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A Novel Centralized Islanding Detection Scheme Using Teager-Kaiser Energy of Distribution-Level Synchrophasors

机译:一种新的集中式孤岛检测方案,使用分配水平同步素的茶叶kaiser能量

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This paper proposes a novel Centralized Islanding Detector (CID) based on the synchrophasor data collected by the Distribution-level Phasor Measurement Unit (DPMU). The Teager-Kaiser energy of voltage phase angle difference between DG bus and reference substation bus is utilized as a key indicator to differentiate between Islanding and non-Islanding events. The efficacy of the proposed method is verified on a modified IEEE 33 bus test-system under various test scenarios such as loss of mains, single/multiple DG Island with zero/non-zero power mismatch, load shedding, capacitor switching, faults, motor starting, etc. Furthermore, superiority of the proposed method with other centralized Islanding detection schemes in terms of parameter selection, detection time, computational complexity and non detection zone is elaborated. The proposed indicator can work in accordance with advance distribution management system for wide-area situational awareness.
机译:本文提出了一种基于由分配级别量相量测量单元(DPMU)收集的同步素数据的新型集中孤岛探测器(CID)。 DG总线和参考变电站总线之间的电压相位角差的Teager-Kaiser能量被用作区分岛屿和非岛事件之间的关键指示。 在各种测试场景下,在修改的IEEE 33总线测试系统上验证了所提出的方法的功效,例如电源损失,单/多DG岛具有零/非零电源不匹配,负载脱落,电容器开关,断层,电机 此外,阐述了在参数选择,检测时间,计算复杂度和非检测区方面具有其他集中孤岛检测方案的提出方法的优越性。 拟议的指标可以按照高领域态势认识的推进分配管理系统工作。

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