TheoryDtoDfoApi.cs 5.5 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. using System.Linq;
  4. using System.Runtime.InteropServices;
  5. using System.Text;
  6. using System.Threading.Tasks;
  7. using XdCxRhDW.Entity;
  8. namespace XdCxRhDW.Api
  9. {
  10. /// <summary>
  11. /// 理论时频差API
  12. /// </summary>
  13. public static class TheoryDtoDfoApi
  14. {
  15. #region cpp dll Interop
  16. //一星一地测向带参定位
  17. private const string dll = @"AddIns\GDOP误差椭圆\GDOP_Draw_11.dll";
  18. //主接收站位置[3],
  19. //邻接收站位置[3]
  20. //主星历[6](x,y,z,Vx,Vy,Vz)
  21. //邻星历[6](x,y,z,Vx,Vy,Vz)
  22. //上行频(单位,Hz)
  23. //下行频(单位,Hz)
  24. [DllImport(dll, EntryPoint = "theryDfo", CallingConvention = CallingConvention.Cdecl)]//双星理论频差
  25. private extern static double TheoryDfo(double[] target_llh, double[] rec_llh1, double[] rec_llh2, double[] main_sat, double[] neigh_sat, double fu, double fd);
  26. #endregion
  27. public static EnumTargetState TheoryDfo(CgRes cRes, StationRes sRes, PosRes posRes, int YDPZThreshold)
  28. {
  29. return EnumTargetState.Unknown;
  30. /*
  31. //张老板说理论频差如果和参估计算出来的频差差值比较大,就说明目标在运动(多路参估每一路都要比较,有一路判定运动则为运动)
  32. //?具体多少差异需要确定一下
  33. //主邻星本振不一样时该怎么计算
  34. if (cRes.TarFreqUp == null || cRes.TarFreqDown == null || YDPZThreshold <= 0)
  35. return EnumTargetState.Unknown;
  36. double[] target = new double[3] { posRes.PosLon, posRes.PosLat, 0 };
  37. double[] rec = new double[3] { sRes.SatTxLon, sRes.SatTxLat, 0 };
  38. if (cRes.MainVx == null || cRes.MainVy == null || cRes.MainVz == null) return EnumTargetState.Unknown;
  39. double[] xlMain = new double[6] { cRes.MainX.Value, cRes.MainY.Value, cRes.MainZ.Value, cRes.MainVx.Value, cRes.MainVy.Value, cRes.MainVz.Value };
  40. if (posRes.PosResType == EnumPosResType.X2D1 || posRes.PosResType == EnumPosResType.X2Leo)
  41. {
  42. if (cRes.Dfo1 == null || cRes.Adja1Vx == null || cRes.Adja1Vy == null || cRes.Adja1Vz == null) return EnumTargetState.Unknown;
  43. var xlAdja1 = new double[6] { cRes.Adja1X.Value, cRes.Adja1Y.Value, cRes.Adja1Z.Value, cRes.Adja1Vx.Value, cRes.Adja1Vy.Value, cRes.Adja1Vz.Value };
  44. double res = TheoryDfo(target, rec, rec, xlMain, xlAdja1, cRes.TarFreqUp.Value, cRes.TarFreqDown.Value);
  45. var val = Math.Abs(res - cRes.Dfo1.Value);
  46. if (val < YDPZThreshold)
  47. return EnumTargetState.Stationary;
  48. else
  49. return EnumTargetState.Movement;
  50. }
  51. else if (posRes.PosResType == EnumPosResType.X2Dfo)
  52. {
  53. if (cRes.Dfo1 == null) return EnumTargetState.Unknown;
  54. var xlAdja1 = new double[6] { cRes.Adja1X.Value, cRes.Adja1Y.Value, cRes.Adja1Z.Value, cRes.Adja1Vx.Value, cRes.Adja1Vy.Value, cRes.Adja1Vz.Value };
  55. if (cRes.Adja1Vx == null || cRes.Adja1Vy == null || cRes.Adja1Vz == null) return EnumTargetState.Unknown;
  56. double res = TheoryDfo(target, rec, rec, xlMain, xlAdja1, cRes.TarFreqUp.Value, cRes.TarFreqDown.Value);
  57. var val = Math.Abs(res - cRes.Dfo1.Value);
  58. if (val < YDPZThreshold)
  59. return EnumTargetState.Stationary;
  60. else
  61. return EnumTargetState.Movement;
  62. }
  63. else if (posRes.PosResType == EnumPosResType.X1Leo)
  64. {
  65. //星地不知道接口是否支持
  66. return EnumTargetState.Unknown;
  67. }
  68. else if (posRes.PosResType == EnumPosResType.X3TwoDto || posRes.PosResType == EnumPosResType.X3Leo)
  69. {
  70. if (cRes.Dfo1 == null && cRes.Dfo2 == null) return EnumTargetState.Unknown;
  71. if (cRes.Adja1Vx == null || cRes.Adja1Vy == null || cRes.Adja1Vz == null) return EnumTargetState.Unknown;
  72. if (cRes.Dfo1 != null)
  73. {
  74. var xlAdja1 = new double[6] { cRes.Adja1X.Value, cRes.Adja1Y.Value, cRes.Adja1Z.Value, cRes.Adja1Vx.Value, cRes.Adja1Vy.Value, cRes.Adja1Vz.Value };
  75. if (cRes.Adja1Vx == null || cRes.Adja1Vy == null || cRes.Adja1Vz == null) return EnumTargetState.Unknown;
  76. double res = TheoryDfo(target, rec, rec, xlMain, xlAdja1, cRes.TarFreqUp.Value, cRes.TarFreqDown.Value);
  77. var val = Math.Abs(res - cRes.Dfo1.Value);
  78. if (val >= YDPZThreshold)
  79. return EnumTargetState.Movement;
  80. }
  81. if (cRes.Dfo2 != null)
  82. {
  83. var xlAdja2 = new double[6] { cRes.Adja2X.Value, cRes.Adja2Y.Value, cRes.Adja2Z.Value, cRes.Adja2Vx.Value, cRes.Adja2Vy.Value, cRes.Adja2Vz.Value };
  84. if (cRes.Adja2Vx == null || cRes.Adja2Vy == null || cRes.Adja2Vz == null) return EnumTargetState.Unknown;
  85. double res = TheoryDfo(target, rec, rec, xlMain, xlAdja2, cRes.TarFreqUp.Value, cRes.TarFreqDown.Value);
  86. var val = Math.Abs(res - cRes.Dfo2.Value);
  87. if (val >= YDPZThreshold)
  88. return EnumTargetState.Movement;
  89. }
  90. return EnumTargetState.Stationary;
  91. }
  92. else
  93. {
  94. return EnumTargetState.Unknown;
  95. } */
  96. }
  97. }
  98. }