A New Boundary Element Method for Multiple-Frequency Parameter Extraction of Lossy Substrates

Xiren Wang, Wenjian Yu, Zeyi Wang
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Abstract

The couplings via realistic lossy substrates can be modeled as frequency-dependent coupling parameters. The fast extraction at multiple frequencies can be accomplished in two sequent steps. The first is to extract the coupling resistance using a direct boundary element method (DBEM). The second is to revise the resistance into the parameter at the frequency in an exact and rapid way. The first step is time-consuming, while it runs only one time; the second repeats at each frequency, but is much easier. For more frequency calculation, this method is more advanced. Numerical experiments illustrate that this method has high accuracy, and it can be hundreds of times faster than an advanced Green's function based method. Substrates with arbitrary doping profiles can also be easily handled, which is partly verified by experiment.
一种新的有损基底多频参数提取边界元方法
通过实际损耗衬底的耦合可以建模为频率相关的耦合参数。多频率下的快速提取可分两个步骤完成。首先是利用直接边界元法(DBEM)提取耦合阻力。二是准确、快速地将电阻修正为频率处的参数。第一步很耗时,因为它只运行一次;第二种在每个频率上重复,但要简单得多。对于更多的频率计算,该方法更为先进。数值实验表明,该方法具有较高的精度,比基于格林函数的先进方法快数百倍。具有任意掺杂分布的衬底也可以很容易地处理,这在一定程度上得到了实验的验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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