农田灌溉太阳能水泵优化设计

G. Haase, G. Kirakossian, Gagik H. Kirakosyan, Vazgen A. Mkrtchyan
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引用次数: 0

摘要

介绍了一种用于农村供水的独立太阳能抽水站的设计研究。它包括对系统组件及其建模的研究。所述太阳能水泵站包括太阳能电池板、DC/DC降压变换器、驱动离心泵的直流电机和蓄水池。为了优化耦合离心泵的驱动速度和排水量,提出了基于模糊的最大功率点跟踪算法。这些使用dN/I, d(dN/dI)使用参数,以及填充因子∆α的变化作为输入变量。该方案基于对变流器填充系数的模糊调整,可在线适应太阳能电池板的负载阻抗。仿真结果表明了该驱动系统在瞬态和稳态工况下的有效性。因此,将该模糊逻辑程序作为此类太阳能抽水站的标准优化算法是合适的。在MATLAB/Simulink中进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing optimal solar water pumping stations for irrigation of agricultural lands
An investigation into the design of a stand-alone solar water pumping station for supplying rural areas is presented. It includes a study of system components and their modeling. The solar water pumping station comprises a solar panel, DC/DC buck converter, DC motor driving a centrifugal pump, and a reservoir. The fuzzy-based maximum power point tracker is developed to optimize the drive speed and the water discharge rate of the coupled centrifugal pump. These use dN/I, d(dN/dI) use parameters, and a variation of the fill factor∆α as input variables. The proposed solution is based on a judicious fuzzy adjustment of a converter fill factor, which adapts online the load impedance to the solar panel. The simulation results show the effectiveness of the drive system for both transient and steady-state operations. Hence, it is suitable to use this fuzzy logic procedure as a standard optimization algorithm for such solar water pumping stations. The modeling is carried out in MATLAB/Simulink.
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