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Influence of process bus on performance of power system protection

机译:过程总线对电力系统保护性能的影响

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The development of substation operations under open standards has ensured interoperability among technology manufacturers and has led to system management evolution. Implementing a Process Bus (PB) and its related technologies represents the future of power systems protection. The release of the IEC61850-9-2 sampled values protocol has allowed the replacement of the conventional measurement method by an ethernet-based system at substation yards. This study focuses on the PB implementation effects such as the trip time delay and possible time shift over the protection system performance. The paper points out aspects that should be considered through the engineering process and design, considering the two PB standards, IEC61850-9-2LE and IEC61869-9. A test architecture was composed of a conventional relay, and two PB relays synchronized using the IEEE-1588Precision Time Protocol (PTP). Four tests were carried out, including a software simulation and field-collection data. The two PB standards presented similar results during the tests. The relay signal resampling results in time shifts that should be properly compensated, and the digitalization delays found can occasionally add more than 9 ms in the final trip time and must be considered in protection studies prior to implementation. Otherwise, it can significantly impact on the project of the power system.
机译:开放标准下变电站行动的发展确保了技术制造商之间的互操作性,并导致系统管理进化。实现过程总线(PB)及其相关技术代表了电力系统保护的未来。 IEC61850-9-2的释放采样值协议允许通过在变电站码处基于以太网的系统替换传统的测量方法。本研究重点介绍了PB实现效果,例如旅行时间延迟和可能的时间转移保护系统性能。本文指出,考虑到两种PB标准,IEC61850-9-9和IEC61869-9,应通过工程流程和设计考虑应考虑的方面。测试架构由传统的继电器组成,并且使用IEEE-1588Precision时间协议(PTP)同步的两个PB继电器。执行四个测试,包括软件仿真和现场收集数据。两种PB标准在测试期间呈现了类似的结果。继电器信号重采样导致应适当补偿的时间换档,并且在最终行程时间内发现的数字化延迟可能偶尔增加超过9毫秒,并且必须在实施之前考虑保护研究。否则,它可以显着影响电力系统的项目。

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