Optimum positioning of superconducting fault current limiter for wind farm fault current in smart grid

Mandar L. Jangale, K. D. Thakur
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引用次数: 9

Abstract

The ever-increasing demand for electrical energy has resulted in increased size of generating stations and interconnected distribution network which leads to the risk of increasing abnormal operation. The conventional circuit breakers cannot be used in the power system network as the increasing fault current levels may soon cross its rated fault current breaking capacity. Superconducting fault current limiter (SFCL) offers an attractive solution to many of the concerned issues faced. This paper presents a novel method to determine the optimal allocation of multiple resistive superconducting fault current limiters (SFCLs) aiming to improve the overall protection of power grid. A power system model with resistive SFCL was implemented in MATLAB/Simulink software with dispersed energy resource to find out feasible location. Wind farm having 10 MVA capacities is used as dispersed energy resource for simulation. A transient analysis is performed for three phase to ground fault, which is placed at customer grid, and results are presented for the effect of the SFCL and its various locations on the wind farm fault current. The methodology developed shows the optimal location of SFCL assessed in the grid with wind farm when fault occurs in customer grid.
智能电网风电场故障电流超导限流器优化定位
随着对电能需求的不断增长,电站规模不断扩大,配电网互联互通,非正常运行风险不断增加。常规断路器由于故障电流水平的不断增大,很快就会超过其额定故障电流分断能力,在电网中已不能正常使用。超导故障限流器(SFCL)为许多相关问题提供了一个有吸引力的解决方案。提出了一种确定多个电阻超导故障限流器最佳配置的新方法,以提高电网的整体保护水平。利用MATLAB/Simulink软件实现了能源分散情况下的电阻式SFCL电力系统模型,找到了可行的位置。采用容量为10 MVA的风电场作为分散能源进行模拟。通过对客户电网三相接地故障的暂态分析,得出了SFCL及其不同位置对风电场故障电流的影响。该方法给出了在客户电网发生故障时,带风电场的电网中SFCL的最优位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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