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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Fast Passivity Assessment for $S$-Parameter Rational Models Via a Half-Size Test Matrix
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Fast Passivity Assessment for $S$-Parameter Rational Models Via a Half-Size Test Matrix

机译:通过半尺寸测试矩阵对$ S $参数有理模型进行快速被动评估

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摘要

Rational models must be passive in order to ensure stable time domain simulations. The assessment of passivity properties is usually done via a Hamiltonian matrix that is associated with the state-space model, allowing precise characterization of passivity violations from its imaginary eigenvalues. The calculation of eigenvalues can be time consuming for large models as the matrix size is equal to twice the number of model states. In this paper, we derive for $S$-parameter models a new test matrix which is only half the size of the Hamiltonian matrix. This leads to savings in the eigenvalue computation time by a factor of nearly eight. The new test matrix takes into account that the model is symmetrical, in pole-residue form. Its application is demonstrated by three examples: a microwave filter, a package, and a synthetic model.
机译:有理模型必须是被动的,以确保稳定的时域仿真。被动性的评估通常是通过与状态空间模型关联的哈密顿矩阵完成的,从而可以根据其虚构特征值精确表征被动性违规。对于大型模型,特征值的计算可能很耗时,因为矩阵大小等于模型状态数的两倍。在本文中,我们为$ S $参数模型推导了一个新的测试矩阵,该矩阵仅是汉密尔顿矩阵的一半。这样可以将特征值计算时间节省近八倍。新的测试矩阵考虑到模型是对称的,呈极点残差形式。它的应用通过三个示例进行了演示:微波过滤器,包装和合成模型。

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