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STEMO, a Stabilized Toolkit for Embedded Dielectric Structures with MOment Methods

机译:STEMO,一种采用矩量法的嵌入式电介质结构稳定工具套件

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摘要

The low frequency instability in the method of moments becomes important when objects smaller than the wavelength have to be computed. For a PEC (Perfectly Electrically Conducting) body, this leads to uncoupling or splitting the integral equations by using first the MFIE (Magnetic Field Integral Equation) for the currents and consecutively the EFIE (Electric Field Integral Equation) for the charges. For dielectric bodies, the charge is reintroduced. The contribution of this paper consists in implementing an efficient technique, reducing the computational complexity, in time but mostly in memory. A toolkit has been developed to perform accurate computations. The technique has been verified quantitatively, checking the charge and current distributions against analytic solutions where existing, as well as qualitatively against the boundary conditions for the scattered field. Many examples will be given, both in frequency and in time domain (obtained by inverting frequency domain calculations including the DC (Direct Current) component).
机译:当必须计算小于波长的物体时,矩量法中的低频不稳定性变得很重要。对于PEC(完全导电)物体,这会导致通过首先使用电流的MFIE(磁场积分方程),然后依次使用电荷的EFIE(电场积分方程)来解耦或分解积分方程。对于介电体,重新引入电荷。本文的贡献在于实现了一种有效的技术,可以及时但主要是在内存中降低计算复杂性。已经开发了一种工具包来执行准确的计算。该技术已经过定量验证,根据存在的解析解检查电荷和电流分布,并针对散射场的边界条件进行定性检查。将给出频域和时域方面的许多示例(通过反转频域计算(包括DC(直流)分量)获得)。

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