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Operational Resiliency Enhancement Using Synchrophasor Measurement

机译:使用同步相量测量增强操作弹性

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The recent occurrences of various high-impact events have caused disruption of power to the consumers. The grid in such cases must spring back from unstable to stable conditions and must be resilient. Conventionally, grid hardening is used for the purpose of enhancement of resiliency, but such approach is expensive. The phasor measurement units (PMUs) have the ability to provide with real-time data both during normal conditions as well as disruptive events. The measured data can be used to take proactive action against the disruption to improve grid operation. Since the volume of synchrophasor data is very high, principal component analysis (PCA)-based data reduction has been used to identify the critical set of generators for a IEEE-39 bus test system. The governor as well as bypass operations of steam turbines are controlled based on inferences derived from the dynamic state of critical generators, so as to enhance the operational resiliency.
机译:最近发生的各种高冲击事件已导致电力中断。在这种情况下,电网必须从不稳定状态恢复到稳定状态,并且必须具有弹性。传统上,网格强化用于增强弹性,但这种方法成本高昂。相量测量单元(PMU)能够在正常情况下以及中断事件期间提供实时数据。测量数据可用于对中断采取主动措施,以改善电网运行。由于同步相量数据量非常大,基于主成分分析(PCA)的数据简化被用于识别IEEE-39总线测试系统的关键发电机组。根据从关键发电机的动态状态得出的推论,对汽轮机的调速器和旁路运行进行控制,以增强运行弹性。

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