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Efficient techniques for electromagnetic modeling in multilayered media.

机译:多层介质中电磁建模的有效技术。

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摘要

The Method of Moments (MoM) has been widely used for the full-wave electromagnetic analysis of planar multilayered media. However, the MoM is a computationally intensive process and requires considerable computer resources to perform the analysis. Thus, several efficient numerical techniques both in the spectral domain and spatial domain are investigated and further developed in this research.;Two fitting procedures, i.e., the Rational Function Fitting Method (RFFM) and the Discrete Complex Image Method (DCIM), are investigated and developed in order to obtain closed-form spatial-domain Green's functions (GFs). Because the subtraction of the surface-wave pole contribution plays an important role for the accurate estimation of the spatial-domain GFs via DCIM, an efficient and accurate surface-wave pole location method is developed to find all the surface-wave poles for general multilayered media. The RFFM can be realized through either the Total Least Square Algorithm (TLSA) or the Vector Fitting (VECTFIT) method. Both the RFFM using VECTFIT and DCIM are detailed in step by step procedures. An efficient and low cost algorithm combining the advantages of DCIM and TLSA is also developed to evaluate the closed-form Green's functions for general multilayered media.;A prototype version of the Full-Wave Layered-Interconnect Simulator (UA-FWLIS) was developed by analytically calculating the MoM reaction elements via Cauchy's residue theorem and the Complementary Incomplete Lipschitz-Hankel Integrals in stripline structures. After applying RFFM via VECTFIT to the G-functions, which are directly related to the spectral-domain GFs for microstrip structures, a procedure that is similar to the one used in the previously developed UA-FWLIS for stripline structures can be applied to calculate the MoM reaction elements analytically when the two reaction cells are close (<0.1 λ 0) in the spectral domain via the Electrical Field Integral Equation (EFIE). When the two reaction cells are far enough away (> 0.1 λ 0), a simple expression for the reaction element can be obtained in the spatial domain via the Mixed Potential Integral Equation (MPIE) by a summation of a few complex image terms for the evaluation of the vector and scalar GFs. An efficient hybrid spectral-spatial method is thus developed to extend UA-FWLIS to microstrip structures. The method is validated by several numerical examples.
机译:矩量法(MoM)已广泛用于平面多层介质的全波电磁分析。但是,MoM是一个计算密集型过程,需要大量计算机资源才能执行分析。因此,研究了频谱域和空间域中的几种有效数值技术,并在此研究中进一步发展。;研究了两种拟合程序,即有理函数拟合方法(RFFM)和离散复杂图像方法(DCIM)。为了获得封闭形式的空间域格林函数(GF)而进行了开发。由于表面波极贡献的减法对于通过DCIM准确估计空间域GFs起着重要作用,因此开发了一种有效且准确的表面波极定位方法,以找到一般多层的所有表面波极。媒体。可以通过总最小二乘算法(TLSA)或矢量拟合(VECTFIT)方法来实现RFFM。逐步介绍了使用VECTFIT和DCIM的RFFM。还开发了一种结合了DCIM和TLSA优点的高效低成本算法,以评估通用多层介质的闭式格林函数。;由以下人员开发的全波分层互连模拟器(UA-FWLIS)的原型版本:通过柯西残差定理和带状线结构中的互补不完全Lipschitz-Hankel积分分析计算MoM反应元素。在通过VECTFIT将RFFM应用于与微带结构的光谱域GF直接相关的G函数之后,可以采用与先前开发的带状线结构UA-FWLIS中所使用的过程类似的过程来计算通过电场积分方程(EFIE)分析两个反应池在光谱域中接近(<0.1λ 0 )时的MoM反应元素。当两个反应池相距足够远(> 0.1λ 0 )时,可以通过混合势积分方程(MPIE)在空间域中获得反应元素的简单表达式:一些复杂的图像术语,用于评估矢量和标量GF。因此,开发了一种有效的混合光谱空间方法,以将UA-FWLIS扩展到微带结构。通过几个数值例子验证了该方法。

著录项

  • 作者

    Ding, Jun.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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