基于智能三通接触器开关单元的交流微电网故障检测与隔离

K. Subramaniam, M. Illindala
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引用次数: 2

摘要

由于分布式能源(DERs)的即插即用特性具有不同的运行模式,微电网中的故障电流水平有所不同。这将导致交流微电网中基于时间梯度过流继电器保护方案的误动作。较高的DERs渗透或微电网孤岛降低了馈线上游部分的故障电流贡献。这种情况破坏了与预定义的I-t曲线操作的保护装置之间的协调。为了解决这种保护不协调问题,提出了一种在每个DER节点上集成智能三tie接触器单元(ICU)的新型保护方案。通过内置的点对点通信能力,可以方便地检测设备的工作模式和网络拓扑。策略上,每个ICU估计其保护区内的故障电流水平,并自主更新相关重合闸/断路器的I-t曲线。在电压-无功模式下运行时,配电单元限制了同步发电机式配电系统在故障区域的进给,并促进了逆变器式配电系统的通过。这将确保现有的基于时间分级过流的保护协调对故障的选择性隔离的有效性。选择性故障隔离后,局部der重新同步,并与微电网其余部分并联运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent Three Tie Contactor Switch Unit based Fault Detection and Isolation in AC Microgrids
Fault current levels vary in microgrids due to the plug-and-play nature of distributed energy resources (DERs) having different operating modes. This results in maloperation of time-graded overcurrent relay-based protection schemes in an ac microgrid. A higher penetration of DERs or microgrid islanding reduces the fault current contribution from the upstream section of feeder. This condition disrupts the coordination between protective devices operating with pre-defined I-t curves. To address such protection mis-coordination issues, a novel protection scheme that integrates an intelligent three tie contactor unit (ICU) at each DER node is proposed. The ICUs facilitate detecting the operating mode and network topology through their in-built peer-to-peer communication capability. Strategically, each ICU estimates the fault current level in its protection zone and autonomously updates the I-t curves of associated reclosers/breakers. The ICUs limit the synchronous generator-based DERs infeed at the zone of fault and facilitate the inverter-based DERs to ride-through while operating in volt-reactive power mode. It would ensure effectiveness of the existing time-graded overcurrent-based protection coordination for selectively isolating the fault. After the selective fault isolation, the local DERs re-synchronize and operate in parallel with the rest of microgrid system.
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