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Voltage current based time inverse relay coordination for PV feed distribution systems

机译:光伏馈电系统中基于电压电流的时间反向继电器协调

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Integration of distributed energy resources in distribution systems results in change in network topology and fault currents levels. Particularly in case of solar based distributed energy resources, the fault feeding capability is extremely poor and a very thin margin exists between their loading and fault feeding capabilities. The conventional time inverse over current relays may not accurately and quickly discriminate between the normal loading and fault conditions. This identified protection coordination problem is addressed in this research article, by developing a voltage current based time inverse relay. The operating principle of this proposed relay is based on reduction in nodal voltage and marginal rise in fault feeding capability of PV based distributed energy resource connected with distribution system. The protection coordination problem for voltage current based time inverse relay is formulated as a non-linear optimization problem. In this optimization problem, the fitness function is defined as summation of operating time of all primary relays and non-linear constraints are constituted with five decision variables like time dial setting, over current pickup, voltage pickup and relay parameters. The proposed protection coordination is simulated for 8 bus test system and solved with the help of evolutionary based optimization algorithm. The performance of the proposed voltage current based time inverse relay is compared with conventional relay and observed that their performances are superior to the conventional time inverse over current relays in term of their operating time.
机译:分布式能源在配电系统中的集成导致网络拓扑结构和故障电流水平的变化。特别是在基于太阳能的分布式能源的情况下,故障馈电能力非常差,并且在其负载和故障馈电能力之间存在非常小的余量。传统的时间反向过电流继电器可能无法准确,快速地区分正常负载和故障条件。通过开发基于电压电流的时间反向继电器,可以在本文中解决已确定的保护协调问题。提出的继电器的工作原理是基于节点电压的降低和基于光伏的,与配电系统相连的分布式能源的故障馈电能力的少量上升。基于电压电流的时间逆向继电器的保护协调问题被表述为非线性优化问题。在此优化问题中,适应度函数定义为所有一次继电器的运行时间之和,非线性约束由五个决策变量构成,例如时间刻度设置,过电流拾取,电压拾取和继电器参数。对8总线测试系统的保护协调进行了仿真,并借助基于进化的优化算法进行了求解。将所提出的基于电压电流的时间反向继电器的性能与常规继电器进行比较,并观察到它们的性能在操作时间方面优于常规时间反向电流继电器。

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