光伏供电PMDC电机驱动的新型控制策略

A. Sharaf, E. Elbakush, I. Altas
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引用次数: 16

摘要

本文提出了一种新的PID双环控制器,用于太阳能光伏(PV)供电的工业型永磁直流(PMDC)电机驱动,该控制器的建模包括电机中存在的非线性加上负载惯性(J)和粘性摩擦(B)。所提出的双环包括速度控制作为主导控制环,辅助电机限流环作为辅助调节环,以限制过大电流和突然电流漂移。采用替代控制方法,以确保能源效率,稳定性和系统可靠性,同时保持操作灵活性。采用B型DC-DC斩波器控制从光伏光伏阵列到PMDC电机的功率传输。在Matlab/Simulink GUI环境中对不同动态控制器的性能进行了仿真和验证。利用Matlab/Simulink/Sim-Power模型块库对光伏阵列、DC-DC斩波器、PMDC电机、接口滤波器和控制器的仿真模型进行建模。
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Novel Control Strategies For Photovoltaic Powered PMDC Motor Drives
This paper presents a novel PID dual loop controller for a solar photovoltaic (PV) powered industrial type permanent magnet DC (PMDC) motor drive, which is modeled to include existing nonlinearities in motor plus load inertia (J) and viscous friction (B). The proposed dual loop includes a speed control as the dominant control loop and a supplementary motor current limiting loop as an auxiliary regulating loop to limit excessive high current and sudden current excursions. Alternative control approaches are used to ensure energy efficiency, stability and system reliability while maintaining operation flexibility. A type B DC-DC chopper is employed to control the power transferred from photovoltaic PV array to the PMDC motor. The performance of different dynamic controllers are simulated and validated in Matlab/Simulink GUI environment. All simulation models of PV array, DC-DC chopper, PMDC motor, interface filters, and the controllers are modelled using Matlab/Simulink/Sim-Power model block library.
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