Architectural design and load flow study of power flow routers

Junhao Lin, V. Li, Ka-Cheong Leung, Albert Y. S. Lam
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引用次数: 10

Abstract

Power flow routing is an emerging control paradigm for the dynamic and responsive control of electric power flows. In this paper, we investigate the design and modelling of the power flow router (PFR) which is a major building block of power flow routing. First, a generic PFR architecture is proposed to encapsulate the desired functions of PFRs. Then, the load flow model of PFRs is developed and incorporated into the optimal power flow (OPF) framework. Based on the load flow model, the control capabilities of PFR, such as decoupled branch power flows and enlarged flow regions, are analysed. With particular attention to available transfer capability (ATC), an OPF study on the standard IEEE benchmark systems with 14, 57, and 118 buses has been performed to show that ATC can be enhanced remarkably by installing the proposed PFRs at some critical buses of the power network.
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潮流路由器的结构设计与潮流研究
潮流路由是一种新兴的潮流动态响应控制模式。本文主要研究潮流路由(PFR)的设计与建模,它是潮流路由的主要组成部分。首先,提出了一种通用的PFR体系结构来封装PFR所需的功能。然后,建立了PFRs负荷潮流模型,并将其纳入最优潮流(OPF)框架。在负荷潮流模型的基础上,分析了PFR的控制能力,如解耦支路潮流和扩大潮流区域等。通过对具有14、57和118总线的标准IEEE基准系统的OPF研究,我们特别关注了可用传输能力(ATC),结果表明,在电网的一些关键总线上安装PFRs可以显著提高可用传输能力。
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