Hardware in the Loop Testing of Main and Backup Protection Scheme for Systems with High Penetration of Inverter-Based Resources

H. Habib, Trupal Patel, S. Brahma
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Abstract

- Several challenges arise when designing an adequate protection scheme for transmission systems with inverter-based resources. The communication network plays a vital role in helping the protective relays to overcome the complexities of the architecture and provide a suitable protection technique. This paper presents a co-simulation platform linking the simulated model of the modified IEEE 14 bus transmission system simulated on the RTDS simulator and the commercial SEL-421 protective relays to protect the system. The protection scheme utilizes voltage signals from the buses to identify the faulted section and determine the fault type. Voltages and currents are communicated to the relays by sending SV messages from RTDS to the relays using the GTNETx2 interface, synchronized by the GTSYNC interface card and SEL-2488 Satellite-Synchronized Network Clock. Several cases were simulated to investigate the protection system under breaker and relay failures to provide a suitable backup solution and allow the healthy feeders to serve the system during abnormal conditions. The real-time results show the capability of the suggested protection scheme.
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基于逆变器资源的高渗透系统主备保护方案的硬件在环测试
-在为基于逆变器资源的传输系统设计适当的保护方案时,会出现一些挑战。通信网络在帮助保护继电器克服结构的复杂性和提供合适的保护技术方面起着至关重要的作用。本文提出了一种将改进后的IEEE 14总线传输系统在RTDS模拟器上的仿真模型与商用SEL-421保护继电器相连接的联合仿真平台,对系统进行保护。该保护方案利用母线电压信号识别故障区段,确定故障类型。电压和电流通过RTDS通过GTNETx2接口向继电器发送SV消息传递给继电器,由GTSYNC接口卡和SEL-2488卫星同步网络时钟同步。通过仿真研究了断路器和继电器故障情况下的保护系统,提供了合适的备用方案,并使正常的馈线在异常情况下为系统服务。实时结果表明了所提保护方案的有效性。
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