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A fast full-wave analysis of scattering and radiation from large finite arrays of microstrip antennas
115
Citations
20
References
1998
Year
RadarNumerical AnalysisArray ProcessingEngineeringAntennaWave ScatteringMicrowave AntennaLarge Finite ArraysFinite ArraysSmart AntennaHigh-frequency ApproximationFast Full-wave AnalysisComputational ElectromagneticsBiconjugate GradientAntenna ArraysMicrostrip AntennasFast Fourier TransformElectromagnetic Compatibility
A fast full-wave analysis technique that can be used to analyze the scattering and radiation from large finite arrays of microstrip antennas is presented. The technique discretizes the mixed potential integral equation (MPIE) in the spatial domain by means of a full-wave discrete complex image method. The del operators on the Green's functions are transferred from the singular kernel to the expansion and testing functions. The resultant system of equations is solved using the biconjugate gradient (BCG) method in which the matrix-vector product is evaluated efficiently using the fast Fourier transform (FFT). This results in an efficient and accurate computation of the scattering and radiation from finite arrays of microstrip antennas. Several numerical results are presented, demonstrating the accuracy, efficiency, and capability of this technique.
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1950 | 4.3K | |
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1984 | 442 | |
1984 | 389 | |
1986 | 320 | |
1988 | 274 | |
1984 | 244 | |
1986 | 151 | |
1985 | 121 | |
1972 | 88 |
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