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Applying superconductive fault current limiter to minimize the impacts of Distributed Generation on the distribution protection systems

机译:应用超导故障限流器以最小化分布式发电对配电保护系统的影响

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摘要

Distributed Generation Resources are increasingly used in distribution systems due to their great advantages. The presence of DG, however, can cause various problems such as miss-coordination, false tripping, blinding and reduction of reach of protective devices. Using superconducting fault current limiters (SFCLs) is one of the best methods to minimize these problems comparing to the other conventional methods. In this paper, with defining the protection evaluating indices, the number of protection problems and the worst case among them are specified. Thus, the optimum impedance of limiter is determined. The suitability of the selected value of the minimum impedance is verified by the resolving all of the protection problems. Furthermore, comparison between the three types of superconductive limiters, i.e. resistive, inductive, and impedance has been done. According to the study, to control the fault current contribution of a DG resource and minimize the protection issues, the limiter which is placed in series with the DG unit has the most beneficial impact among other locations. Efficiency of the proposed approach is evaluated with various simulations on a real radial distribution system in two cases, having one DG unit and also two DG units with different capacities.
机译:分布式发电资源由于其巨大的优势而越来越多地用于配电系统中。但是,DG的存在会引起各种问题,例如协调不正确,误跳闸,致盲以及保护装置触及范围减小。与其他常规方法相比,使用超导故障限流器(SFCL)是使这些问题最小化的最佳方法之一。在定义保护评估指标的基础上,确定了保护问题的数量和其中最坏的情况。因此,确定了限幅器的最佳阻抗。通过解决所有保护问题,可以验证所选最小阻抗值的适用性。此外,已经完成了三种类型的超导限幅器之间的比较,即电阻,电感和阻抗。根据研究,为了控制DG资源的故障电流贡献并最大程度地减少保护问题,与DG单元串联放置的限幅器在其他位置具有最有益的影响。在两种情况下,通过一个真实的径向分布系统的各种模拟,对所提出方法的效率进行评估,这两种情况分别具有一个DG单元和两个容量不同的DG单元。

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