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首页> 外文期刊>IEEE systems journal >A Real-Time Synchrophasor-Based Zone-3 Supervision of Distance Relays Under Load Encroachment Condition
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A Real-Time Synchrophasor-Based Zone-3 Supervision of Distance Relays Under Load Encroachment Condition

机译:负载侵占条件下距离继电器的实时基于同步相量的Zone-3监督

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This paper deals with the implementation of a real-time supervisory protection algorithm to avert the mal-operation of third zone element of distance relays during load encroachment. The proposed supervisory algorithm controls the operation of the backup zone (Zone-3) of distance relays by analyzing the synchrophasor data obtained from the phasor measurement units (PMUs) located throughout the power system network. The combination of the inherently higher delay time of Zone-3 element and the latency associated with PMUs to communicate information to the central control center makes the algorithm suitable for transmission line protection. The superiority of the proposed method is verified by conducting extensive real-time experiments on a laboratory model for a 400-km extra high voltage transmission line and implementing the protection algorithm on the LabVIEW platform at the System Protection and Control Centre. PMUs have been realized using National Instruments (NI) Compact Reconfigurable Input-Output embedded controllers, and the synchrophasor estimation algorithm is deployed using LabVIEW field-programmable gate array software. The results obtained from the experimental setup validate the viability of the proposed algorithm for the real-time implementation.
机译:本文探讨了一种实时监控保护算法的实现,以防止在负载入侵期间距离继电器的第三区域元件发生误操作。所提出的监督算法通过分析从整个电力系统网络中的相量测量单元(PMU)获得的同步相量数据来控制距离继电器的备用区(Zone-3)的操作。 Zone-3元素固有的较高延迟时间和与PMU关联以将信息传达给中央控制中心的等待时间的结合,使该算法适用于传输线保护。通过在400 km超高压输电线路的实验室模型上进行大量的实时实验,并在系统保护和控制中心的LabVIEW平台上实施保护算法,验证了该方法的优越性。 PMU已使用National Instruments(NI)紧凑型可重配置输入输出嵌入式控制器实现,并且同步相量估计算法已使用LabVIEW现场可编程门阵列软件进行了部署。从实验设置获得的结果验证了所提出算法实时实施的可行性。

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