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Optimal Sizing of DGs in AC Distribution Networks via Black Hole Optimization

机译:通过黑洞优化来优化交流配电网中DG的大小

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This paper presents a metaheuristic optimization technique named back hole optimization (BHO) for solving the problem of optimal dimensioning of distributed generation in radial distribution networks. This problem is formulated as a conventional optimal power flow problem in ac power grids. A master-slave methodology is proposed to solve this optimization problem. In the master stage the BHO technique decides the power output of each distributed generator (DG), while slave stage is responsible for solving the resulting power flow problem via classical sweep backward/forward technique. As comparison methods, classical particle swarm optimization as well as interior point methods are used. Two classical test systems with radial topologiesy and 33 and 69 nodes are used for numerical validations by using the MATLAB programming environment. Simulation results show the quality of the proposed optimization technique for power losses reduction in comparison with large-scale used optimization approaches available in specialized literature.
机译:本文提出了一种称为启发式优化(BHO)的元启发式优化技术,用于解决径向配电网中分布式发电的最优尺寸问题。该问题被公式化为交流电网中的常规最佳潮流问题。提出了一种主从方法来解决该优化问题。在主控阶段,BHO技术决定每个分布式发电机(DG)的功率输出,而从属阶段则负责通过经典的向后/向前扫频技术解决由此产生的潮流问题。作为比较方法,使用了经典的粒子群算法以及内点法。通过使用MATLAB编程环境,将两个具有径向拓扑以及33和69个节点的经典测试系统用于数值验证。仿真结果表明,与专业文献中提供的大规模使用的优化方法相比,所提出的用于降低功率损耗的优化技术的质量。

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