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Real-Part Sufficiency and Its Application to the Rational Function Fitting of Passive Electromagnetic Responses

机译:实部充分性及其在无源电磁响应有理函数拟合中的应用

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For passive networks real-part sufficiency describes the fact that their driving-point impedance or admittance is uniquely defined in terms of its real part alone. We have exploited this fact in the development of a methodology for the generation of passive rational function approximations of electromagnetic transfer functions. More specifically, by utilizing in the fitting process only data for the real part of the driving-point impedance or admittance, our methodology attempts to ensure the passivity of the rational fit by construction. This paper reports several improvements in our methodology, which provide for enhanced accuracy in the fitting of broadband data and improved robustness and computational efficiency of the fitting algorithm. The improved algorithm is demonstrated through its application to the rational fitting of the driving point impedance of interconnect circuits using both numerically-obtained and measured data over multi-GHz bandwidths.
机译:对于被动网络而实际的充分描述了他们的驾驶点阻抗或入场的事实是单独的真实部门的唯一定义。我们利用这一事实在开发一种用于产生电磁传递函数的被动合理函数近似的方法的方法中。更具体地,通过利用拟合过程仅用于驾驶点阻抗或导纳的真实部分的数据,我们的方法可能会尝试通过建筑确保合理拟合的纵向。本文报告了我们的方法论的几种改进,可提供宽带数据拟合的提高准确性,并提高了拟合算法的鲁棒性和计算效率。通过应用于在多GHz带宽上的数值获得和测量数据的应用,通过应用于互连电路的驱动点阻抗的Rational拟合来证明改进的算法。

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