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Computational Analysis and Verifications of Characteristic Modes in Real Materials

机译:真实材料特征模式的计算分析与验证

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摘要

Despite its long history, the theory of characteristic modes (TCMs) has only been utilized in antenna design for perfect electric conductors (PECs). This is due to computational problems associated with dielectric and magnetic materials. In particular, the symmetric form of the Poggio–Miller–Chan–Harrington–Wu–Tsai (PMCHWT) surface formulation for the method of moments (MoM) solves for both external (real) and internal (nonreal) resonances of a structure. The external resonances are the characteristic modes (CMs), whereas the internal resonances are not. This paper proposes a new postprocessing method capable of providing unique and real CMs in all physical mediums, including lossy magnetic and dielectric materials. The method removes the internal resonances of a structure by defining a minimum radiated power, which is found through utilizing the physical bounds of the structure. The CMs found using the proposed method are verified through the use of an MoM volume formulation, time domain antenna simulations, and experiments involving multiple antenna prototypes.
机译:尽管其历史悠久,但特征模式(TCM)理论仅在天线设计中用于完美的电导体(PEC)。这是由于与介电和磁性材料相关的计算问题。特别是,矩量法(MoM)的Poggio-Miller-Chan-Harrington-Wu-Tsai(PMCHWT)表面公式的对称形式可解决结构的外部(真实)和内部(非真实)共振。外部共振是特征模式(CM),而内部共振不是特征模式(CM)。本文提出了一种新的后处理方法,该方法能够在所有物理介质(包括有损磁性和介电材料)中提供唯一且真实的CM。该方法通过定义最小辐射功率来消除结构的内部共振,该最小辐射功率是通过利用结构的物理边界找到的。通过使用MoM体积公式,时域天线仿真以及涉及多个天线原型的实验,验证了使用所提出的方法发现的CM。

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