MainPowerOnSetPoint = isOn;
  295. reason = string.Empty;
  296. return true;
  297. }
  298. private bool SetPower(out string reason, int time, object[] param)
  299. {
  300. reason = string.Empty;
  301. float power = (float)Convert.ToDouble((string)param[0]);
  302. if (power < 0 || power > PowerRange)
  303. {
  304. reason = $"{Name} setpoint value {power} is out of power range, should between 0 and {PowerRange}";
  305. EV.PostWarningLog(Module, reason);
  306. return false;
  307. }
  308. PowerSetPoint = power;
  309. reason = $"{Name} set power to {power}";
  310. EV.PostInfoLog(Module, reason);
  311. return true;
  312. }
  313. public void Stop()
  314. {
  315. string reason = String.Empty;
  316. _aoPower.Value = 0;
  317. }
  318. public void Terminate()
  319. {
  320. }
  321. public void Monitor()
  322. {
  323. try
  324. {
  325. if (_powerOnTimer.IsTimeout() && !_diStatus.Value)
  326. {
  327. AlarmPowerOnFailed.Description =
  328. $"Can not turn {Display} power on in {(int)(_powerOnTimer.GetElapseTime() / 1000)} seconds";
  329. AlarmPowerOnFailed.Set();
  330. SetPowerOnOff(false, out string _);
  331. _powerOnTimer.Stop();
  332. }
  333. _trigOn.CLK = IsRfOn;
  334. if (_trigOn.Q)
  335. {
  336. _powerOnStartTime = DateTime.Now;
  337. _checkerPowerAlarm.Reset(_scPowerAlarmTime.IntValue);
  338. _checkerPowerWarning.Reset(_scPowerWarningTime.IntValue);
  339. _checkerReflectPowerAlarm.Reset(_scReflectPowerAlarmTime.IntValue);
  340. _checkerReflectPowerWarning.Reset(_scReflectPowerWarningTime.IntValue);
  341. }
  342. if (_trigOn.M)
  343. {
  344. _checkerPowerWarning.Monitor(RFForwardPower, PowerSetPoint - _scPowerWarningRange.IntValue, PowerSetPoint + _scPowerWarningRange.IntValue, _scPowerWarningTime.IntValue);
  345. if (_checkerPowerWarning.Trig)
  346. {
  347. AlarmPowerToleranceWarning.Description = $"{Display} Forward power {RFForwardPower} out of range[{(PowerSetPoint - _scPowerWarningRange.IntValue)},{(PowerSetPoint + _scPowerWarningRange.IntValue)}] in {_scPowerWarningTime.IntValue} seconds";
  348. AlarmPowerToleranceWarning.Set();
  349. }
  350. _checkerPowerAlarm.Monitor(RFForwardPower, PowerSetPoint - _scPowerAlarmRange.IntValue, PowerSetPoint + _scPowerAlarmRange.IntValue, _scPowerAlarmTime.IntValue);
  351. if (_checkerPowerAlarm.Trig)
  352. {
  353. AlarmPowerToleranceAlarm.Description = $"{Display} Forward power {RFForwardPower} out of range[{(PowerSetPoint - _scPowerAlarmRange.IntValue)},{(PowerSetPoint + _scPowerAlarmRange.IntValue)}] in {_scPowerAlarmTime.IntValue} seconds";
  354. AlarmPowerToleranceAlarm.Set();
  355. SetPowerOnOff(false, out _);
  356. }
  357. _checkerReflectPowerWarning.Monitor(RFReflectPower, 0, _scReflectPowerWarningRange.IntValue, _scReflectPowerWarningTime.IntValue);
  358. if (_checkerReflectPowerWarning.Trig)
  359. {
  360. AlarmReflectPowerToleranceWarning.Description = $"{Display} reflect power {RFReflectPower} out of range[0,{_scReflectPowerWarningRange.IntValue}] in {_scReflectPowerWarningTime.IntValue} seconds";
  361. AlarmReflectPowerToleranceWarning.Set();
  362. }
  363. _checkerReflectPowerAlarm.Monitor(RFReflectPower, 0, _scReflectPowerAlarmRange.IntValue, _scReflectPowerAlarmTime.IntValue);
  364. if (_checkerReflectPowerAlarm.Trig)
  365. {
  366. AlarmReflectPowerToleranceAlarm.Description = $"{Display} reflect power {RFReflectPower} out of range[0,{_scReflectPowerAlarmRange.IntValue}] in {_scReflectPowerAlarmTime.IntValue} seconds";
