逆变器主导配电网接地方向保护评估

C. Frangeskou, L. Hadjidemetriou, M. Asprou, C. Panayiotou
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引用次数: 0

摘要

基于逆变器的资源(IBRs)对传统的线路保护系统提出了挑战,传统的线路保护系统是多年来根据同步发电机为主的电力系统的故障特征而设计和开发的。ibr在故障下的响应主要由变频器控制设计驱动,不同制造商的变频器控制设计可能有所不同。本研究的重点是评估负序电压和零序电压极化接地定向元件在增加光伏系统渗透的中压(MV)配电网中的性能。已经开发了一个系统,对配电网的一部分进行建模,并利用详细的电磁瞬变(EMT)模型来模拟ibr的行为。变电站保护方案设计包括采用接地定向元件的11kv阻断方案。该系统在实时环境中进行了仿真,并使用使用工业标准IEC 61850协议进行通信的实际保护继电器进行了硬件在环(HIL)测试。在不同的配置场景下,测试了阻塞方案的性能,结果表明,在一定条件下,IBR故障占比较大,保护方案受到负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ground Directional Protection Assesment in Inverter Dominated Distribution Networks
Inverter-Based Resources (IBRs) are challenging traditional line protection systems, that have been designed and developed over the years considering the fault characteristics of synchronous generator dominated power systems. The response of IBRs under faults is mainly driven by the inverter control design that can vary across different manufacturers. This study focuses in assessing the performance of negative and zero sequence voltage polarized ground directional elements in a Medium Voltage (MV) distribution grid with increased penetration of Photovoltaic (PV) systems. A system has been developed, modelling a part of a distribution grid and utilizing detailed ElecrtoMagnetic Transient (EMT) models to emulate the behavior of IBRs. The design of the substation protection scheme includes an 11 kV blocking scheme employing ground directional elements. The system is simulated in a real time environment and Hardware In the Loop (HIL) tests are performed with actual protection relays utilizing the industry standard IEC 61850 protocol for the communications. The performance of the blocking scheme is examined under different configuration scenarios, with the results indicating that under certain conditions, with heavy IBR fault contributions, the protection scheme is impacted negatively.
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