Modelling and simulation of PV based pumping system for maximum efficiency

G. Biji
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引用次数: 16

Abstract

The feasibility of using a solar photovoltaic array to drive water-pumping units for irrigation and drinking water in remote areas, where other sources of power are not available has been demonstrated. Solar energy, being very costly at present, is to be used very judiciously. Hence, it is very important that the SPV (Solar Photovoltaic) modules operate at its maximum power point all the time. As the insolation and temperature vary, the maximum power point of the SPV array also changes. Due to the relative high cost of solar cell, it is very important that maximum power is extracted out of the SCA to minimize the required size of the SCA and hence the cost of the pumping system. The modelling of maximum power point trackers (MPPTs) has become common to the control system of SPV water pumping systems by selecting the converter-chopping ratio of MPPT using ANN. The models are integrated by a simulation program MATLAB.
以PV为基础的抽水系统的建模和仿真,以获得最大的效率
在没有其他能源的偏远地区,使用太阳能光电阵列驱动抽水装置用于灌溉和饮用水的可行性已经得到证明。目前太阳能非常昂贵,因此必须谨慎使用。因此,SPV(太阳能光伏)模块始终在其最大功率点运行是非常重要的。随着日照和温度的变化,SPV阵列的最大功率点也会发生变化。由于太阳能电池的成本相对较高,从SCA中提取最大的功率以最小化SCA所需的尺寸以及泵送系统的成本是非常重要的。利用人工神经网络选择最大功率点跟踪器的变换器斩波比,对最大功率点跟踪器进行建模,已成为SPV水泵系统控制系统的常用方法。通过MATLAB仿真程序对模型进行集成。
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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