  367. AlarmReflectPowerToleranceAlarm.Set();
  368. SetPowerOnOff(false, out _);
  369. }
  370. }
  371. _trigError.CLK = _diAlarm.Value;
  372. if (_trigError.Q)
  373. {
  374. AlarmDeviceAlarm.Set();
  375. SetPowerOnOff(false, out string _);
  376. }
  377. }
  378. catch (Exception ex)
  379. {
  380. LOG.Write(ex);
  381. }
  382. }
  383. public void Reset()
  384. {
  385. _trigInterlock.RST = true;
  386. _trigError.RST = true;
  387. _trigOn.RST = true;
  388. AlarmDeviceAlarm.Reset();
  389. AlarmPowerOnFailed.Reset();
  390. AlarmPowerToleranceAlarm.Reset();
  391. AlarmPowerToleranceWarning.Reset();
  392. AlarmReflectPowerToleranceAlarm.Reset();
  393. AlarmReflectPowerToleranceWarning.Reset();
  394. }
  395. public bool ResetDeviceAlarmChecker()
  396. {
  397. return !_diAlarm.Value;
  398. }
  399. public bool ResetPowerWarningChecker()
  400. {
  401. _checkerPowerWarning.Reset(_scPowerWarningTime.IntValue);
  402. return true;
  403. }
  404. public bool ResetPowerAlarmChecker()
  405. {
  406. _checkerPowerAlarm.Reset(_scPowerAlarmTime.IntValue);
  407. return true;
  408. }
  409. public bool ResetReflectPowerWarningChecker()
  410. {
  411. _checkerReflectPowerWarning.Reset(_scReflectPowerWarningTime.IntValue);
  412. return true;
  413. }
  414. public bool ResetReflectPowerAlarmChecker()
  415. {
  416. _checkerReflectPowerAlarm.Reset(_scReflectPowerAlarmTime.IntValue);
  417. return true;
  418. }
  419. public bool SetPowerOnOff(bool isOn, out string reason)
  420. {
  421. if (!_diIntlk.Value)
  422. {
  423. if (isOn)
  424. {
  425. reason = $"{Name} interlock is not satisfied, can not be on";
  426. EV.PostWarningLog(Module, reason);
  427. return false;
  428. }
  429. }
  430. if (!isOn)
  431. {
  432. PowerSetPoint = 0;
  433. }
  434. bool result = _doOn.SetValue(isOn, out reason);
  435. if (result)
  436. {
  437. reason = $"Set {Name} power " + (isOn ? "On" : "Off");
  438. EV.PostInfoLog(Module, reason);
  439. if (isOn)
  440. _powerOnTimer.Start(Math.Min(Math.Max(2, _scPowerOnTimeout.IntValue), 30) * 1000);
  441. else
  442. _powerOnTimer.Stop();
  443. }
  444. else
  445. {
  446. EV.PostAlarmLog(Module, reason);
  447. }
  448. return result;
  449. }
  450. public void UpdateTuneTable()
  451. {
  452. _tuneTable = new List<RfTuneItem>();
  453. // 100#200#5#-6;
  454. string scValue = _scPowerTuneTable.StringValue;
  455. if (string.IsNullOrEmpty(scValue))
  456. return;
  457. string[] items = scValue.Split(';');
  458. for (int i = 0; i < items.Length; i++)
  459. {
  460. string itemValue = items[i];
  461. if (!string.IsNullOrEmpty(itemValue))
  462. {
  463. string[] pairValue = itemValue.Split('#');
  464. if (pairValue.Length == 4)
  465. {
  466. if (int.TryParse(pairValue[0], out int rangeItem1)
  467. && int.TryParse(pairValue[1], out int rangeItem2)
  468. && int.TryParse(pairValue[2], out int setItem1)
  469. && int.TryParse(pairValue[3], out int setItem2))
  470. {
  471. _tuneTable.Add(new RfTuneItem()
  472. {
  473. Percent = setItem1,
  474. RangeFrom = rangeItem1,
  475. RangeTo = rangeItem2,
  476. Value = setItem2,
  477. });
  478. }
  479. }
  480. }
  481. }
  482. }
  483. public float GetTuneValue(float raw, bool isOutput)
  484. {
  485. if (_scPowerTuneEnable == null || !_scPowerTuneEnable.BoolValue)
  486. return raw;
