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Ant-lion inspired algorithm based optimal design of electric distribution networks

机译:基于蚁群算法的配电网优化设计

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Ant-lion inspired algorithm (ALIA) has been recently explored to develop a novel algorithm for distributed optimization problems. In this paper, the ALIA-based design of distributed generation systems (DGS) is proposed for radial distribution systems to mitigate voltage instability and reduce system power losses. IEEE 33-bus test system is considered to accomplish this study. ALIA is utilized to search for optimal size and location of DGS by minimizing a candidate multi-objective function. The performance of the proposed approach has been compared to the system optimized by the classical particle swarm optimization (PSO) to prove the superior efficiency of the ALIA-based design. The unique advantage of the proposed approach implies in achieving the following tasks; load flow solution with forward/backward sweep method, voltage stability index calculation, optimizing DGS' size, location, and power factor. Simulation results emphasis on minimizing the system losses and improving the voltage profile using ALIA-based design compared to conventional PSO-based design.
机译:最近已经探索了蚁狮启发算法(ALIA),以开发一种针对分布式优化问题的新颖算法。在本文中,针对径向配电系统提出了基于ALIA的分布式发电系统(DGS)设计,以减轻电压不稳定性并减少系统功率损耗。 IEEE 33总线测试系统被认为可以完成这项研究。 ALIA通过最小化候选多目标函数来搜索DGS的最佳大小和位置。所提出的方法的性能已与经典粒子群优化(PSO)优化的系统进行了比较,以证明基于ALIA的设计具有出色的效率。提议的方法的独特优势意味着可以完成以下任务;向前/向后扫描方法,电压稳定指数计算,优化DGS的尺寸,位置和功率因数的潮流解决方案。与传统的基于PSO的设计相比,仿真结果强调使用基于ALIA的设计来最小化系统损耗并改善电压曲线。

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