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An enhanced cuckoo search algorithm based contingency constrained economic load dispatch for security enhancement

机译:一种基于偶发性约束经济负荷调度的增强型布谷鸟搜索算法,以提高安全性

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This paper propose a meta-heuristic algorithm known as the enhanced cuckoo search (ECS) algorithm for contingency constrained economic load dispatch (CCELD) in order to relieve transmission line overloading. The power system security assessment deals with finding out the secure and the insecure operating states, whereas the security enhancement deals with the necessary control action against overloads under contingency scenario. By generation rescheduling the overloaded lines can be relieved from the severity. In the proposed ECS algorithm, in order to improve the solution vectors, dynamically variable parameters namely the step size and the probability are incorporated instead of the fixed values of the parameters. The CCELD problem includes scheduling of generators to minimize the severity index with minimum fuel cost. A standard IEEE-30 bus system is considered to study the effectiveness of the proposed ECS algorithm for CCELD problem. Numerical results reveals that, for 100 iterations the proposed ECS algorithm out performs the other state-of-the-art algorithms, namely cuckoo search (CS), Bat algorithm (BA) and particle swarm optimization (PSO) algorithm in obtaining the minimum fuel cost and the minimum severity index in minimum time. Thus, the proposed ECS algorithm is found to be efficient to obtain the solution of contingency constrained economic load dispatch problem. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于应急约束经济负荷调度(CCELD)的元启发式算法,称为增强杜鹃搜索(ECS)算法,以缓解传输线过载。电力系统安全性评估处理找出安全和不安全的运行状态,而安全增强处理处理在紧急情况下针对过载的必要控制措施。通过一代重新安排,可以减轻过载线路的严重性。在提出的ECS算法中,为了改善解矢量,结合了动态可变参数(即步长和概率)来代替参数的固定值。 CCELD问题包括发电机调度,以最小的燃料成本最小化严重性指标。考虑使用标准的IEEE-30总线系统来研究所提出的ECS算法解决CCELD问题的有效性。数值结果表明,对于100次迭代,拟议的ECS算法在获得最小燃料量方面执行了其他最新算法,即布谷鸟搜索(CS),蝙蝠算法(BA)和粒子群优化(PSO)算法。成本和最短时间内的最低严重性指标。因此,发现所提出的ECS算法对于获得应急约束的经济负荷分配问题的求解是有效的。 (C)2015 Elsevier Ltd.保留所有权利。

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