  487. float tuned = raw;
  488. foreach (var rfTuneItem in _tuneTable)
  489. {
  490. if (raw >= rfTuneItem.RangeFrom && raw <= rfTuneItem.RangeTo)
  491. {
  492. if (isOutput)
  493. {
  494. double percent = rfTuneItem.Percent / 100.0;
  495. tuned = (float)(_scPowerTuneIsPercent.BoolValue ? (raw + raw * percent) : (raw + rfTuneItem.Value));
  496. }
  497. else
  498. {
  499. double percent = rfTuneItem.Percent / 100.0;
  500. percent = 1 + percent;
  501. if (Math.Abs(percent) < 0.01)
  502. percent = 1;
  503. tuned = (float)(_scPowerTuneIsPercent.BoolValue ? (raw / percent) : (raw - rfTuneItem.Value));
  504. }
  505. }
  506. }
  507. if (tuned < 0)
  508. {
  509. tuned = 0;
  510. }
  511. if (tuned > PowerRange)
  512. {
  513. tuned = PowerRange;
  514. }
  515. return tuned;
  516. }
  517. public void InitializeCalalibration()
  518. {
  519. var records = new List<RFCalibrationItem>();
  520. for (int i = 0; i < 10; i++)
  521. {
  522. records.Add(new RFCalibrationItem()
  523. {
  524. Setpoint = (float)(PowerRange / 10 * (i + 1)),
  525. Meter = (float)_scPowerCalibrationTable[i].DoubleValue,
  526. });
  527. }
  528. _calibrationFormla = new List<CalbrationParas>();
  529. for (int i = 0; i < records.Count; i++)
  530. {
  531. if (i + 1 >= records.Count)
  532. break;
  533. var para = Caculate(records[i], records[i + 1]);
  534. _calibrationFormla.Add(para);
  535. }
  536. var para0 = new CalbrationParas()
  537. {
  538. upperLimit = (float)(PowerRange / 10),
  539. lowerLimit = 0,
  540. paraA = _calibrationFormla[0].paraA,
  541. paraB = _calibrationFormla[0].paraB,
  542. };
  543. _calibrationFormla.Add(para0);
  544. _calibrationFormla = _calibrationFormla.OrderBy(x => x.lowerLimit).ToList();
  545. }
  546. public void UpdateCalibrationInfo(List<float> meterList)
  547. {
  548. for (int i = 0; i < meterList.Count; i++)
  549. {
  550. _scPowerCalibrationTable[i].DoubleValue = meterList[i];
  551. }
  552. InitializeCalalibration();
  553. }
  554. private CalbrationParas Caculate(RFCalibrationItem record1, RFCalibrationItem record2)
  555. {
  556. var para = new CalbrationParas();
  557. para.paraA = (record1.Setpoint - record2.Setpoint) / (record1.Meter - record2.Meter);
  558. para.paraB = record1.Setpoint - record1.Meter * para.paraA;
  559. para.upperLimit = record1.Setpoint > record2.Setpoint ? record1.Setpoint : record2.Setpoint;
  560. para.lowerLimit = record1.Setpoint < record2.Setpoint ? record1.Setpoint : record2.Setpoint;
  561. return para;
  562. }
  563. private float CalibrationPower(float power, bool output)
  564. {
  565. //default enable
  566. if (_scPowerCalibrationEnable != null && !_scPowerCalibrationEnable.BoolValue)
  567. return power;
  568. float ret = power;
  569. if (output)
  570. {
  571. if (_calibrationFormla != null && _calibrationFormla.Any())
  572. {
  573. var para = _calibrationFormla.FirstOrDefault(x => x.lowerLimit <= power && x.upperLimit >= power);
  574. ret = ret * para.paraA + para.paraB;
  575. }
  576. return ret;
  577. }
  578. if (_calibrationFormla != null && _calibrationFormla.Any())
  579. {
  580. var para = _calibrationFormla.FirstOrDefault(x => x.lowerLimit <= power && x.upperLimit >= power);
  581. if (para.paraA == 0 && para.paraB == 0 && power > 0)
  582. para = _calibrationFormla[_calibrationFormla.Count - 1];
  583. ret = (ret - para.paraB) / para.paraA;
