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Anti-Islanding Protection Relay for Medium Voltage Feeder With Multiple Distributed Generators

机译:多台分布​​式发电机的中压馈线防孤岛保护继电器

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Large distributed generators (DGs) are usually connected to medium voltage (MV, typically up to 50 kV) feeders directly. Their anti-islanding protections mainly rely on transfer trips from upstream substations through communication media, which are expensive and time-consuming because of infrastructure. This paper presents a local anti-islanding protection relay (LPR) as an alternative for the traditional transfer trip in MV feeder applications. The basic idea of the proposed LPR is to short phase to neutral or phase to phase voltages by thyristors at the point of common coupling (PCC) of each DG when either of them is crossing zero; then both variations of the thyristor current and voltage harmonic distortion at the PCC are observed and measured, and they are able to indicate the operating mode of the DG unit in either grid-connected or islanding. Further, this approach is analyzed and discussed based on a single DG scenario and a complicated scenario with two DGs and one shunt capacitor bank. Finally, a lot of experiment results with different scenarios are obtained based on a scale-down testing platform, which has been built in our lab by using per-unit method from an actual MV feeder system.
机译:大型分布式发电机(DG)通常直接连接到中压(MV,通常最高50 kV)馈线。他们的防孤岛保护主要依靠上游变电站通过通信介质进行的转移旅行,由于基础设施的原因,这种转移既昂贵又费时。本文提出了一种本地防孤岛保护继电器(LPR),作为中压馈线应用中传统换向行程的替代方案。提出的LPR的基本思想是,当每个DG的任何一个都过零时,在每个DG的公共耦合点(PCC)处通过晶闸管使相电压中性线短路或相间电压短路。然后观察并测量晶闸管电流和电压谐波畸变在PCC处的变化,并能够指示DG并网或孤岛运行模式。此外,基于单个DG方案和具有两个DG和一个并联电容器组的复杂方案对这种方法进行了分析和讨论。最后,基于缩小的测试平台获得了许多不同场景的实验结果,该平台是在我们的实验室中使用实际MV馈线系统中的每单位方法构建的。

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