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Application of a modified flux-coupling type superconducting fault current limiter to transient performance enhancement of micro-grid

机译:改进的磁通耦合型超导故障限流器在微网暂态性能提升中的应用

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摘要

Concerning the application and development of a micro-grid system which is designed to accommodate high penetration of intermittent renewable resources, one of the main issues is related to an increase in the fault-current level. It is crucial to ensure the micro-grid's operational stability and service reliability when a fault occurs in the main network. In this paper, our research group suggests a modified flux-coupling type superconducting fault current limiter (SFCL) to enhance the transient performance of a typical micro-grid system. The SFCL is installed at the point of common coupling (PCC) between the main network and the micro-grid, and it is expected to actively improve the micro-grid's fault ride-through capability. And for some specific faults, the micro-grid should disconnect from the main network, and the SFCL's contribution is to make the micro-grid carry out a smooth transition between its grid-connected and islanded modes. Related theory derivation, technical discussion and simulation analysis are performed. From the demonstrated results, applying the SFCL can effectively limit the fault current, maintain the power balance, and enhance the voltage and frequency stability of the micro-grid. (C) 2015 Elsevier B.V. All rights reserved.
机译:关于设计用于容纳间歇性可再生资源的高渗透率的微电网系统,主要问题之一与故障电流水平的增加有关。当主网络发生故障时,确保微电网的运行稳定性和服务可靠性至关重要。在本文中,我们的研究小组提出了一种改进的磁通耦合型超导故障限流器(SFCL),以增强典型微电网系统的暂态性能。 SFCL安装在主网络和微电网之间的公共耦合(PCC)点,有望积极提高微电网的故障穿越能力。对于某些特定故障,微电网应与主网络断开连接,SFCL的作用是使微电网在其并网模式和孤岛模式之间平稳过渡。进行了相关的理论推导,技术讨论和仿真分析。从证明的结果来看,应用SFCL可以有效地限制故障电流,保持功率平衡,并提高微电网的电压和频率稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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