PowerTest-PowerMeter.cs 13 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. using System.IO;
  4. using System.Linq;
  5. using System.Text;
  6. using System.Threading;
  7. using System.Threading.Tasks;
  8. using Tps_LQ_Transmitter.com;
  9. namespace Tps_LQ_Transmitter.models
  10. {
  11. class PowerTest_PowerMeter : BaseModel
  12. {
  13. double[,] WTempPowerVal;
  14. double[,] dBTempPowerVal;
  15. string serial = "****";
  16. public PowerTest_PowerMeter()
  17. {
  18. TemplateName = "功率(功率计)测试";
  19. }
  20. /// <summary>
  21. /// 使用功率计(E4418A)进行功率测试
  22. /// </summary>
  23. /// <param name="parameters"></param>
  24. /// <returns></returns>
  25. public override bool Run(TestNode parameters)
  26. {
  27. //获取仪器
  28. DataType PowerPrint = new DataType();//功率(w)
  29. ShowMessage(MsgType.Info, string.Format("第{0}个频点功率(功率计)测试开始", parameters.PointIndex));
  30. var PowerMeter = this.tps.GetDeviceModel("GPIB0::13::INSTR");
  31. if (PowerMeter == null)
  32. {
  33. ShowMessage(MsgType.Error, string.Format("仪器不齐全,{0}/{1}无法运行", parameters.Channel, parameters.Name));
  34. return false;
  35. }
  36. OpenExcel("功率(功率计)", out Spire.Xls.Workbook workbook, out Spire.Xls.Worksheet sheet);
  37. if (sheet == null)
  38. {
  39. ShowMessage(MsgType.Error, "找不到" + tps.TestProject + "模板.xlsx");
  40. return false;
  41. }
  42. // TransmitterSerialPort SerialClient = new TransmitterSerialPort();
  43. ConfigParameter PowerPara = new ConfigParameter();
  44. DataType PowerSumPrint = new DataType();//两路功率总和(w)
  45. DataType PowerFlatnessPrint = new DataType();//两路功率不平度(dB)
  46. // MatchComPara CfigComParas = new MatchComPara();
  47. //CfigComParas = LoadComWorkBook();
  48. //if (CfigComParas == null)
  49. //{
  50. // return false;
  51. //}
  52. // byte FourthByte=0x00;
  53. // string ComPort = CfigComParas.GetComPort("1");
  54. // byte ThridByte = Convert.ToByte(CfigComParas.GetThirdByte("1"),16);
  55. // PowerPara.StepFrequency = 0;
  56. // PowerPara.StartFrequency = parameters.Parameters.GetParameter<double>("起始频率");
  57. // PowerPara.StepFrequency = parameters.Parameters.GetParameter<double>("频率步进");
  58. //// PowerPara.FrequencyNumber = parameters.Parameters.GetParameter<int>("频点数量");
  59. // PowerPara.StopFrequency = parameters.Parameters.GetParameter<double>("终止频率");
  60. // PowerPara.ControlDelay = parameters.Parameters.GetParameter<int>("控制延时");
  61. PowerPara.PowerLower = parameters.Parameters.GetParameter<double>("功率下限");
  62. PowerPara.PowerUpper = parameters.Parameters.GetParameter<double>("功率上限");
  63. PowerPara.PowerSumLower = parameters.Parameters.GetParameter<double>("两路功率总和下限");
  64. PowerPara.PowerSumUpper = parameters.Parameters.GetParameter<double>("两路功率总和上限");
  65. PowerPara.PowerFlatnessUpper = parameters.Parameters.GetParameter<double>("功率不平度上限");
  66. if ( (PowerPara.PowerLower == 0) || (PowerPara.PowerUpper == 0) || (PowerPara.PowerSumLower == 0) || (PowerPara.PowerSumUpper == 0) || (PowerPara.PowerFlatnessUpper == 0))
  67. {
  68. ShowMessage(MsgType.Error, string.Format("配置文件中频率参数为空,{0}/{1}无法运行", parameters.Channel, parameters.Name));
  69. return false;
  70. }
  71. if (tps.Serial != serial)
  72. {
  73. WTempPowerVal = new double[2, parameters.PointTotal];
  74. dBTempPowerVal = new double[2, parameters.PointTotal];
  75. serial = tps.Serial;
  76. for (int initVal1 = 0; initVal1 < 2; initVal1++)
  77. {
  78. for (int initVal2 = 0; initVal2 < parameters.PointTotal; initVal2++)
  79. {
  80. WTempPowerVal[initVal1, initVal2] = -100;
