Distributed MPP Tracking of PV through Buck Converter Using Fuzzy

Chandani Sharma, Anamika Jain
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引用次数: 5

Abstract

Photovoltaics (PV) are the most abundant, perennial, environment friendly and distributed source of energy all over the globe. In this paper, the method to increase PV extraction efficiency for 60W panel with improved DMPP (Distributed Maximum Power Point) even on changing temperature and irradiance have been mapped and discussed. In order to achieve this, the components and subsystems have been analyzed and validated. The validated models are used to maximize the power output using two different models of DC-DC Converters in MATLAB/SIMULINK environment. Closed loop Buck converter using state space nonlinear differential equations and direct component model are compared to reveal best results at Standard Test Conditions (STC). MPPT model developed can be used for obtaining maximum power output from PV even in partial presence of sun using Fuzzy Logic Controller. The Controller designed tracks highest power output for the buck converter. The model developed, using tested membership functions in FLC, can serve a platform for various real time applications using PV.
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基于模糊的Buck变换器光伏分布式MPP跟踪
光伏(PV)是全球最丰富、多年生、环境友好和分布式的能源。本文对60W太阳能板在温度和辐照度变化的情况下,提高分布式最大功率点(DMPP)提取效率的方法进行了探讨。为了实现这一目标,对组件和子系统进行了分析和验证。在MATLAB/SIMULINK环境下,利用验证的模型对两种不同型号的DC-DC变换器进行功率输出最大化。采用状态空间非线性微分方程和直接分量模型的闭环降压变换器在标准测试条件下的效果最好。所开发的MPPT模型可以利用模糊逻辑控制器在部分有太阳的情况下获得PV的最大功率输出。设计的控制器跟踪降压变换器的最高输出功率。利用FLC中经过测试的隶属函数开发的模型可以为使用PV的各种实时应用提供平台。
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