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Smart Grid Automation Based on IEC 61850: An Experimental Characterization

机译:基于IEC 61850的智能电网自动化:实验表征

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摘要

Electricity distribution networks are a critical infrastructure of the modern society. The continuity of the electricity distribution service is therefore a key topic. Network automation is aimed at improving service continuity. Among the several possible automation schemes, logic selectivity of protection relays is one of the most effective approach because it allows minimizing the extent of the area affected by the fault with a short clearing time. IEC 61850 provides a standard way to implement automation. This paper describes a laboratory setup where the logic selectivity—based on the IEC 61850 standard—was tested before moving protection relays to a real operating environment for field demonstration. An analysis of system configuration and performance is reported when phase-to-ground and phase-to-phase faults were tested. Failure of the communication infrastructure enabling the coordination among relays and a failure of the breaker were also simulated to determine how the system was fault tolerant. The results show that the logic implemented is fast enough to send the trip command to the breaker in less than 170 ms in the case of phase-to-ground fault and in less than 130 ms in the case of phase-to-phase fault, even considering the time needed for the coordination of relays.
机译:配电网络是现代社会的重要基础设施。因此,配电服务的连续性是一个关键主题。网络自动化旨在改善服务的连续性。在几种可能的自动化方案中,保护继电器的逻辑选择性是最有效的方法之一,因为它可以在很短的清除时间内使受故障影响的区域最小。 IEC 61850提供了实现自动化的标准方法。本文介绍了一种实验室设置,其中在将保护继电器移至实际操作环境进行现场演示之前,已经测试了基于IEC 61850标准的逻辑选择性。测试相接地和相间故障时,将报告对系统配置和性能的分析。还模拟了通信基础设施的故障,这些故障使继电器之间能够协调,断路器也发生了故障,以确定系统如何容错。结果表明,所实现的逻辑足够快,可以在相接地故障情况下在不到170 ms的时间内将跳闸命令发送到断路器,而在相相故障情况下则在不到130 ms的情况下发送跳闸命令,即使考虑协调继电器所需的时间。

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