Charging and Discharging of Battery in a PV System using Fuzzy Logic Controller

Atul Nayan, O. P. Rahi
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引用次数: 1

Abstract

Microgrids are the major component of the future smart grid, as these open up new possibilities for aggregating loads and sources. As a result, it is considered to be the next-generation power system arrangement, capable of operating in both standalone and grid-connected modes. This work describes a novel fuzzy logic controller for controlling the charging and discharging of a PV battery storage system. The battery is charged and discharged based on the power difference between generation and demand. There are numerous strategies for controlling the performance of battery, however these controlling techniques have issues in terms of limiting overcharging, complexity in control and slow charging. The paper compares the performance of battery, simulated in MATLAB Simulink using PID controller and fuzzy logic controller. A fuzzy logic controller is less complex to design and provides fast charging.
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利用模糊逻辑控制器为光伏系统中的电池充电和放电
微电网是未来智能电网的主要组成部分,因为微电网为聚集负载和电源提供了新的可能性。因此,微电网被认为是下一代电力系统安排,能够以独立和并网模式运行。本作品介绍了一种新型模糊逻辑控制器,用于控制光伏电池储能系统的充放电。电池的充放电基于发电量和需求量之间的功率差。控制蓄电池性能的策略有很多,但这些控制技术都存在限制过充、控制复杂和充电缓慢等问题。本文比较了使用 PID 控制器和模糊逻辑控制器在 MATLAB Simulink 中模拟的电池性能。模糊逻辑控制器的设计不太复杂,而且充电速度快。
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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