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An Integrated Control and Protection Scheme to Inhibit Blackouts Caused by Cascading Fault in Large-Scale Hybrid AC/DC Power Grids

机译:在大型混合AC / DC电网中级联故障引起的叠加控制和保护方案

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Cascading fault is one of the serious challenges in hybrid ac/dc power grids, which initiates from a dc or a severe inverter ac fault and leads to a blackout in the inverter ac side. However, owing to the fact that dc faults do not cause commutation failure, the existing commutation failure inhibition approaches are not effective in the prevention of cascading faults caused by dc fault. In order to resolve the challenge, this paper first develops a hybrid ac/dc relay (HADR) based on the positive-sequence component, which can detect and locate the fault events in hybrid ac/dc networks. Subsequently, an integrated control and protection scheme is presented using the developed HADR and a thyristor-controlled series compensator. The proposed scheme has the ability to prevent the blackouts caused by cascading fault using transmission capacity enhancement of the ac line and load-shedding in the inverter ac system. The salient feature of the proposed scheme is that it provides a very economical way to compensate for the loss of power caused by HVdc line outage. In addition, it does not require communications among the relays. The practical performance and feasibility of the proposed scheme is validated by laboratory testing, using the real-time Opal-RT hardware prototyping platform. The experimental results demonstrate that the proposed strategy can effectively inhibit the blackouts caused by cascading fault in hybrid ac/dc networks.
机译:级联故障是混合AC / DC电网中的严重挑战之一,它从DC或严重的逆变器交流故障发起,并导致逆变器AC侧的停电。然而,由于DC故障不会引起换向故障,现有的换向性故障禁止方法在防止DC故障引起的级联故障方面无效。为了解决挑战,本文首先基于正序组件开发混合AC / DC继电器(HADR),其可以检测和定位混合AC / DC网络中的故障事件。随后,使用开发的HADR和晶闸管控制的系列补偿器提出了集成控制和保护方案。拟议的方案有能力防止通过使用传输容量增强交流线路和逆变器AC系统中的负载脱落引起的级联故障引起的停电。所提出的方案的突出特征是它提供了一种非常经济的方法来补偿HVDC线路中断引起的电力损失。此外,它不需要继电器之间的通信。通过实验测试,使用实时蛋白石-TT硬件原型平台验证了所提出的方案的实际性能和可行性。实验结果表明,所提出的策略可以有效地抑制混合AC / DC网络中的级联故障引起的停电。

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