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Design and Performance Analysis of a Photovoltaic Water Pumping System based on DC-DC Boost Converter and BLDC Motor

机译:基于DC-DC Boost变换器和BLDC电机的光伏水泵系统的设计与性能分析

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This paper presents the modeling, control and optimization of a photovoltaic water pumping system. The system consists of a DC-DC Boost converter, which is used as a link between a Solar Photovoltaic (SPV) panels and the three-phase inverter (VSI) to feed the BLDC motor. A centrifugal pump is connected to this motor in order to use the water pumped afterwards to multiple applications. Maximum Power Point Tracking (MPPT) control techniques are an essential part of improving the efficiency of photovoltaic (PV) systems. It is principally used to extract maximum possible power of the PV modules under any condition of solar irradiation. For this reason, P&O algorithm is used due to its high performance and its simplicity of implementation. The DC-DC Boost converter, compared to the various common DC-DC converters (Buck, Buck-Boost, SEPIC, Cuk…) has many benefits in SPV based applications, such as limiting the starting current of the motors. Using a BLDC motor is found to be the best option because of its high efficiency and reliability, better performance, and requires low maintenance. The considered system as well as the control strategies has been implemented in MATLAB-Simulink environment. The results show the effectiveness of the studied photovoltaic water pumping system.
机译:本文介绍了光伏水泵系统的建模,控制和优化。该系统由一个DC-DC Boost转换器组成,该转换器用作太阳能光伏(SPV)面板和三相逆变器(VSI)之间的链接,以为BLDC电机供电。离心泵连接到该电动机,以便将随后泵送的水用于多种应用。最大功率点跟踪(MPPT)控制技术是提高光伏(PV)系统效率的重要组成部分。它主要用于在任何太阳辐射条件下提取光伏组件的最大可能功率。因此,由于P&O算法的高性能和实现的简单性而被使用。与各种常见的DC-DC转换器(Buck,Buck-Boost,SEPIC,Cuk…)相比,DC-DC Boost转换器在基于SPV的应用中具有许多优势,例如限制电动机的启动电流。人们发现使用BLDC电机是最佳选择,因为它具有高效率和可靠性,更好的性能并且需要较少的维护。所考虑的系统以及控制策略已在MATLAB-Simulink环境中实现。结果表明了所研究的光伏水泵系统的有效性。

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