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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Volume PEEC Formulation Based on the Cell Method for Electromagnetic Problems From Low to High Frequency
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A Volume PEEC Formulation Based on the Cell Method for Electromagnetic Problems From Low to High Frequency

机译:基于单元法的从低频到高频电磁问题的体积PEEC公式

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摘要

A new and general partial element equivalent circuit (PEEC) formulation based on electric and magnetic vector potentials and the cell method is presented. The purpose of this paper is manifold. First, a comprehensive review of well-established PEEC method is given and the state-of-the-art of the method with focus on the inclusion of magnetic media in the formulation is discussed. Then, a new and general formulation of the PEEC method based on integral equations is proposed. The formulation is valid for conductive, dielectric, and magnetic media and its advantages with respect to the state-of-the-art PEEC formulations are underlined. Unlike the existing PEEC methods, this novel formulation, thanks to the reinterpretation of PEEC in the context of integral equation methods, allows for maintaining a circuit interpretation for both electric and magnetic media. Thus, a standard Spice-like solver can in principle be adopted for the solution of electromagnetic (EM) problems also when magnetic media are involved. The imposition of the divergence condition for the current density vectors is guaranteed and also the case of inhomogeneous and anisotropic media is considered. A thorough discussion on the suitability of the method for the study of both low- and high-frequency EM problems is also presented. Finally, the case study of a near-field communication antenna is considered as an example of the applicability of the formulation to problems of industrial interest. Comparisons with commercial softwares, measurements, and the state-of-the-art PEEC method are given in order to demonstrate the accuracy and the advantages of the proposed PEEC formulation.
机译:提出了一种基于电,磁矢量势和单元法的新型通用部分元等效电路(PEEC)公式。本文的目的是多方面的。首先,对完善的PEEC方法进行了全面回顾,并讨论了该方法的最新发展,重点是在配方中包含磁介质。然后,提出了一种基于积分方程的PEEC方法的新的通用公式。该配方适用于导电,电介质和磁性介质,并且强调了其相对于最新PEEC配方的优势。与现有的PEEC方法不同,得益于在积分方程方法中对PEEC的重新解释,这种新颖的表述可以保持对电介质和磁介质的电路解释。因此,当涉及磁性介质时,原则上也可以采用标准的类似Spice的求解器来解决电磁(EM)问题。保证了对电流密度矢量施加发散条件,并且考虑了非均匀和各向异性介质的情况。还将彻底讨论该方法对研究低频和高频电磁问题的适用性。最后,近场通信天线的案例研究被认为是该制剂对工业利益问题的适用性的一个例子。给出了与商业软件,测量和最先进的PEEC方法的比较,以证明所提出的PEEC配方的准确性和优势。

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