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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Simulation algorithm and validation of a photovoltaic water pumping system model using long-term field data
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Simulation algorithm and validation of a photovoltaic water pumping system model using long-term field data

机译:利用长期现场数据的光伏水泵系统模型仿真算法与验证

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摘要

A photovoltaic (PV) water pumping system has been modelled using TRNSYS considering a power supply, a direct current (DC)/alternating current (AC) inverter, an AC induction motor, a centrifugal pump, a well, a water storage tank, and an overflow protection device. The model emulates actual pumping head curves, uses numerical methods to determine pump-system working points, and includes a storage tank as a component in the system. It simulates PV-powered water pumping systems, constant voltage tracking, voltage frequency modulation, and maximum power point tracking algorithms; variable inverter frequency with variable motor efficiency, variable inverter frequency with constant motor efficiency, and constant inverter frequency with variable motor efficiency algorithms. It also has the facility to calculate the accumulated unused part of the PV energy owing to the pump reaching its maximum capacity limit. Model validation was accomplished by comparing simulated results with both the laboratory measurements and long-term field data from Jordan; good match and accuracy have been achieved.
机译:使用TRNSYS对光伏(PV)水泵系统进行了建模,其中考虑了电源,直流(DC)/交流(AC)逆变器,交流感应电动机,离心泵,井,储水箱和溢出保护装置。该模型模拟实际的扬程曲线,使用数值方法确定泵系统的工作点,并在系统中包括一个储罐。它模拟了光伏驱动的水泵系统,恒定电压跟踪,电压频率调制和最大功率点跟踪算法;具有可变电动机效率的可变变频器频率,具有恒定电动机效率的可变变频器频率和具有可变电动机效率算法的恒定变频器频率。由于泵达到其最大容量极限,它还具有计算PV能量的累积未使用部分的功能。通过将模拟结果与实验室测量值和约旦的长期现场数据进行比较,完成了模型验证。达到了良好的匹配度和准确性。

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