Publication | Open Access
Effective Antenna Modellings for NF-FF Transformations with Spherical Scanning Using the Minimum Number of Data
75
Citations
19
References
2011
Year
EngineeringFar-field MeasurementRadio CommunicationSmart AntennaGeometric ParametersEffective Antenna ModellingsElectromagnetic CompatibilityMinimum NumberNf-ff TransformationsComputational ElectromagneticsPredominant DimensionsAntenna TestingRadio EngineeringAntennaMicrowave AntennaInverse ProblemsRadio PropagationRadarNear-field MeasurementAerospace EngineeringAntenna DesignMultiband Antennas
Two efficient probe-compensated near-field-far-field transformations with spherical scanning for antennas having two dimensions very different from the third one are here developed. They rely on the nonredundant sampling representations of the electromagnetic fields and on the optimal sampling interpolation expansions, and use effective antenna modellings. In particular, an antenna with a predominant dimension is no longer considered as enclosed in a sphere but in a cylinder ended in two half spheres, whereas a surface formed by two circular “bowls” with the same aperture diameter but different lateral bends is adopted to shape an antenna with two predominant dimensions. These modellings are able to fit very well a lot of antennas by properly setting their geometric parameters. It is so possible to remarkably lower the number of data to be acquired, thus significantly reducing the measurement time. Numerical tests assessing the accuracy and the robustness of the techniques are reported.
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