  81. dBTempPowerVal[initVal1, initVal2] = -100;
  82. }
  83. }
  84. }
  85. //if (PowerPara.ControlDelay == 0)
  86. //{
  87. // PowerPara.ControlDelay = 10;
  88. //}
  89. PowerMeter.Write("设置显示单位W", "1");
  90. //if ((PowerPara.FrequencyNumber != 0) && (PowerPara.FrequencyNumber != 1) && (PowerPara.StepFrequency == 0))
  91. //{
  92. // PowerPara.StepFrequency = ((int)(((PowerPara.StopFrequency - PowerPara.StartFrequency) / (PowerPara.FrequencyNumber - 1)) * 100)) / 100;
  93. //}
  94. //if (PowerPara.StepFrequency != 0)
  95. //{
  96. // PowerPara.FrequencyNumber = ((int)((PowerPara.StopFrequency - PowerPara.StartFrequency) / PowerPara.StepFrequency)) + 1;
  97. //}
  98. //double CenterFreq;
  99. // PowerPara.FrequencyNumber = CfigComParas.ComParameters.Count;
  100. //for ( int point = 0; point< PowerPara.FrequencyNumber; point++)
  101. {
  102. //FourthByte = Convert.ToByte(CfigComParas.GetFourthByte((point+1).ToString()), 16);
  103. //CenterFreq = PowerPara.StartFrequency + PowerPara.StepFrequency * FourthByte;
  104. //if (CenterFreq > PowerPara.StopFrequency)
  105. //{
  106. // break;
  107. //}
  108. //SerialClient.DUT_Transmitter_Ctrol(ThridByte, FourthByte);
  109. //Thread.Sleep(PowerPara.ControlDelay);//单位ms
  110. string aa = PowerMeter.Query("Fetch测量功率", "1");
  111. PowerPrint.Test_name = parameters.Channel + "-功率测试(功率计)(W)-" + parameters.CenterFreq.ToString() + "MHz";
  112. PowerPrint.Lower = PowerPara.PowerLower;
  113. PowerPrint.Upper = PowerPara.PowerUpper;
  114. PowerPrint.TestVal = Math.Round(double.Parse(aa), 2);//功率W
  115. if ((PowerPrint.TestVal >= PowerPrint.Lower ) && (PowerPrint.TestVal <= PowerPrint.Upper))
  116. {
  117. PowerPrint.Result = "是";
  118. }
  119. else
  120. {
  121. PowerPrint.Result = "否";
  122. }
  123. tps.TestTableAddCell(PowerPrint.Test_name, PowerPrint.Lower.ToString(), PowerPrint.Upper.ToString(), PowerPrint.TestVal.ToString(), PowerPrint.Result);
  124. if (parameters.Channel == "通道1")
  125. {
  126. WriteExcelData(sheet, parameters.PointIndex, 1, PowerPrint.Test_name, PowerPrint.Lower.ToString(), PowerPrint.Upper.ToString(), PowerPrint.TestVal.ToString(), PowerPrint.Result);
  127. }
  128. else if (parameters.Channel == "通道2")
  129. {
  130. WriteExcelData(sheet, parameters.PointIndex, 2, PowerPrint.Test_name, PowerPrint.Lower.ToString(), PowerPrint.Upper.ToString(), PowerPrint.TestVal.ToString(), PowerPrint.Result);
  131. }
  132. #region 功率不平度及两路功率总和计算
  133. if (parameters.Channel == "通道1")
  134. {
  135. WTempPowerVal[0, parameters.PointIndex] = PowerPrint.TestVal;//W
  136. dBTempPowerVal[0, parameters.PointIndex] = 10* Math.Log10(PowerPrint.TestVal*1000);//dB
  137. }
  138. else
  139. {
  140. WTempPowerVal[1, parameters.PointIndex] = PowerPrint.TestVal;//W
  141. dBTempPowerVal[1, parameters.PointIndex] = 10 * Math.Log10(PowerPrint.TestVal * 1000);//dB
  142. }
  143. if (WTempPowerVal[0, parameters.PointIndex] > -100 && WTempPowerVal[1, parameters.PointIndex] > -100)
  144. {
  145. PowerSumPrint.Test_name = "两路功率总和(功率计)(W)-" + parameters.CenterFreq.ToString() + "MHz";
  146. PowerSumPrint.Lower = PowerPara.PowerSumLower;
  147. PowerSumPrint.Upper = PowerPara.PowerSumUpper;
  148. PowerSumPrint.TestVal = Math.Round(WTempPowerVal[0, parameters.PointIndex] + WTempPowerVal[1, parameters.PointIndex], 2);//W
  149. if ((PowerSumPrint.TestVal >= PowerSumPrint.Lower) && (PowerSumPrint.TestVal <= PowerSumPrint.Upper))
  150. {
  151. PowerSumPrint.Result = "是";
  152. }
  153. else
  154. {
