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Real-time Context-Aware Operation of Digitalized Power Systems by Reporting Rate Control of PMUs

机译:通过报告PMU的报告速率控制来实时上下文知识的数字化电力系统的操作

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Phasor Measurement Units (PMUs) are becoming increasingly popular in modern power systems due to their ability to provide synchronized voltage and current phasors with high temporal resolution. PMUs enable advanced monitoring, which is required for the operation of modern power systems. However, the high data reporting rate (RR) associated with the PMUs results in high data volume. Hence, there exists a trade-off between the temporal resolution requirement depending on the dynamic behaviour of the grid and the volume of data flow through the communication network. Commercial PMUs do not possess a context-aware run-time control of RR capable of considering this trade-off and therefore, do not provide access for the necessary research and development of this function. To this end, virtualization is known to be a promising approach. This paper presents a C37.118.2-2011 standard-compliant virtual PMU (vPMU), which provides a controllable dynamic reporting rate solution considering the dynamic behaviour of the power systems as well as the operational condition of the communication network. The proposed vPMU has been successfully tested on the CIGRE MV benchmark grid using an OPAL-RT real-time simulation environment.
机译:Phasor测量单位(PMU)由于能够提供具有高时间分辨率的同步电压和电流相位的能力而越来越受到现代电力系统的流行。 PMU启用高级监控,这是现代电力系统的运行所必需的。但是,与PMU相关的高数据报告率(RR)导致高数据量。因此,根据网格的动态行为和通过通信网络的数据流量的动态行为,在时间分辨率要求之间存在权衡。商业PMU不具有能够考虑此权衡的RR的上下文感知运行时控制,因此,不提供此功能的必要研究和开发的访问。为此,已知虚拟化是一个有希望的方法。本文介绍了C37.118.2-2011标准符合标准虚拟PMU(VPMU),其考虑了电力系统的动态行为以及通信网络的操作条件,提供可控动态报告率解决方案。建议的VPMU使用蛋白石-TT实时仿真环境成功地在CIGRE MV基准网格上进行了测试。

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