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Phase lock loop design and novel test schemes for islanding detection

机译:阶段锁环设计和新型测试方案用于孤岛检测

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Islanding detection is necessary to detect the loss of the electric power system (EPS). The standard requirement for island detection is described in "IEEE 1547 Standard for Interconnecting Distributed Resources with Electric Power Systems" [1] where an island must be detected within 2 seconds to turn off the distributed resource. Anti-islanding schemes use the fact that each distributed resource (DR) must synchronize to the EPS and the DR cannot regulate voltage. Many methods are possible to detect an island. The methods can be separated in four separate groups: active, passive, hybrid, and supervisory control and data acquisition (SCADA). This paper will discuss a passive method and a few active methods under the non-detection zone and parallel case. Two SCADA methods will be discussed briefly. Based off those results, a few suggestions of improvements and future work will be made.
机译:岛屿检测是检测电力系统(EPS)的损失所必需的。 &#0022中描述了岛检测的标准要求; IEEE 1547标准,用于将分布式资源与电力系统互连&#x0022互连; [1]如果必须在2秒内检测到岛屿以关闭分布式资源。 反岛计划使用的是,每个分布式资源(DR)必须与EPS同步,DR无法调节电压。 许多方法可以检测一个岛屿。 这些方法可以在四个单独的组中分开:主动,被动,混合动力和监督控制和数据采集(SCADA)。 本文将讨论非检测区和并联案例下的被动方法和一些有源方法。 将简要讨论两种SCADA方法。 根据这些结果,将提出一些改进和未来工作的建议。

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