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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Optimized Conformal FDTD (2, 4) Method for Calculating Reflected and Diffracted Electromagnetic Fields of Perfectly Conducting Wedges
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Optimized Conformal FDTD (2, 4) Method for Calculating Reflected and Diffracted Electromagnetic Fields of Perfectly Conducting Wedges

机译:计算理想导电楔的反射和扩散电磁场的优化共形FDTD(2,4)方法

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摘要

An optimized conformal finite-difference time-domain (FDTD) (2, 4) method is proposed for calculating reflected, diffracted, and total fields of two- and three-dimensional (2- and 3-D) perfectly conducting (PEC) wedges with an electromagnetic pulse (EMP) incidence, where one low-cost coefficient-modification (CM) technique is implemented for effectively reducing its numerical dispersion error. For the 2-D geometries, both reflected and diffracted fields are extracted from the whole calculation domain of FDTD (2, 4), and excellent agreement is achieved between the calculated diffraction coefficient and the analytical one obtained by high frequency approximation method of UTD. While for the 3-D wedges, even with the coarse FDTD cells adopted, such an optimized method still possesses the capability for getting more accurate diffracted fields in comparison with the conventional FDTD.
机译:提出了一种优化的共形有限差分时域(FDTD)(2,4)方法,用于计算二维和二维(2-D和3-D)完美导电(PEC)楔的反射场,衍射场和总场在电磁脉冲(EMP)入射的情况下,采用了一种低成本系数修改(CM)技术来有效降低其数值色散误差。对于二维几何结构,从FDTD的整个计算域中提取反射场和衍射场(2,4),并且所计算的衍射系数与通过UTD的高频近似方法获得的解析系数之间达到了极好的一致性。尽管对于3-D楔形,即使采用了较粗的FDTD单元,与常规FDTD相比,这种优化方法仍具有获得更准确衍射场的能力。

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