Power capture optimization of a wind energy conversion system using a backstepping integral sliding mode control

F. Lamzouri, El-mahjoub Boufounas, A. El Amrani
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引用次数: 1

Abstract

In this paper, a nonlinear robust controller is designed for a variable speed wind turbine (VSWT). The main objective of the controller is to maximize the captured wind energy with reduced oscillations on the drive train. At below rated wind speed, the control input is the generator torque that depends on the reference rated speed which is derived from the effective wind speed. Furthermore, the uncertainties and external disturbances is the main design problem of controller. In order to overcome this problem, Backstepping integral Sliding Mode Control approach (BISMC) is proposed in this study; the control performance of BISMC was compared with Integral Sliding Mode Control (ISMC) through different wind speed profiles. Compared to the existing controllers, the effectiveness of the proposed controller is shown with simulations.
基于反步积分滑模控制的风能转换系统能量捕获优化
针对变速风力发电机组,设计了一种非线性鲁棒控制器。控制器的主要目标是在减少传动系统振荡的情况下最大限度地捕获风能。在低于额定风速时,控制输入是发电机转矩,该转矩取决于由有效风速导出的参考额定风速。此外,不确定性和外部干扰是控制器设计的主要问题。为了克服这一问题,本研究提出了反步积分滑模控制方法(BISMC);通过不同的风速廓线,比较了BISMC与积分滑模控制(ISMC)的控制性能。通过与现有控制器的比较,仿真结果表明了所提控制器的有效性。
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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