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Whales Optimization Algorithm Based Enhanced Power Controller for an Autonomous Microgrid System

机译:基于鲸鱼优化算法的自主微电网基于增强功率控制器

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This This paper proposes a study of optimal power controller based on Whales Optimization Algorithm (WOA) for PI controller tuning in an autonomous microgrid system (MGS). The MGS is based on multiple distributed generation (DG) connected with 120 kV power grid. The proposed controller with four different configurations i.e. controller without optimization, PSO, GWO, and WOA tuned controller will be validated to control and enhance the flow of active and reactive power between MGS and power grid grid-connected mode and during load variation. The simulation results show that MGS is supplying optimal power to utility grid also maintaining sinusoidal voltage and current supply with minimum THD levels. Further, results show that the WOA based controller optimizes the control parameters achieves the 38.46% and 75% better results in terms of active and reactive regulation and sharing, respectively. For modelling of proposed system and applying of optimization techniques, Matlab/Simulink and m/file have been used respectively. The proposed controller performs intelligently while sharing the load power between MGS and utility system.
机译:本文提出了基于鲸鱼优化算法(WOA)在自主微电网系统(MGS)中的PI控制器调谐的最佳功率控制器研究。 MGS基于与120kV电网连接的多个分布式生成(DG)。具有四种不同配置的提出的控制器,I.控制器,无需优化,PSO,GWO和WOA调谐控制器将被验证,以控制和增强MGS和电网连接模式和负载变化期间的主动和无功功率的流量。仿真结果表明,MGS为实用电网提供最佳功率,也能够以最小的THD水平维持正弦电压和电流供应。此外,结果表明,基于WOA的控制器优化了控制参数,分别在主动和反应调节和共享方面获得了38.46%和75%的结果。对于建议的系统和应用优化技术的建模,分别使用了MATLAB / SIMULINK和M /文件。建议的控制器在分享MGS和公用事业系统之间的负载电源时智能地执行。

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