Robust Integral Backstepping control for Optimal Power Extraction of a PMSG-based Variable Speed Wind Turbines

Mohamed Makhad, M. Zazi, Azeddine Loulijat, Adekanle Oluwaseun Simon
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引用次数: 1

Abstract

This paper investigates a robust control strategy for optimizing the maximum power captured in Wind Energy Conversion Systems (WECS) based on permanent magnet synchronous generators (PMSG) with variable speed. To track the maximum power point (MPP), the rotational speed of the PMSG is controlled via the machine side converter (MSC). In order to achieve the maximum power point (MPPT) the machine side converter regulates the rotational speed of the PMSG to track the optimal speed delivered by MPPT block. To improve the performances of the generator side, the integral backstepping control approach (IBC) has been designed for MSC converter. Finally, to evaluate the effectiveness of the proposed strategy, a comparative study has been carried out between the IBC controller and Sliding Mode control (SMC) by simulation.
基于pmsg的变速风力发电机组最优功率提取鲁棒积分反演控制
研究了基于永磁同步发电机(PMSG)的变速风能转换系统(WECS)最大功率优化的鲁棒控制策略。为了跟踪最大功率点(MPP), PMSG的转速通过机器侧转换器(MSC)控制。为了实现最大功率点(MPPT),机侧变换器调节PMSG的转速,跟踪MPPT块输出的最优速度。为了提高发电机侧的性能,设计了MSC变换器的积分反步控制方法(IBC)。最后,为了评估所提出策略的有效性,通过仿真对IBC控制器和滑模控制(SMC)进行了比较研究。
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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