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Optimised V-F Controller for PV-Based Microgrid

机译:针对基于光伏的微电网的优化V-F控制器

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This paper focuses on designing an optimal controller for the microgrid which is based on PV based microgrid along with battery. PQ control mode is normally employed in grid connected mode but in islanded mode V-f control is highly desired to maintain V and f constant. Occurrence of transient disturbances is needed to be controlled by controlling parameters which are sensitive. For controlling both the powers of the system the P-I controller is used. As the nature of the system becomes highly complex and nonlinear it becomes difficult for optimally tuning up the PI gains. Evolutionary algorithm is one of the methods of optimization for solving the optimal problems. In the proposed work analysis of controlling active and reactive power is performed by fire fly algorithm and is utilized for tuning of P-I controllers gains. The efficacy of the tuned controller is verified under islanding conditions with different loading conditions. The study of simulations is done in MATLAB and Simulink environment.
机译:本文着重设计一种基于光伏微电网和电池的微电网最优控制器。 PQ控制模式通常在并网模式下使用,但在孤岛模式下,非常需要V-f控制以保持V和f恒定。需要通过控制敏感参数来控制瞬态干扰的发生。为了控制系统的两种电源,使用了P-I控制器。由于系统的性质变得高度复杂和非线性,因此很难最佳地调节PI增益。进化算法是解决最优问题的一种优化方法。在提出的工作中,通过萤火虫算法执行控制有功和无功功率的分析,并用于调整P-I控制器的增益。在不同负载条件下的孤岛条件下验证了调节控制器的有效性。仿真研究是在MATLAB和Simulink环境中完成的。

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