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New Criteria of Selective Orthogonal Matrix Least-Squares Method for Macromodeling Multiport Networks Characterized by Sampled Data

机译:用于以采样数据为特征的多端口网络宏建模的选择性正交矩阵最小二乘法的新准则

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This paper presents the selective orthogonal matrix least-squares (SOM-LS) method for representing a multiport network characterized by sampled data with the rational matrix, improving the previous works and providing new criteria. Recently, it is needed in a circuit design to evaluate physical effects of interconnects and package, and the evaluation is done by numerical electromagnetic analysis or measurement by network analyzer. Here, the SOM-LS method with the criteria will play an important role for generating the macromodels of interconnects and package in circuit simulation level. The accuracy of the macromodels is predictable and controllable, that is, the SOM-LS method fits the rational matrix to the sampled data, selecting the dominant poles of the rational matrix. In examples, simple PCB models are analyzed, where the rational matrices are described by Verilog-A, and some simulations are carried out on a commercial circuit simulator.
机译:本文提出了一种选择性正交矩阵最小二乘(SOM-LS)方法,用于表示以有理矩阵为样本的数据为特征的多端口网络,改进了以前的工作并提供了新的标准。近来,在电路设计中需要评估互连和封装的物理效果,并且该评估通过数值电磁分析或通过网络分析仪进行测量来进行。在这里,具有该标准的SOM-LS方法将在电路仿真级别中对于生成互连和封装的宏模型起重要作用。宏模型的准确性是可预测和可控制的,也就是说,SOM-LS方法将有理矩阵拟合到采样数据,选择有理矩阵的优势极点。在示例中,分析了简单的PCB模型,其中用Verilog-A描述了有理矩阵,并在商用电路模拟器上进行了一些仿真。

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