Description
Provides access to the properties and methods defining an Antenna object.
Object Model
Public Methods
Public Properties
Example
Compute a link budget for a Transmtiter and Receiver pair, using complex models
[C#] | Copy Code |
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IAgStkObject xmtrAsStkObject = geoTransmitter as IAgStkObject;
IAgStkObject rcvrAsStkObject = facilityReceiver as IAgStkObject;
scenarioRFEnv.PropagationChannel.EnableRainLoss = true;
geoTransmitter.SetModel("Complex Transmitter Model");
IAgTransmitterModelComplex complexTrans = geoTransmitter.Model as IAgTransmitterModelComplex;
complexTrans.Frequency = 3.2;
complexTrans.Power = 50.0;
complexTrans.AntennaControl.SetEmbeddedModel("Helix");
IAgAntennaModelHelix helix = complexTrans.AntennaControl.EmbeddedModel as IAgAntennaModelHelix;
helix.NumberOfTurns = 30.0;
complexTrans.AntennaControl.EmbeddedModelOrientation.AssignAzEl(287.2, 83.4, AgEAzElAboutBoresight.eAzElAboutBoresightRotate);
facilityReceiver.SetModel("Complex Receiver Model");
IAgReceiverModelComplex complexRcvr = facilityReceiver.Model as IAgReceiverModelComplex;
complexRcvr.AntennaControl.ReferenceType = AgEAntennaControlRefType.eAntennaControlRefTypeLink;
complexRcvr.AntennaControl.LinkedAntennaObject = "Antenna/FacilityDish";
complexRcvr.UseRain = true;
complexRcvr.RainOutagePercent = 0.001;
complexRcvr.SystemNoiseTemperature.ComputeType = AgENoiseTempComputeType.eNoiseTempComputeTypeCalculate;
complexRcvr.SystemNoiseTemperature.AntennaNoiseTemperature.ComputeType = AgENoiseTempComputeType.eNoiseTempComputeTypeCalculate;
complexRcvr.SystemNoiseTemperature.AntennaNoiseTemperature.UseRain = true;
facilityDish.Orientation.AssignAzEl(202.6, 41.2, AgEAzElAboutBoresight.eAzElAboutBoresightRotate);
facilityDish.SetModel("Parabolic");
facilityDish.Model.DesignFrequency = 3.2;
IAgAntennaModelParabolic parabolic = facilityDish.Model as IAgAntennaModelParabolic;
parabolic.InputType = AgEAntennaModelInputType.eAntennaModelInputTypeDiameter;
parabolic.Diameter = 5.0;
IAgStkAccess linkAccess = xmtrAsStkObject.GetAccessToObject(rcvrAsStkObject);
linkAccess.ComputeAccess();
IAgIntervalCollection accessIntervals = linkAccess.ComputedAccessIntervalTimes;
Array dataPrvElements = new object[] { "Time", "Xmtr Gain", "Rcvr Gain", "Eb/No", "BER" };
IAgDataPrvTimeVar dp = linkAccess.DataProviders["Link Information"] as IAgDataPrvTimeVar;
for (int index0 = 0; index0 < accessIntervals.Count; ++index0)
{
object startTime = null, stopTime = null;
accessIntervals.GetInterval(index0, out startTime, out stopTime);
IAgDrResult result = dp.ExecElements(startTime, stopTime, 60, ref dataPrvElements);
Array timeValues = result.DataSets[0].GetValues();
Array xmtrGain = result.DataSets[1].GetValues();
Array rcvrGain = result.DataSets[2].GetValues();
Array ebno = result.DataSets[3].GetValues();
Array ber = result.DataSets[4].GetValues();
for (int index1 = 0; index1 < timeValues.GetLength(0); ++index1)
{
string time = (string)timeValues.GetValue(index1);
double xmtrGainVal = (double)xmtrGain.GetValue(index1);
double rcvrGainVal = (double)rcvrGain.GetValue(index1);
double ebnoVal = (double)ebno.GetValue(index1);
double berVal = (double)ber.GetValue(index1);
Console.WriteLine("{0}: Xmtr Gain = {1} Rcvr Gain = {2} Eb/No={3} BER={4}", time, xmtrGainVal, rcvrGainVal, ebnoVal, berVal);
}
Console.WriteLine();
}
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Compute a link budget for a Transmtiter and Receiver pair, using complex models
[Visual Basic .NET] | Copy Code |
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Dim xmtrAsStkObject As IAgStkObject = TryCast(geoTransmitter, IAgStkObject) Dim rcvrAsStkObject As IAgStkObject = TryCast(facilityReceiver, IAgStkObject)
scenarioRFEnv.PropagationChannel.EnableRainLoss = True
geoTransmitter.SetModel("Complex Transmitter Model") Dim complexTrans As IAgTransmitterModelComplex = TryCast(geoTransmitter.Model, IAgTransmitterModelComplex)
complexTrans.Frequency = 3.2
complexTrans.Power = 50
complexTrans.AntennaControl.SetEmbeddedModel("Helix")
Dim helix As IAgAntennaModelHelix = TryCast(complexTrans.AntennaControl.EmbeddedModel, IAgAntennaModelHelix) helix.NumberOfTurns = 30
complexTrans.AntennaControl.EmbeddedModelOrientation.AssignAzEl(287.2, 83.4, AgEAzElAboutBoresight.eAzElAboutBoresightRotate)
facilityReceiver.SetModel("Complex Receiver Model") Dim complexRcvr As IAgReceiverModelComplex = TryCast(facilityReceiver.Model, IAgReceiverModelComplex)
complexRcvr.AntennaControl.ReferenceType = AgEAntennaControlRefType.eAntennaControlRefTypeLink complexRcvr.AntennaControl.LinkedAntennaObject = "Antenna/FacilityDish"
complexRcvr.UseRain = True complexRcvr.RainOutagePercent = 0.001
complexRcvr.SystemNoiseTemperature.ComputeType = AgENoiseTempComputeType.eNoiseTempComputeTypeCalculate
complexRcvr.SystemNoiseTemperature.AntennaNoiseTemperature.ComputeType = AgENoiseTempComputeType.eNoiseTempComputeTypeCalculate complexRcvr.SystemNoiseTemperature.AntennaNoiseTemperature.UseRain = True
