Linear Parameter Varying Control of Wind Energy Conversion Systems in Partial Load

Jing Xu, Qing Sun
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Abstract

This paper is dealt with the rotor speed tracking problem of variable-speed wind turbine systems operating under the partial load condition. Singular perturbation techniques are used to characterize the two-time-scale property of the wind turbine system, and a linear parameter varying (LPV) model is formed to approximate nonlinear behaviours of a wind turbine system. Based on the slow-fast decomposition method, slow and fast subsystems are constructed: one for the mechanical dynamics and the other for the electrical dynamics. Slow and fast controls are derived, respectively, and then a local state feedback controller, sum of the slow and fast control, is formulated. A design procedure, using the linear parameter varying control to combine local controllers, is proposed to guarantee the robustness of the closed-loop nonlinear wind turbine system. Numerical examples are given to show the validity of the proposed control scheme.
部分负荷下风能转换系统的线性参数变化控制
研究了变转速风力发电系统在部分负荷工况下的转子转速跟踪问题。利用奇异摄动技术表征风力发电机组系统的双时间尺度特性,建立线性变参数模型来近似风力发电机组系统的非线性行为。基于慢-快分解方法,分别构建了机械动力学和电动力学的慢-快子系统。分别推导出慢速控制和快速控制,然后构造出一个局部状态反馈控制器,即慢速控制和快速控制的总和。为了保证非线性风力发电机组闭环系统的鲁棒性,提出了一种采用线性变参数控制与局部控制器相结合的设计方法。数值算例表明了所提控制方案的有效性。
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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