变速风力发电机组快速终端积分协同控制

S. Rajendran, M. Díaz, José Raúl Rodríguez Rodríguez
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引用次数: 1

摘要

本文的工作重点是设计一种非线性控制器,以最大限度地提取风能,同时对变速风力发电机的传动系统施加最小的应力。采用双质量模型对风力机进行建模。它可以处理气动非线性和结构柔性。最初,采用传统的滑模控制器。然而,这些控制器在传动系统和控制输入上有高振荡。为克服上述问题,提出了快速终端协同控制、快速积分协同控制和带风估计器的快速终端积分协同控制。首先,采用数学模型对控制器进行测试,然后使用600 kW的疲劳、空气动力学、结构和湍流模型对现有和提出的控制方案进行验证。对比分析表明,快速终端积分协同控制提高了暂态负荷降低的电力捕获能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast Terminal Integral Synergetic Control for Variable Speed Wind Turbine
This work focuses on designing a nonlinear controller for maximum wind energy extraction with minimum stress on the drive train for variable speed wind turbines. A two-mass model is utilized for modeling the wind turbine. It can deal with aerodynamic nonlinearities and structural flexibility. Initially, conventional sliding mode controllers are adapted. However, these controllers have high oscillations on the drive train and control input. Further, to overcome the above issues, a fast terminal synergetic control, fast integral synergetic control, and fast terminal integral synergetic control with a wind estimator are proposed. Initially, a mathematical model was employed to test the controllers, and then a Fatigue, aerodynamics, structures, and turbulence 600 kW model was used to validate the existing and proposed control schemes. A comparative analysis has been conducted, and the results conclude that the fast terminal integral synergetic control improves the power capture with transient load reduction.
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