利用升压转换器的光伏驱动SR电机驱动灌溉泵的设计

A. Mishra, Bhim Singh
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引用次数: 7

摘要

本文介绍了一种利用开关磁阻电机(SRM)设计的经济高效的太阳能灌溉泵。它利用一个简单的DC-DC升压转换器作为SPV阵列和电机驱动器之间的功率调节级。升压变换器的两个主要功能是控制太阳能光伏(SPV)阵列在最大功率点(MPP)的输出功率和促进SRM驱动器的软启动。4相SRM驱动器的使用最大限度地减少了转矩脉动,增加了冲程的数量,而不增加转子极的数量。中点变换器中用于激励SRM相位的低数量开关进一步提高了系统的性能。利用分路电容变换器的脉宽调制(PWM)开关控制电机的速度,消除了在电机上附加传感器控制电机速度的要求。在MATLAB/Simulink平台上对所提出的水泵系统进行了设计、建模和性能仿真,分析了其在不同环境条件下的响应,验证了其作为灌溉水泵的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of PV powered SR motor driven irrigation pumps utilizing boost converter
This paper presents the design of a cost-effective and efficient solar powered irrigation pump utilizing a switched reluctance motor (SRM). It utilizes a simple DC-DC boost converter as a power conditioning stage between SPV array and the motor drive. The control of solar photovoltaic (SPV) array output power at maximum power point (MPP) and facilitating the soft-starting to the SRM drive, are two prime functions of the boost converter. The use of a 4-phase SRM drive minimizes the torque ripple and increases the number of strokes without incrementing the number of rotor poles. The low number of switches in a mid-point converter used to energize SRM phases further enhances the performance of the system. The speed control of the motor using the pulse width modulation (PWM) switching of split-capacitor converter eliminates the requirement of additional sensors on the motor to control its speed. The proposed water pumping system is designed, modeled and its performance is simulated on MATLAB/Simulink platform and its responses are analyzed, under the varying environmental conditions, which authenticate its appropriateness as an irrigation pump.
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