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Methods for Controlling a Wind Turbine System With a Continuously Variable Transmission in Region 2

机译:在区域2中控制具有无级变速器的风力涡轮机系统的方法

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Variable speed operation enables wind turbine systems to increase their aerodynamic efficiency and reduce fatigue loads. An alternative to the current electrically based variable speed technologies is the continuously variable transmission (CVT). A CVT is a transmission whose gear ratio can be adjusted to take on an infinite number of settings within the range between its upper and lower limits. CVT research in wind turbine applications predicts an improvement in output power and torque loads compared with fixed-speed machines. Also, a reduction in the harmonic content of the currents is anticipated by eliminating the power electronics. This paper develops a model that combines a CVT model with the fast wind turbine simulator for simulating the system's performance in MATLAB/SIMULINK. This model is useful for control development for a variable-speed wind turbine using a CVT. The wind turbine with CVT is simulated using two controllers: a proportional-integral controller and a nonlinear torque controller of the type commonly used in the wind industry.
机译:变速运行使风力涡轮机系统能够提高其空气动力学效率并减少疲劳负荷。当前基于电气的变速技术的替代方法是无级变速器(CVT)。 CVT是一种变速箱,其传动比可以调节为在其上限和下限之间的范围内进行无数次设置。风力涡轮机应用中的CVT研究预测,与定速电机相比,其输出功率和扭矩负载将有所改善。而且,通过消除功率电子器件,可以预期降低电流的谐波含量。本文开发了一个模型,该模型将CVT模型与快速风力涡轮机模拟器结合在一起,以在MATLAB / SIMULINK中模拟系统的性能。该模型对于使用CVT的变速风力涡轮机的控制开发很有用。使用两个控制器对带有CVT的风力发电机进行仿真:比例积分控制器和风力行业中常用的非线性转矩控制器。

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