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Fold back current control and admittance protection scheme for a distribution network containing distributed generators

机译:包含分布式发电机的配电网络的折返电流控制和导纳保护方案

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摘要

Islanded operation, protection, reclosing and arc extinguishing are some of the challenging issues related to the connection of converter interfaced distributed generators (DGs) into a distribution network. The isolation of upstream faults in grid-connected mode and fault detection in islanded mode using overcurrent devices are difficult. In the event of an arc fault, all DGs must be disconnected in order to extinguish the arc. Otherwise, they will continue to feed the fault, thus sustaining the arc. However, the system reliability can be increased by maximising the DG connectivity to the system; therefore the system protection scheme must ensure that only the faulted segment is removed from the feeder. This is true even in the case of a radial feeder as the DG can be connected at various points along the feeder. In this paper, a new relay scheme is proposed which, along with a novel current control strategy for converter interfaced DGs, can isolate permanent and temporary arc faults. The proposed protection and control scheme can even coordinate with reclosers. The results are validated through PSCAD/EMTDC simulation and MATLAB calculations.
机译:孤岛式操作,保护,重合闸和灭弧是与转换器接口分布式发电机(DG)连接到配电网相关的一些挑战性问题。使用过流设备很难隔离并网模式的上游故障和孤岛模式的故障检测。发生电弧故障时,必须断开所有DG才能熄灭电弧。否则,它们将继续给故障供电,从而维持电弧。但是,可以通过最大化DG与系统的连接来提高系统的可靠性。因此,系统保护方案必须确保仅将有故障的网段从馈线中移除。即使在使用径向给料器的情况下也是如此,因为DG可以沿着给料器连接在各个点上。本文提出了一种新的继电器方案,该方案与转换器接口DG的新颖电流控制策略一起,可以隔离永久性和临时性电弧故障。所提出的保护和控制方案甚至可以与重合器配合使用。通过PSCAD / EMTDC仿真和MATLAB计算验证了结果。

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  • 来源
    《Generation, Transmission & Distribution, IET》 |2010年第8期|p.952-962|共11页
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  • 作者单位

    School of Engineering Systems, Queensland University of Technology;

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