IEEE Transactions on Antennas and Propagation · 1999 · 57 citations · 5 references
Numerical AnalysisEngineeringGaussian OpticsComputational ElectromagneticsTimefrequency AnalysisApproximation TheorySimultaneous ExpansionAssociate HermiteElectrical EngineeringInterpolation SpacePerturbation MethodFourier AnalysisTime-domain ResponseInverse ProblemsNonlinear Signal ProcessingSimultaneous ExtrapolationSignal ProcessingAerospace EngineeringWave ScatteringHigh-frequency Approximation
The time-domain response of a three-dimensional (3-D) conducting object is modeled as an associate hermite (AH) series expansion. Using the isomorphism of the AH function and its Fourier transform, the frequency-domain response can be expressed as a scaled version of the time domain expansion. Using early-time and low-frequency data, we demonstrate simultaneous expansion in both domains. This approach is attractive because expansions with only 10-20 terms give good extrapolation in both time and frequency domains. The computation involved is minimal with this method. In this paper, we have applied this technique to the problem of extrapolating the current on a scatterer being excited by a uniform plane wave. Five scatterers were considered-a plate, disk, sphere, cube, and cone.
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Raviraj Adve, Tapan K. Sarkar, O.M.C. Pereira-Filho et al. · IEEE Transactions on Antennas and Propagation · 1997 · 112 citations
Numerical Analysis, Engineering, Computational Mechanics +16