facilityDish.Orientation.AssignAzEl(202.6, 41.2, AgEAzElAboutBoresight.eAzElAboutBoresightRotate)
facilityDish.SetModel("Parabolic")
facilityDish.Model.DesignFrequency = 3.2
Dim parabolic As IAgAntennaModelParabolic = TryCast(facilityDish.Model, IAgAntennaModelParabolic) parabolic.InputType = AgEAntennaModelInputType.eAntennaModelInputTypeDiameter parabolic.Diameter = 5
Dim linkAccess As IAgStkAccess = xmtrAsStkObject.GetAccessToObject(rcvrAsStkObject)
linkAccess.ComputeAccess()
Dim accessIntervals As IAgIntervalCollection = linkAccess.ComputedAccessIntervalTimes
Dim dataPrvElements As Array = New Object() {"Time", "Xmtr Gain", "Rcvr Gain", "Eb/No", "BER"} accessIntervals.GetInterval(index0, startTime, stopTime) Dim result As IAgDrResult = dp.ExecElements(startTime, stopTime, 60, dataPrvElements)
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Create a New Antenna Object
[MATLAB] | Copy Code |
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% IAgSTKObject satellite: STK object antenna = satellite.Children.New('eAntenna', 'MyAntenna');
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Modify Antenna Model Type
[MATLAB] | Copy Code |
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% IAgAntenna antenna: Antenna object antenna.SetModel('Dipole'); antennaModel = antenna.Model; antennaModel.DesignFrequency = 15; %GHz antennaModel.Length = 1.5; %m antennaModel.LengthToWavelengthRatio = 45; antennaModel.Efficiency = 85; %Percent
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Modify Antenna Refraction
[MATLAB] | Copy Code |
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% IAgAntenna antenna: Antenna object antenna.UseRefractionInAccess = true; antenna.Refraction = 'eITU_R_P834_4'; refraction = antenna.RefractionModel; refraction.Ceiling = 5000; %m refraction.AtmosAltitude = 10000; %m refraction.KneeBendFactor = 0.2;
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Modify Antenna Orientation and Position
[MATLAB] | Copy Code |
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% IAgAntenna antenna: Antenna object antOrientation = antenna.Orientation; antOrientation.AssignAzEl(0,-90,1) % 1 represents Rotate About Boresight antOrientation.PositionOffset.X = 0.0; %m antOrientation.PositionOffset.Y = 1; %m antOrientation.PositionOffset.Z = 0.25; %m
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Modify Antenna Graphics
[MATLAB] | Copy Code |
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% IAgAntenna antenna: Antenna object contours = antenna.Graphics.ContourGraphics; contours.SetContourType('eAntennaContourTypeGain'); contours.Show = true; for i = -30:5:30 contours.Contour.Levels.Add(i); end antenna.VO.ShowContours = true; antenna.VO.VolumeGraphics.Show = true; antenna.VO.VolumeGraphics.GainOffset = 15; %db antenna.VO.VolumeGraphics.GainScale = 0.005; %km
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Create a New Antenna Object
[Python] | Copy Code |
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# IAgSTKObject satellite: STK object antenna = satellite.Children.New(31, 'MyAntenna') # eAntenna
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Modify Antenna Model Type
[Python] | Copy Code |
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# IAgAntenna antenna: Antenna object antenna.SetModel('Dipole') antennaModel = antenna.Model antennaModel.DesignFrequency = 15 # GHz antennaModel.Length = 1.5 # m antennaModel.LengthToWavelengthRatio = 45 antennaModel.Efficiency = 85 # Percent
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Modify Antenna Refraction
[Python] | Copy Code |
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# IAgAntenna antenna: Antenna object antenna.UseRefractionInAccess = True antenna.Refraction = 3 # eITU_R_P834_4 refraction = antenna.RefractionModel refraction.Ceiling = 5000 # m refraction.AtmosAltitude = 10000 # m refraction.KneeBendFactor = 0.2
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Modify Antenna Orientation and Position
[Python] | Copy Code |
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# IAgAntenna antenna: Antenna object antOrientation = antenna.Orientation antOrientation.AssignAzEl(0,-90,1) # 1 represents Rotate About Boresight antOrientation.PositionOffset.X = 0.0 # m antOrientation.PositionOffset.Y = 1 # m antOrientation.PositionOffset.Z = 0.25 # m
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Modify Antenna Graphics
[Python] | Copy Code |
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# IAgAntenna antenna: Antenna object contours = antenna.Graphics.ContourGraphics contours.SetContourType(0) # eAntennaContourTypeGain contours.Show = True for i in range(-30,30,5): contours.Contour.Levels.Add(i) antenna.VO.ShowContours = True antenna.VO.VolumeGraphics.Show = True
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CoClasses that Implement IAgAntenna