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A New Fast-Acting Backup Protection Strategy for Embedded MVDC Links in Future Distribution Networks

机译:未来分销网络中嵌入式MVDC链路的新快速备份保护策略

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This paper presents a new fast-acting backup protection strategy for future hybrid ac-dc distribution networks. By examining the impedance measured by a distance protection relay measuring from the "ac-side" of the network, a unique characteristic is established for faults occurring on the "dc-side" of an embedded medium-voltage dc (MVDC) link, interconnecting two 33 kV distribution network sections. Based on the identified impedance characteristic, appropriate settings are developed and deployed on a verified software model of a commercially available distance protection relay. To remain stable for ac-side faults, it is found that the tripping logic of the device must be altered to provide correct time grading between standard, ac, protection zones and the fast-acting dc region, which can identify faults on the dc system within 40 ms. An additional confirmatory check is also employed to reduce the likelihood of mal-operation. Trials on a test system derived from an actual distribution network, which employs distance protection, are shown to provide stable operation for both ac-side and dc-side pole-pole and pole-pole-ground faults.
机译:本文为未来的混合AC-DC分配网络提供了一种新的快速备份保护策略。通过检查通过网络的“交流侧”测量的距离保护继电器测量的阻抗,建立了嵌入式中电压DC(MVDC)链路的“DC侧”发生故障的独特特性,互连两个33 kV分配网络部分。基于所识别的阻抗特性,在市售距离保护继电器的经过验证的软件模型上开发并部署了适当的设置。为了保持稳定的交流侧故障,发现必须改变设备的跳闸逻辑,以在标准,交流,保护区和快速作用直流区域之间提供正确的时间分级,这可以识别DC系统上的故障在40毫秒内。额外的确认支票也用于降低MAL-操作的可能性。显示了从采用距离保护的实际分配网络的测试系统的试验,该试验是为AC侧和直流杆极和极极接地故障提供稳定的操作。

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