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A Method to Construct Equivalent Circuit Model From Frequency Responses With Guaranteed Passivity

机译:保证无源性的频率响应构造等效电路模型的方法

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摘要

Converting the frequency response of a network into an equivalent time-domain circuit is a common task in several fields, such as power system simulations. A few good methods, such as the vector fitting method, have been proposed to do the conversion. Unfortunately, these methods sometimes produce non-passive equivalent circuits which are hard to realize in time domain or can lead to unstable simulations. In order to address the concern, this paper proposes a new conversion method for single-input single-output systems with guaranteed passivity for the resulting circuit. The basic idea of the proposed method is to represent the equivalent circuit as a matrix with varying dimension and unknown values. Genetic algorithm is then applied to find the values and dimension by minimizing the errors between the desired frequency response and that produced by the equivalent circuit. Since the equivalent circuit consists of only passive elements, the circuit passivity is always guaranteed. Details of the problem formulation and the solution algorithms are presented in this paper. Performance of the proposed method has been confirmed by several case studies.
机译:将网络的频率响应转换为等效的时域电路是多个领域(例如电力系统仿真)中的常见任务。已经提出了一些好的方法,例如向量拟合法,来进行转换。不幸的是,这些方法有时会产生非无源等效电路,这在时域中很难实现,或者会导致不稳定的仿真。为了解决这个问题,本文提出了一种用于单输入单输出系统的新转换方法,该方法可以保证所产生电路的无源性。所提出方法的基本思想是将等效电路表示为尺寸和未知值变化的矩阵。然后通过最小化所需频率响应与等效电路产生的误差之间的误差,应用遗传算法来找到值和尺寸。由于等效电路仅由无源元件组成,因此始终保证了电路的无源性。本文介绍了问题表述和解决算法的详细信息。若干案例研究证实了该方法的性能。

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