Interfacing SFA- and GAM-type dynamic phasors for modeling of integrated AC-DC power systems

Yingwei Huang, M. Chapariha, S. Ebrahimi, Navid Amiri, J. Jatskevich
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引用次数: 4

Abstract

This paper focuses on the modeling of integrated ac-dc backup and generation power systems, which has received increasing attention due to the emergence of microgrids and distributed generations. The conventional shifted-frequency analysis (SFA) type dynamic phasors (DPs) assume a bandpass spectrum of power system signals, and thus are only suitable to model system components wherein the 60Hz fundamental frequency is dominant. To account for high-order harmonics of interest in ac-dc systems, this paper considers another type of DPs based on the generalized averaging method (GAM), and proposes a possible interface between the SFA- and GAM-type DP models. Computer studies demonstrate that the proposed DP interface allows for accurate simulations of both fundamental frequency components and high-order harmonics in integrated ac-dc power systems, while providing significant numerical advantages over the conventional time-domain detailed models.
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集成交直流电源系统的SFA和gam型动态相量建模接口
随着微电网和分布式电源的出现,交直流备用发电系统的建模问题越来越受到人们的关注。传统的移频分析(SFA)型动态相量(dp)假设电力系统信号的带通频谱,因此仅适用于以60Hz基频为主导的系统组件建模。为了考虑交直流系统中的高次谐波,本文考虑了基于广义平均方法(GAM)的另一种类型的DP,并提出了SFA-和GAM-类型DP模型之间的可能接口。计算机研究表明,所提出的DP接口允许在集成交直流电力系统中精确模拟基频分量和高阶谐波,同时与传统的时域详细模型相比,提供显著的数值优势。
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