  155. PowerSumPrint.Result = "否";
  156. }
  157. PowerFlatnessPrint.Test_name = "功率不平度(功率计)(dB)-" + parameters.CenterFreq.ToString() + "MHz";
  158. PowerFlatnessPrint.Upper = PowerPara.PowerFlatnessUpper;
  159. PowerFlatnessPrint.TestVal = Math.Round(Math.Abs(dBTempPowerVal[0, parameters.PointIndex] - dBTempPowerVal[1, parameters.PointIndex]), 2);//dB
  160. if ((PowerFlatnessPrint.TestVal >= 0) && (PowerFlatnessPrint.TestVal <= PowerFlatnessPrint.Upper))
  161. {
  162. PowerFlatnessPrint.Result = "是";
  163. }
  164. else
  165. {
  166. PowerFlatnessPrint.Result = "否";
  167. }
  168. tps.TestTableAddCell(PowerSumPrint.Test_name, PowerSumPrint.Lower.ToString(), PowerSumPrint.Upper.ToString(), PowerSumPrint.TestVal.ToString(), PowerSumPrint.Result);
  169. tps.TestTableAddCell(PowerFlatnessPrint.Test_name, "0", PowerFlatnessPrint.Upper.ToString(), PowerFlatnessPrint.TestVal.ToString(), PowerFlatnessPrint.Result);
  170. // WriteExcelData(sheet, parameters.PointIndex, 3, PowerSumPrint.Test_name, PowerSumPrint.Lower.ToString(), "/", PowerSumPrint.TestVal.ToString(), PowerSumPrint.Result);
  171. // WriteExcelData(sheet, parameters.PointIndex, 4, PowerFlatnessPrint.Test_name, PowerFlatnessPrint.Lower.ToString(), "/", PowerFlatnessPrint.TestVal.ToString(), PowerFlatnessPrint.Result);
  172. //tps.SetTestTableCellValue(parameters.PointIndex, 12, PowerSumPrint.Result, PowerSumPrint.TestVal);
  173. //tps.SetTestTableCellValue(parameters.PointIndex, 13, PowerFlatnessPrint.Result,PowerFlatnessPrint.TestVal);
  174. }
  175. #endregion
  176. }
  177. SaveExcel(workbook);
  178. ShowMessage(MsgType.Info, string.Format("第{0}个频点功率(功率计)测试结束", parameters.PointIndex));
  179. return true;
  180. }
  181. public class ConfigParameter
  182. {
  183. /// <summary>
  184. /// 输出损耗
  185. /// </summary>
  186. public double OutLoss { set; get; }
  187. /// <summary>
  188. /// 产品测试的起始频率
  189. /// </summary>
  190. public double StartFrequency { set; get; }
  191. /// <summary>
  192. /// 产品测试的频率步进
  193. /// </summary>
  194. public double StepFrequency { set; get; }
  195. /// <summary>
  196. /// 产品测试的频点数量
  197. /// </summary>
  198. public int FrequencyNumber { set; get; }
  199. /// <summary>
  200. /// 产品的工作频带上限(终止频率)
  201. /// 功能:用于判断从起始频率按一定的步进测试是否超出产品工作频段上限
  202. /// </summary>
  203. public double StopFrequency { set; get; }
  204. /// <summary>
  205. ///设置频谱仪的SPAN
  206. /// </summary>
  207. public string SPAN { set; get; }
  208. /// <summary>
  209. /// 设置参考电平
  210. /// </summary>
  211. public string REF { set; get; }
  212. /// <summary>
  213. /// 设置RBW
  214. /// </summary>
  215. public string RBW { set; get; }
  216. /// <summary>
  217. /// 设置VBW
  218. /// </summary>
  219. public string VBW { set; get; }
  220. /// <summary>
  221. /// 控制延时
  222. /// </summary>
  223. public int ControlDelay { set; get; }
  224. /// <summary>
  225. /// 功率下限
  226. /// </summary>
  227. public double PowerLower { set; get; }
  228. /// <summary>
  229. /// 功率上限
  230. /// </summary>
  231. public double PowerUpper { set; get; }
  232. /// <summary>
  233. /// 频率稳定度上限
  234. /// </summary>
  235. public double FreqAccuracyUpper { set; get; }
  236. /// <summary>
  237. /// 两路功率总和下限
  238. /// </summary>
  239. public double PowerSumLower { set; get; }
  240. /// <summary>
  241. /// 两路功率总和上限
  242. /// </summary>
  243. public double PowerSumUpper { set; get; }
  244. /// <summary>
  245. /// 功率不平度上限
  246. /// </summary>
  247. public double PowerFlatnessUpper { set; get; }
  248. }
  249. }
  250. }