Coordinated PSO-ANFIS-Based 2 MPPT Control of Microgrid with Solar Photovoltaic and Battery Energy Storage System

Siddaraj SIddaraj, U. Yaragatti, Nagendrappa Harischandrappa
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Abstract

The microgrid is a group of smaller renewable energy sources (REs), which act in a coordinated manner to provide the required amount of active power and additional services when required. This article proposes coordinated power management for a microgrid with the integration of solar PV plants with maximum power point tracking (MPPT) to enhance power generation and conversion using a hybrid MPPT method based on particle swarm optimization-adaptive neuro-fuzzy inference system (PSO-ANFIS) to acquire rapid and maximum PV power along with battery energy storage control to maintain the stable voltage and frequency (V-f) of an isolated microgrid. In addition, it is proposed to provide active and reactive power (P-Q) regulation for the grid connected. The approach used provides more regulation due to the least root mean square error (RMSE), which improves photovoltaic (PV) potential extraction. The comparison results of the PSO-ANFIS and P&O controllers of the MPPT and the controller of the energy storage devices combined with the V-f (or P-Q) controller of the inverter all show effective coordination between the control systems. This is the most important need for contemporary microgrids, considering the potential of changing irradiance in the grid following mode, the grid forming mode under an island scenario, and back-to-grid synchronization. With the test model, the islanded and grid-islanded-grid connected modes are investigated separately. The results demonstrate conclusively that the proposed strategies are effective. To run the simulations, MATLAB and SimPowerSystems are utilized.
基于pso - anfiss的太阳能光伏-电池储能微电网2 MPPT协调控制
微电网是一组较小的可再生能源(REs),它们以协调的方式提供所需的有功功率和必要时的额外服务。本文提出了太阳能光伏电站与最大功率点跟踪(MPPT)相结合的微电网协调电源管理,以增强发电和转换能力,采用基于粒子群优化-自适应神经模糊推理系统(PSO-ANFIS)的混合最大功率点跟踪方法获得快速和最大的光伏电力,并通过电池储能控制来保持孤立微电网的稳定电压和频率(V-f)。此外,还提出了对并网的有功和无功功率(P-Q)进行调节。由于最小的均方根误差(RMSE),该方法提供了更多的调节,从而改善了光伏(PV)电位的提取。MPPT的PSO-ANFIS和P&O控制器与储能装置的控制器结合逆变器的V-f(或P-Q)控制器的比较结果都显示了控制系统之间的有效协调。这是当代微电网最重要的需求,考虑到在电网跟随模式、孤岛情景下的电网形成模式和回电网同步中改变辐照度的潜力。利用试验模型,分别研究了孤岛模式和网岛-网岛连接模式。结果表明,所提出的策略是有效的。利用MATLAB和SimPowerSystems进行仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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