2002Unpublished venueRequires access

A hybrid physical optics/method of moments numerical technique: theory, investigation and application

Ulrich Jakobus, F.J.C. Meyer

Open publisher page 25 citations

Abstract

A hybrid physical optics/method of moments technique (PO/MoM) has been developed and implemented as described by Jakobus and Landstorfer (see IEEE Transactions on Antennas and Propagation, vol.43, no.2, p.162-9, 1995). This technique holds great computational advantages over conventional MoM techniques for practical engineering applications in the higher frequency range, i.e. when the dimensions of the scattering body are in the range of one wavelength or above. The theory behind the PO/MoM hybrid formulation as well as the applicability and accuracy of the technique are considered.

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What this paper is about

A hybrid physical optics/method of moments technique (PO/MoM) has been developed and implemented as described by Jakobus and Landstorfer (see IEEE Transactions on Antennas and Propagation, vol.43, no.2, p.162-9, 1995). This technique holds great computational advantages over conventional MoM techniques for practical engineering applications in the higher frequency range, i.e. when the dimensions of the scattering body are in the range of one wavelength or above. The theory behind the PO/MoM hybrid formulation as well as the applicability and accuracy of the technique are considered.

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OpenAlex reports 25 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A hybrid physical optics/method of moments technique (PO/MoM) has been developed and implemented as described by Jakobus and Landstorfer (see IEEE Transactions on Antennas and Propagation, vol.43, no.2, p.162-9, 1995). This technique holds great computational advantages over conventional MoM techniques for practical engineering applications in the higher frequency range, i.e. when the dimensions of the scattering body are in the range of one wavelength or above. The theory behind the PO/MoM hybrid formulation as well as the applicability and accuracy of the technique are considered.

Key concepts: Physical optics, Method of moments (probability theory), Range (aeronautics), Computer science, Scattering, Moment (physics), Optics, Electronic engineering

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