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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >New Single-Source Surface Integral Equation for Magneto-Quasi-Static Characterization of Transmission Lines Situated in Multilayered Media
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New Single-Source Surface Integral Equation for Magneto-Quasi-Static Characterization of Transmission Lines Situated in Multilayered Media

机译:用于多层介质中传输线磁准静态表征的新单源表面积分方程

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We recently proposed a novel single-source integral equation (SSIE) for accurate broadband resistance and inductance extraction and current flow modeling in 2-D conductors. The new surface integral equation is advantageous compared with the traditional volume electric field integral equation (V-EFIE) used for the inductance extraction, since the unknown function is defined on the surface of conductors as opposed to the volumetric unknown current density in V-EFIE. The new SSIE is also more suitable for the solution of inductance extraction problems than the traditional surface integral equation formulations, as it features only a single unknown surface function as opposed to having the unknown equivalent electric and magnetic surface current densities. The new equation also features only the electric field Green's functions unlike the previously known SSIE formulations. The latter property makes the new SSIE equation particularly suitable to the inclusion of the multilayered substrate effect into the inductance extraction model. This paper describes the generalization of the new SSIE formulation to the case of transmission line models embedded into the multilayered lossy substrates. This paper also shows how the matrix sparsity in the method of moments discretization of the novel integral equation can be exploited to accelerate its numerical solution and reduce associated memory use. This sparsity arises due to the skin-effect-based attenuation of the fields in conductors' cross sections leading to vanishing levels of the matrix elements corresponding to the distant interactions. Typical examples of inductance extraction in complex interconnects situated in lossy substrate are considered to validate the proposed techniques against traditional approaches.
机译:我们最近提出了一种新的单源积分方程(SSIE),用于精确的宽带电阻和电感提取以及二维导体中的电流建模。与用于电感提取的传统体积电场积分方程(V-EFIE)相比,新的表面积分方程具有优势,因为未知函数是在导体表面定义的,而不是V-EFIE中的体积未知电流密度。与传统的表面积分方程公式相比,新的SSIE也更适合于求解电感提取问题,因为它仅具有单个未知表面函数,而不是具有未知等效的表面电流密度。与之前已知的SSIE公式不同,新方程还仅具有电场格林函数。后一种特性使得新的SSIE方程特别适合将多层衬底效应纳入电感提取模型中。本文描述了将新的SSIE公式推广到嵌入多层有损基板的传输线模型的情况。本文还展示了如何利用新型积分方程矩离散化方法中的矩阵稀疏性来加速其数值求解并减少相关的内存使用。这种稀疏性是由于导体横截面中场的基于趋肤效应的衰减导致与远距离相互作用相对应的基质元件的电平消失。本文以位于有损基板的复杂互连中的电感提取典型实例为例,验证了所提出的技术与传统方法的对比。

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