Performance comparison of variable speed PMSG-based wind energy conversion system control algorithms

B. Housseini, A. F. Okou, R. Beguenane
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引用次数: 6

Abstract

This paper presents a comparative analysis of three control algorithms for a wind turbine generator using a variable speed permanent magnet synchronous generator (PMSG). The design methodologies of the conventional PI-based controller, the Taylor series expansion linear approximation based (TSLA-based) controller and the feedback linearization based (FL-based) nonlinear controller are provided. The objective is to keep the wind turbine operating at its optimum rotor speed (MPPT control), while insuring the power transfer from the turbine to the generator, regardless of the wind speed. The controller gains of the nonlinear controller are determined via Linear Quadratic Optimal Control (LQOC) approach. The results show a better control performance for the nonlinear controller. This performance is characterized by fast and smooth transient responses as well as a zero steady state error and reference tracking quality.
基于pmsg的变速风能转换系统控制算法的性能比较
本文对采用变速永磁同步发电机的风力发电机组的三种控制算法进行了比较分析。给出了基于传统pi的控制器、基于泰勒级数展开线性逼近的控制器和基于反馈线性化的非线性控制器的设计方法。目标是保持风力涡轮机在其最佳转子转速(MPPT控制)下运行,同时确保从涡轮机到发电机的功率传输,无论风速如何。采用线性二次最优控制(LQOC)方法确定非线性控制器的增益。结果表明,该非线性控制器具有较好的控制性能。这种性能的特点是快速和平稳的瞬态响应,以及零稳态误差和参考跟踪质量。
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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