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Optimal coordination of directional over-current relays using informative differential evolution algorithm

机译:基于信息差分进化算法的定向过流继电器的最优协调

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摘要

Growing interconnection in distribution system creates new problem for protection engineers. Particularly the design of overcurrent relay coordination in such system is an independent area of research. With the availability of new artificial based optimization algorithm relay coordination research gain a new momentum. Well established artificial based optimization algorithm such as genetic and particle swam optimization are successfully applied for such applications. This paper discusses the application of informative differential evolution algorithm with self adaptive re-clustering technique for selection of TDS and PSM for optimal coordination of directional overcurrent relays. Both continuous as well as discrete version of informative differential evolution algorithm are used for optimization of relay setting. Proper combination of backup relays for each primary relay are identified by using LINKNET graph theory approach. Coordination of directional overcurrent is developed for 9 bus and IEEE 30 bus distribution systems. The aim of problem is to minimize the total operating time of primary relays and eliminate the miscoordination among the primary and backup relay pairs. Discrete types of settings for electromechanical types of relay are also discussed in this paper. Moreover, the relay coordination problem is modified for providing optimal coordination time interval between 0.2 and 0.8 s among all primary and backup relays pairs. The results are compared with hybrid of genetic algorithm - nonlinear programming and sequential quadratic programming. Digsilient power factory software is used for verification of result.
机译:配电系统中互连的增长为保护工程师带来了新问题。特别地,这种系统中的过电流继电器协调设计是一个独立的研究领域。有了新的基于人工的优化算法,继电器协调研究获得了新的动力。完善的基于人工的优化算法(例如遗传和粒子游动优化)已成功应用于此类应用。本文讨论了基于信息自适应差分聚类的信息差分进化算法在TDS和PSM选择中的应用,以优化定向过流继电器的协调性。信息差分演化算法的连续版本和离散版本都用于优化继电器设置。使用LINKNET图论方法确定每个主继电器的备用继电器的正确组合。针对9总线和IEEE 30总线配电系统开发了方向性过电流的协调器。问题的目的是使主继电器的总工作时间最小化,并消除主继电器对和备用继电器对之间的不协调。本文还讨论了机电式继电器的离散设置类型。此外,对中继协调问题进行了修改,以在所有主要和备用中继对之间提供0.2到0.8 s之间的最佳协调时间间隔。将结果与遗传算法(非线性规划和顺序二次规划)的混合进行比较。 Digsilient电力工厂软件用于验证结果。

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