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Optimizing the Compact-FDTD algorithm for electrically large waveguiding structures
DOI:10.2528/PIER07060703.png)
Abstract
En 中文
This work investigates the unique numerical dispersion behavior of the Compact-FDTD method for waveguide analysis, especially when the waveguide dimensions are much larger than the operating wavelength as in high-frequency EMC analysis or radio-wave propagation in tunnels. The divergence of this dispersion behavior from the standard FDTD algorithm is quantified and a major source of dispersion error is isolated and effectively eliminated. Optimized modeling parameters in terms of appropriate spatial and temporal resolutions are generated for computationally efficient and error-free numerical simulations of electrically large waveguiding structures.
Keywords:
FINITE-ELEMENT-METHOD
GUIDES
DISPERSION
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