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Mapped Vector Basis Functions for Electromagnetic Integral Equations

Part of the Synthesis Lectures on Computational Electromagnetics series
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The method-of-moments solution of the electric field and magnetic field integral equations (EFIE and MFIE) is extended to conducting objects modeled with curved cells.

These techniques are important for electromagnetic scattering, antenna, radar signature, and wireless communication applications.

Vector basis functions of the divergence-conforming and curl-conforming types are explained, and specific interpolatory and hierarchical basis functions are reviewed.

Procedures for mapping these basis functions from a reference domain to a curved cell, while preserving the desired continuity properties on curved cells, are discussed in detail.

For illustration, results are presented for examples that employ divergence-conforming basis functions with the EFIE and curl-conforming basis functions with the MFIE.

The intended audience includes electromagnetic engineers with some previous familiarity with numerical techniques.

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Product Details
Morgan & Claypool Publishers
1598290134 / 9781598290134
Ebook
01/12/2006
English
124 pages