Design and Implementation of Automated PV Array Reconfiguration System

J. M. Infant, S. Parvathy
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Abstract

The solar photovoltaic water pumping system is one of the major essential renewable energy applications, especially in rural areas. This work aimed to design four modules PV array for a PV based water pumping system and to achieve greater output power on varying partial shading and irradiation condition. The four-modules PV array adjusts the electrical configuration of panel depends on the insolation observed by the solar panels and Fully and Partial Shaded Condition (PSC). In this work the Switching network, reconfigurable program and reconfigurable PV controller units are proposed for consistent process of reconfigurable solar PV array. The proposed controller unit is designed and simulated in Simulink software to calculate system operation and output power under changing irradiance and PSC. The small scale prototype is developed in order to validate the results. The outdoor test results and its analysis shows the reconfigurable PV array is able to deliver maximum output on varying operating conditions. Maximum 53.87% percentage of power and 52% percentage running time of pump can be increased by using this reconfiguration strategy.
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自动化光伏阵列重构系统的设计与实现
太阳能光伏抽水系统是可再生能源的重要应用之一,特别是在农村地区。本课题旨在为基于光伏的抽水系统设计四个模块光伏阵列,并在不同的部分遮阳和辐照条件下实现更大的输出功率。四模块光伏阵列根据太阳能电池板观察到的日照情况以及完全和部分遮阳条件(PSC)来调整面板的电气配置。为了实现可重构太阳能光伏阵列的一致性,本文提出了交换网络、可重构程序和可重构光伏控制器。利用Simulink软件对该控制器进行了设计和仿真,计算了辐照度和PSC变化情况下的系统运行情况和输出功率。为了验证结果,开发了小尺寸原型。室外测试结果及其分析表明,可重构光伏阵列能够在不同的运行条件下提供最大的输出。采用该改造策略,泵的最大功率可提高53.87%,运行时间可提高52%。
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