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MODELING AND CONTROL OF AN INFINITELY VARIABLE SPEED CONVERTER WITH APPLICATION TO WIND TURBINES

机译:无限变速变频器的建模与控制及其在风力发电机组中的应用

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Traditional transmission in wind turbine applications has a constant output-to-input speed ratio, which needs a power converter to regulate the current frequency that can be fed into the grid. Different types of continuously variable transmission (CVT) have been developed for vehicle and wind turbine applications, which can generate constant-frequency current without using a power converter in a wind turbine. An infinitely variable speed converter (IVSC) is a specific type of CVT that can achieve a zero speed ratio and transmit a large torque at a low speed ratio. An IVSC with drivers that convert an eccentric motion of cams to a concentric motion of the output shaft through one-way bearings is introduced, and an active control system with a combined feedback and feed forward control that can automatically adjust the eccentricity of the outer cams to control the speed ratio of the transmission is developed. The kinematic model of the IVSC is derived and fitted by a polynomial function to serve as the feed forward function in the control law. The feedback control is used to reduce the system error. A dynamic model of the IVSC is derived to investigate the effect of the dynamic load on the input and output speeds. Static and dynamic tests were conducted to validate the kinematic model of the IVSC. The variation of the average output speed per revolution of the output shaft is 0.56% with respect to the desired output speed in the simulation and 0.91% in the experiments.
机译:风力涡轮机应用中的传统变速箱具有恒定的输出到输入速度比,这需要功率转换器来调节可馈入电网的电流频率。已经针对车辆和风力涡轮机应用开发了不同类型的无级变速器(CVT),其可以产生恒定频率的电流而无需在风力涡轮机中使用功率转换器。无限变速转换器(IVSC)是一种特殊的CVT,可以实现零速比并以低速比传递大扭矩。引入了具有驱动器的IVSC,该驱动器通过单向轴承将凸轮的偏心运动转换为输出轴的同心运动,并且提供了一种主动控制系统,该系统具有反馈和前馈控制的组合,可以自动调节外凸轮的偏心率控制变速箱的速比被开发出来。 IVSC的运动学模型由多项式函数推导并拟合,以用作控制律中的前馈函数。反馈控制用于减少系统错误。推导了IVSC的动态模型,以研究动态负载对输入和输出速度的影响。进行了静态和动态测试,以验证IVSC的运动学模型。在仿真中,输出轴每转的平均输出速度相对于所需输出速度的变化为0.56%,在实验中为0.91%。

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