  584. }
  585. return ret < 0 || ret > float.MaxValue ? 0 : ret;
  586. }
  587. public void SaveRFCalibrationData()
  588. {
  589. if (_rfCalibrationDatas.Count != TenPoints)
  590. {
  591. EV.PostInfoLog(Module, $"Save Rf calibration data failed, for some points have not been calibrated.");
  592. return;
  593. }
  594. _rfCalibrationDatas = _rfCalibrationDatas.OrderBy(x => x.Setpoint).ToList();
  595. //RFCalibrationData data = new RFCalibrationData()
  596. //{
  597. // Module = Module,
  598. // Name = Name,
  599. // Rate1Setpoint = _rfCalibrationDatas[0].Setpoint,
  600. // Rate1Feedback = _rfCalibrationDatas[0].Feedback,
  601. // Rate1Meter = _rfCalibrationDatas[0].Meter,
  602. // Rate2Setpoint = _rfCalibrationDatas[1].Setpoint,
  603. // Rate2Feedback = _rfCalibrationDatas[1].Feedback,
  604. // Rate2Meter = _rfCalibrationDatas[1].Meter,
  605. // Rate3Setpoint = _rfCalibrationDatas[2].Setpoint,
  606. // Rate3Feedback = _rfCalibrationDatas[2].Feedback,
  607. // Rate3Meter = _rfCalibrationDatas[2].Meter,
  608. // Rate4Setpoint = _rfCalibrationDatas[3].Setpoint,
  609. // Rate4Feedback = _rfCalibrationDatas[3].Feedback,
  610. // Rate4Meter = _rfCalibrationDatas[3].Meter,
  611. // Rate5Setpoint = _rfCalibrationDatas[4].Setpoint,
  612. // Rate5Feedback = _rfCalibrationDatas[4].Feedback,
  613. // Rate5Meter = _rfCalibrationDatas[4].Meter,
  614. // Rate6Setpoint = _rfCalibrationDatas[5].Setpoint,
  615. // Rate6Feedback = _rfCalibrationDatas[5].Feedback,
  616. // Rate6Meter = _rfCalibrationDatas[5].Meter,
  617. // Rate7Setpoint = _rfCalibrationDatas[6].Setpoint,
  618. // Rate7Feedback = _rfCalibrationDatas[6].Feedback,
  619. // Rate7Meter = _rfCalibrationDatas[6].Meter,
  620. // Rate8Setpoint = _rfCalibrationDatas[7].Setpoint,
  621. // Rate8Feedback = _rfCalibrationDatas[7].Feedback,
  622. // Rate8Meter = _rfCalibrationDatas[7].Meter,
  623. // Rate9Setpoint = _rfCalibrationDatas[8].Setpoint,
  624. // Rate9Feedback = _rfCalibrationDatas[8].Feedback,
  625. // Rate9Meter = _rfCalibrationDatas[8].Meter,
  626. // Rate10Setpoint = _rfCalibrationDatas[9].Setpoint,
  627. // Rate10Feedback = _rfCalibrationDatas[9].Feedback,
  628. // Rate10Meter = _rfCalibrationDatas[9].Meter,
  629. //};
  630. //RFCalibrationDataRecorder.Add(data);
  631. for (int i = 0; i < _rfCalibrationDatas.Count; i++)
  632. {
  633. SC.SetItemValue($"{Module}.RF.Rate{i + 1}MeterPower", (double)_rfCalibrationDatas[i].Meter);
  634. }
  635. InitializeCalalibration();
  636. EV.PostInfoLog(Module, $"Save RF calibration data successed.");
  637. }
  638. public void SaveRFCalibrationPoint(float setpoint, float meterValue)
  639. {
  640. if (_rfCalibrationDatas.Any(x => x.Setpoint == setpoint))
  641. {
  642. _rfCalibrationDatas.RemoveAll(x => x.Setpoint == setpoint);
  643. }
  644. var data = new RFCalibrationItem()
  645. {
  646. Setpoint = setpoint,
  647. Meter = meterValue,
  648. Feedback = RFForwardPower,
  649. };
  650. _rfCalibrationDatas.Add(data);
  651. }
  652. private struct CalbrationParas
  653. {
  654. //y = a*x + b, x is setpoint
  655. public float paraA;
  656. public float paraB;
  657. public float upperLimit;
  658. public float lowerLimit;
  659. }
  660. private class RFCalibrationItem
  661. {
  662. public float Setpoint { get; set; }
  663. public float Feedback { get; set; }
  664. public float Meter { get; set; }
  665. }
  666. }
  667. }