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Investigation on the Combined Effect of VSC-Based Sources and Synchronous Condensers Under Grid Unbalanced Faults

机译:电网不平衡故障下基于VSC的电源与同步凝汽器组合效应的研究

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摘要

The short circuit response of voltage source converters (VSCs) could be significantly different from that of synchronous condensers (SCs) under unbalanced faults. This paper investigates the combined effect of VSC-based sources and synchronous condensers under grid unbalanced faults considering two groups of VSC fault-ride-through control strategies. It aims to provide an evaluation of typical control strategies and to explore the impact of equipping a synchronous condenser at the point of common coupling (PCC). By examining the combined short-circuit currents, PCC voltages, DC-side voltages, and system frequency responses, this study points out the merits and demerits of the examined control strategies, illustrates the benefits of synchronous condensers on mitigating the disadvantages of certain control strategies, and provides suggestions on selecting the control strategies for the VSC when incorporating a synchronous condenser at the PCC.
机译:在不平衡故障下,电压源转换器(VSC)的短路响应可能与同步电容器(SC)的短路响应明显不同。本文考虑了两组VSC故障穿越控制策略,研究了基于VSC的电源和同步电容器在电网不平衡故障下的综合作用。它旨在提供对典型控制策略的评估,并探讨在公共耦合点(PCC)处配备同步电容器的影响。通过研究组合的短路电流,PCC电压,DC侧电压和系统频率响应,本研究指出了所研究控制策略的优缺点,说明了同步电容器在减轻某些控制策略的缺点方面的优势。 ,并提供有关在PCC上安装同步电容器时选择VSC的控制策略的建议。

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