An Improved Quadratic V/f-Based Control of Photovoltaic Battery-Less Induction Motor Driven Water Pumping System

Neama Yussif, A. Abdel-Khalik, Abdelfatah M. Mohamed
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引用次数: 2

Abstract

This paper proposes a new quadratic V/f-based control of a PV induction motor driven water pumping system without storage batteries. The system consists of PV array, DC-DC boost converter, voltage source inverter (VSI), induction motor, and water pump. In order to extract the maximum power from the PV array, the incremental conductance (INC) method is simply utilized. The dc-link voltage is maintained constant using a proportional-integral (PI) controller by controlling the induction motor speed using simple open loop quadratic scalar V/f control. The proposed quadratic scalar V/f control is compared with the widely used linear V/f control using a simulation case study based on MATLAB/SIMULINK . The performance of the proposed method is examined under variable values of solar radiation. When compared with the available scalar controllers, the proposed controller generally improves the system dynamics as well as the overall system efficiency especially under low speed (low discharge) operation. The simulation results have proved that the system output power and the corresponding overall efficiency have been approximately doubled under low speed operation.
一种改进的基于二次V/f的光伏无电池感应电机驱动水泵系统控制
提出了一种新的基于二次V/f的无蓄电池光伏感应电机驱动抽水系统控制方法。该系统由光伏阵列、DC-DC升压变换器、电压源逆变器(VSI)、感应电机和水泵组成。为了从光伏阵列中提取最大功率,简单地使用增量电导法(INC)。通过简单的开环二次标量V/f控制来控制感应电机的速度,使用比例积分(PI)控制器来保持直流电压恒定。通过基于MATLAB/SIMULINK的仿真案例研究,将所提出的二次标量V/f控制与广泛使用的线性V/f控制进行了比较。在变太阳辐射值条件下,检验了该方法的性能。与现有的标量控制器相比,所提出的控制器总体上提高了系统的动力学性能和系统的整体效率,特别是在低速(低放电)运行时。仿真结果表明,在低速运行下,系统输出功率和相应的总效率提高了近一倍。
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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