Design of Fuzzy Logic based Maximum Power Point Tracking controller for solar array for cloudy weather conditions

R. Mahalakshmi, Kumar A. Aswin, A. Kumar
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引用次数: 36

Abstract

This paper proposes Maximum Power Point Tracking (MPPT) of a photovoltaic system under variable temperature and solar radiation conditions using Fuzzy Logic Algorithm. The cost of electricity from the PV array is more expensive than the electricity from the other non- renewable sources. So, it is necessary to operate the PV system at maximum efficiency by tracking its maximum power point at any weather conditions [1]. Boost converter increases output voltage of the solar panel and converter output voltage depends upon the duty cycle of the MOSFET present in the boost converter. The change in the duty cycle is done by Fuzzy logic controller by sensing the power output of the solar panel. The proposed controller is aimed at adjusting the duty cycle of the DC-DC converter switch to track the maximum power of a solar cell array. MATLAB/Simulink is used to develop and design the PV array system equipped with the proposed MPPT controller using fuzzy logic [2][3]. The results show that the proposed controller is able to track the MPP in a shorter time with less fluctuation. The complete hardware setup with fuzzy logic controller is implemented and the results are observed and compared with the system without MPPT (Fuzzy logic controller).
基于模糊逻辑的多云太阳能电池阵最大功率跟踪控制器设计
提出了利用模糊逻辑算法实现变温度、变太阳辐射条件下光伏系统的最大功率点跟踪。光伏阵列发电的成本比其他不可再生能源发电的成本要高。因此,有必要在任何天气条件下,通过跟踪光伏系统的最大功率点,使光伏系统以最大效率运行[1]。升压变换器增加太阳能电池板的输出电压,变换器的输出电压取决于升压变换器中存在的MOSFET的占空比。在占空比的变化是由模糊控制器通过传感太阳能电池板的输出功率来完成的。所提出的控制器旨在调节DC-DC变换器开关的占空比以跟踪太阳能电池阵列的最大功率。利用MATLAB/Simulink运用模糊逻辑对安装所提出的MPPT控制器的光伏阵列系统进行开发和设计[2][3]。结果表明,该控制器能够在较短的时间内以较小的波动跟踪MPP。实现了带有模糊控制器的完整硬件设置,并与不带模糊控制器的系统进行了对比。
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