Double-Side Feeding and Reactive Power Compensation Using the Railway Interline Power Flow Controller

Eng Pub Date : 2023-12-27 DOI:10.3390/eng5010005
António Pina Martins, Vítor A. Morais
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引用次数: 0

Abstract

This paper gives an overview of the operating characteristics of the railway interline power flow controller (RIPFC) regarding the capability of transferring active power between two sections of an electrified railway line separated by a neutral zone and proposes its use for compensating the power factor at the substation instead of regulating the voltage level at the neutral zone. The basic analysis is based on simplified steady-state models for the energy supply architecture, while detailed time-domain simulations are used for more realistic tests. The paper mainly focus on active power balancing between two neighbouring substations and the global losses in the system. Other functionalities of the RIPFC system are also analysed, like reactive power compensation at the substations. The paper presents the main operating principles of the system, shows results for some representative scenarios (generic and reduced) and discusses the results. The most relevant conclusions are related to substation active power balancing and peak shaving, power factor compensation in the substation, voltage stability at the neutral zone and system power losses.
利用铁路线间功率流控制器实现双侧馈电和无功功率补偿
本文概述了铁路线间功率流控制器(RIPFC)的运行特性,即在被中性区隔开的电气化铁路两段之间传输有功功率的能力,并建议将其用于补偿变电站的功率因数,而不是调节中性区的电压水平。基本分析基于能源供应结构的简化稳态模型,而详细的时域模拟则用于更现实的测试。本文主要关注两个相邻变电站之间的有功功率平衡和系统中的全局损耗。此外,还分析了 RIPFC 系统的其他功能,如变电站的无功功率补偿。论文介绍了系统的主要运行原理,展示了一些代表性情景(一般情景和缩小情景)的结果,并对结果进行了讨论。最相关的结论涉及变电站有功功率平衡和削峰、变电站功率因数补偿、中性区电压稳定性和系统功率损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eng
Eng
CiteScore
2.10
自引率
0.00%
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