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Characteristic Mode Formulations for Penetrable Objects Based on Separation of Dissipation Power and Use of Single Surface Integral Equation

机译:基于分离的耗散功率分离和单表面整体方程的渗透物体的特征模式制剂

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摘要

Novel characteristic mode (CM) formulations for penetrable objects based on explicit separation of dissipation power from the total active power and use of single surface integral equation (SSIE) are proposed. Due to the separation of the dissipation power, the right-hand side of the generalized eigenvalue equation can be set to be exclusively related to the radiated power, which permits the far-field pattern by different CMs to be orthogonal whether the material is lossless or not. The use of SSIE allows both the equivalent electric and magnetic currents to be expressed by a single effective electric or magnetic current, so that the conventional inverse to express the equivalent electric current by the equivalent magnetic current or vice versa is avoided, which is favorable for frequency sweeping simulations. Numerical examples for verifications are provided by comparing with acknowledged results or measured data.
机译:提出了基于从总有功功率和单表面整体方程(SSIE)的显式耗散功率分离的穿透物体的新颖性模式(CM)制剂。由于耗散功率的分离,可以将广义特征值等式的右侧设定为与辐射功率完全相关,这允许通过不同的CMS允许远场模式是正交的材料是无损的不是。 SSIE的使用允许通过单个有效的电流或磁电流表示等效电流,从而避免了传统的表达等效磁电流的等效电流,反之亦然是有利的频率扫描模拟。通过与确认的结果或测量数据进行比较提供用于验证的数值示例。

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