基于逆变器的资源对输电线路继电保护的影响.第二部分:功率摆动保护

IF 1.9 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
A. Jalilian, D. Robinson
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引用次数: 0

摘要

输电线路(TL)的功率摆动特性可能会受到基于逆变器的资源(IBR)的大规模集成的影响,从而导致传统功率摆动闭锁(PSB)和失步跳闸(OST)功能的误操作。本文简要回顾了功率摆动现象及其对功率摆动保护功能的影响。在这方面,已经仔细审查了IBR集成III型和IV型风力涡轮机发电(WTG)对传统功率摆动保护功能的影响。为此,通过全面的仿真研究,研究了IBR集成过程中基于阻抗的PSB和OST函数的性能。结果表明,在系统偶然性和高IBR渗透率的情况下,根据IBR技术,系统会经历与同步发电机不同的频率振荡和摆动阻抗轨迹,从而危及传统PSB和OST功能的可靠运行。此外,在功率摆动现象中,仿真结果发现,当集成了高份额的IBR时,距离保护的安全性无法得到保证,故障穿越要求也无法维持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of inverter-based resources on transmission line relaying -part II: power swing protection
The power swing characteristic of transmission lines (TLs) can be affected by the large-scale integration of inverter-based resources (IBRs), resulting in the maloperation of the legacy power swing blocking (PSB) and out-of-step tripping (OST) functions. This paper presents a brief review of power swing phenomena and the impact on power swing protection functions. In this regard, the impact of IBR integration of type-III, and type-IV wind turbine generation (WTG) on legacy power swing protection functions has been scrutinized. To do so, the performance of impedance-based PSB and OST functions during the IBR integration has been investigated via comprehensive simulation studies. The results show that under a system contingency and high IBR penetration, depending on the IBR technology, the system experiences frequency oscillations and swinging impedance trajectories which are different from those from synchronous generators, such that the reliable operation of the legacy PSB and OST functions can be jeopardized. Moreover, during power swing phenomena, the simulation results have found that the security of distance protection cannot be guaranteed and the fault ride-through requirements cannot be maintained when a high share of IBRs have been integrated.
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