Optimal Coordination of Overcurrent and Distance Relays Using Cuckoo Optimization Algorithm

F. Namdari, Sajad Samadinasab, N. Shojaei, M. Bakhshipour
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引用次数: 3

Abstract

The duty of protective systems is the timely detection of fault and removing it from the power network. The accuracy of the results and reducing the execution time of the optimizing algorithm are two crucial elements in selecting optimizing algorithms in protective functions. The most important protective elements that are used in power networks are distance and overcurrent relays. In this article, a new algorithm is presented to solve the optimization problem of coordination of overcurrent and distance relays by using Cuckoo Optimization Algorithm which considers the non-linear model overcurrent relays at all stages of setting. The proposed method is tested on a standard 8-bus power system network. Also the results obtained have been compared with other evolutionary algorithms. The results show that the proposed approach can be provide more effective and practical solutions to minimize the time function of the relays and achieving optimal coordination in comparison with previous studies on optimal coordination of overcurrent and distance relays in power system networks.
基于布谷鸟优化算法的过流继电器与距离继电器的优化协调
保护系统的任务是及时发现故障并将其排除在电网之外。优化结果的准确性和减少优化算法的执行时间是选择保护函数优化算法的两个关键因素。电网中使用的最重要的保护元件是距离继电器和过流继电器。本文采用布谷鸟优化算法,考虑过流继电器在整定各阶段的非线性模型,提出了一种解决过流与距离继电器协调优化问题的新算法。在标准的8总线电力系统网络上对该方法进行了测试。并将所得结果与其它进化算法进行了比较。结果表明,与已有的过流与距离继电器优化协调研究结果相比,该方法能更有效、更实用地实现继电器的时间函数最小化,实现继电器的最优协调。
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