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Impact of Inverter-Based Resources on Negative Sequence Quantities-Based Protection Elements

机译:基于逆变器的基于负序量的保护元件的影响

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Inverter-Based Resources (IBRs), including Wind turbine generators (WTGs), exhibit substantially different negative-sequence fault current characteristics compared to synchronous generators (SGs). These differences may cause misoperation of customary negative-sequence-based protective elements set under the assumption of a conventional SG dominated power system. The amplitude of the negative-sequence fault current of a WTG is smaller than that of an SG. This may lead to misoperation of the negative-sequence overcurrent elements 50Q/51Q. Moreover, the angular relation of the negative-sequence current and voltage is different under WTGs, which may result in the misoperation of directional negative-sequence overcurrent element 67Q. This paper first studies the key differences between the WTGs and SG by comparing their equivalent negative-sequence impedances with SG's. Then, simulation case studies are presented showing the misoperation of 50Q and 67Q due to wind generation and the corresponding impact on communication-assisted protection and fault identification scheme (FID). The impact on directional element is also experimentally validated in a hardware-in-the-loop real-time simulation set up using a physical relay. Finally, the paper studies the impact of various factors such as WTG type (Type-III/Type-IV) and Type-IV WTG control scheme (coupled/decoupled sequence) to determine the key features that need to be considered in practical protection studies. The objective is to show potential protection misoperation issues, identify the cause, and propose potential solutions.
机译:基于逆变器的资源(IBRS),包括风力涡轮机发生器(WTG),与同步发电机(SGS)相比,与同步发电机(SG)相比表现出基本不同的负序故障电流特性。这些差异可能导致在传统SG主导电力系统的假设下造成常规负序列的保护元件的误操作。 WTG的负序故障电流的幅度小于SG的幅度。这可能导致负序过电流元素50Q / 51Q的误操作。此外,负序电流和电压的角度关系在WTG下不同,这可能导致定向负序过电流元件67Q的误操作。本文首先通过将其等效的负序阻抗与SG进行比较来研究WTGS和SG之间的关键差异。然后,提出了模拟案例研究,显示了由于风发电和对通信辅助保护和故障识别方案(FID)的相应影响而导致的50Q和67Q的误操作。在使用物理继电器的硬件 - 环路实时模拟中,还对定向元件的影响也在实验上验证。最后,本文研究了WTG型(III型/ Type-IV)和型-IV型WTG控制方案(耦合/分离序列)等各种因素的影响,以确定在实际保护研究中需要考虑的关键特征。目的是展示潜在的保护误操作问题,确定原因,并提出潜在的解决方案。

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