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A Novel Adaptive Relaying Scheme for Distribution Networks with DG by considering Fault Severities

机译:考虑故障严重性的分布式配电网自适应中继方案

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The power distribution networks are radially structured, with fuses, reclosures for temporary faults, and relays. After the connection of Distributed Generation (DG) to the power system, it is subject to the in-feed effect which results in different currents flowing through primary and backup relays. Thus, predefined coordination time interval (CTI) will be changed, which in turn, leads to the violence of coordination rule between the relays. This paper proposes a novel adaptive protection scheme for the power network integrated with DG which takes the severity of the fault current into account. Thus, the higher the magnitude of the fault current, the faster will be the breaker action and fault isolation. The solution is to adjust the variable relay parameters including Time Dial Setting (TDS) and Plug Setting (PS) of Inverse Definite Minimum Time (IDMT) relays. According to the proposed algorithm, the relay settings are updated based on the status of the breaker connected to the DG. The paper implemented IEEE 33-bus power distribution network to analyze the influence of DG on the operations of primary and backup relays and to test the proposed algorithm. The simulation results showed that the proposed scheme is effective in maintaining CTI in distribution systems with PV involvement.
机译:配电网络呈放射状,带有保险丝,临时故障的重合闸和继电器。将分布式发电(DG)连接到电力系统后,它会受到馈入效应的影响,这会导致流过主继电器和备用继电器的电流不同。因此,预定义的协调时间间隔(CTI)将被更改,从而导致中继之间的协调规则冲突。针对故障电流的严重性,本文提出了一种新的与DG集成的电网自适应保护方案。因此,故障电流的幅度越高,断路器的动作和故障隔离就越快。解决方案是调整可变继电器参数,包括反时限最小时间(IDMT)继电器的时间拨号设置(TDS)和插头设置(PS)。根据提出的算法,继电器设置将根据连接到DG的断路器的状态进行更新。本文实现了IEEE 33总线配电网络,以分析DG对主继电器和备用继电器操作的影响,并测试所提出的算法。仿真结果表明,所提出的方案对于维持光伏参与的配电系统中的CTI是有效的。

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