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Adaptive Quadrilateral Setting for Distance Protection of Feeder Connecting Renewable Energy

机译:连接可再生能源的进料器距离保护的自适应四边形设置

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Penetration of Renewable Energy Resources Integration are increasing day by day to cope with load demand with conventional generators and to mitigate degradation of nonrenewable resources. The integration of these plants increases power reliability as well as permits challenges to the protection of the Power System. The fault characteristics of the converter-interfaced Renewable Energy Plant (REP) have conflict than conventional generators, the fault contribution is intermittent in nature, so the existing relay may fail to operate. And the REP's can be contributing the power demand in the duration of availability of sources of renewable energy, remaining time these plants turn out as load for maintenance servers, lighting and etc. Therefore, the relay located behind REP has to adaptable according to plant nature, to improve reliability and operation of grid integrated with renewable resources. Adaptive algorithms for Distance relay connected REP in the forward direction are scrutinized. The proposed Adaptive quadrilateral setting of the relay is to identify the fault direction and reverse the quadrilateral setting into third quadrant of the RX-plane if the fault occurs backside of the relay and provides the coordination with other relays which are protecting other feeders from the same bus. The problem statement captured and proposed method for distance relay verified, on IEEE-39 bus system and real-time Kerala transmission system integrated with Solar PV generation in PSCAD/EMTDC.
机译:可再生能源资源整合的渗透日益日益增加,以应对常规发电机的负荷需求,并减轻不可再生资源的退化。这些植物的整合提高了功率可靠性,也可以允许挑战电力系统的保护。转换器接口可再生能源厂(REP)的故障特性与传统发电机的冲突有冲突,故障贡献本质上是间歇性的,因此现有继电器可能无法运行。并且代表可以在可再生能源的可用性持续时间内提供电力需求,剩余时间这些工厂作为维护服务器的负载,照明等,因此,继电器位于代表后面的继电器必须根据植物性质适应,提高与可再生资源集成的网格的可靠性和操作。截面向前方向上的距离继电器连接的自适应算法被仔细审查。中继的所提出的自适应四边形设定是识别故障方向并将四边形设置反转到Rx平面的第三象限中,如果断层发生继电器的反背面,并提供与保护其他馈线的其他继电器的协调公共汽车。问题陈述捕获的距离继电器方法验证,IEE-39总线系统和PSCAD / EMTDC中的太阳能光伏生成的实时Kerala传输系统。

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