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A hybrid Boundary Element Unstructured Transmission-line (BEUT) method for accurate 2D electromagnetic simulation

机译:用于精确二维电磁仿真的混合边界元非结构化传输线(BEUT)方法

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摘要

Time domain electromagnetic simulation tools have the ability to model transient, wide-band applications, and non-linear problems. The Boundary Element Method (BEM) and the Transmission Line Modeling (TLM) method are both well established numerical techniques for simulating time-varying electromagnetic fields. The former surface based method can accurately describe outwardly radiating fields from piecewise uniform objects and efficiently deals with large domains filled with homogeneous media. The latter volume based method can describe inhomogeneous and non-linear media and has been proven to be unconditionally stable. Furthermore, the Unstructured TLM (UTLM) enables modelling of geometrically complex objects by using triangular meshes which removes staircasing and unnecessary extensions of the simulation domain. The hybridization of BEM and UTLM which is described in this paper is named the Boundary Element Unstructured Transmission-line (BEUT) method. It incorporates the advantages of both methods. The theory and derivation of the 2D BEUT method is described in this paper, along with any relevant implementation details. The method is corroborated by studying its correctness and efficiency compared to the traditional UTLM method when applied to complex problems such as the transmission through a system of Luneburg lenses and the modelling of antenna radomes for use in wireless communications.
机译:时域电磁仿真工具具有对瞬态,宽带应用和非线性问题进行建模的能力。边界元方法(BEM)和传输线建模(TLM)方法都是成熟的数值技术,用于模拟时变电磁场。前一种基于表面的方法可以准确地描述来自分段均匀物体的向外辐射场,并且可以有效地处理充满均质介质的大区域。后一种基于体积的方法可以描述不均匀和非线性的介质,并且已被证明是无条件稳定的。此外,非结构化TLM(UTLM)可以通过使用三角网格来对几何形状复杂的对象进行建模,从而消除了模拟域的阶梯和不必要的扩展。本文描述的BEM与UTLM的混合称为边界元素非结构化传输线(BEUT)方法。它兼有两种方法的优点。本文介绍了二维BEUT方法的原理和推导,以及任何相关的实现细节。与传统的UTLM方法相比,该方法在应用于复杂问题(例如通过Luneburg透镜系统的传输以及用于无线通信的天线罩的建模)时,通过研究其正确性和效率得到了证实。

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