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Numerical Dispersion Optimized Leapfrog ADIFDTD Method and Its Application for Capturing Surface Current Distributions of Complex Objects Illuminated by an Electromagnetic Pulse (EMP)

机译:数值分散优化跨越式跨越式方法及其应用于电磁脉冲(EMP)照射的复杂物体表面电流分布的应用

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A numerical dispersion optimized leapfrog alternating direction implicit finite-difference time-domain (ADIFDTD) method is proposed in this paper, where a set of artificial anisotropic parameters is introduced into its implementation. Under such circumstances, its numerical dispersion can be suppressed efficiently. Some numerical experiments are performed and compared with the original leapfrog ADI-FDTD method, it is shown that our proposed method can achieve much higher computational accuracy. Further, such method is adopted for predicting surface current distributions of some 3-D complex objects illuminated by an electromagnetic pulse (EMP), such as a tank and an aircraft, etc., and good agreement is obtained in comparison with commercial software.
机译:本文提出了一种数值分散优化的跨越交替方向隐式有限差分时间域(ADIFDTD)方法,其中将一组人工各向异性参数引入其实现。在这种情况下,可以有效地抑制其数值分散体。进行一些数值实验并与原始跨越ADI-FDTD方法进行比较,结果表明我们的提出方法可以实现更高的计算精度。此外,采用这种方法用于预测由电磁脉冲(EMP)照射的一些三维复杂物体的表面电流分布,例如罐和飞机等,并且与商业软件相比获得了良好的一致性。

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