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A design methodology for selecting ratios for a variable ratio gearbox used in a wind turbine with active blades

机译:一种用于具有主动叶片的风力涡轮机中的变速比齿轮箱的速比选择设计方法

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This paper investigates the performance of a variable ratio gearbox (VRG) used in a small fixed-speed wind turbine with active blades. The major components of the VRG-enabled drivetrain are an automatic-manual gearbox and squirrel cage induction generator that connects directly to the grid. The simplicity of this system may be appealing for applications when cost and reliability are of concern. It is an alternative to variable speed systems, which necessitate a modified generator and power conditioning eqUipment. During partial load operation the VRG provides a discrete set of rotor speeds. This allows the controller to track the wind speed and to achieve a greater efficiency. This study suggests three VRG ratios are sufficient to improve performance when used with active blades. A case study is presented where the performance is simulated using three different wind data sets. The study suggests that the VRG can improve production between 7 and 8.5% in low wind areas. The design procedure also illustrates a technique for finding the lowest and highest gear ratios needed for VRG design. These ratios allow the system to achieve the lowest cut-in and rated speeds. The approach also has useful implications for the design of a continuously variable transmission. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了带有主动叶片的小型定速风力涡轮机中使用的变速比齿轮箱(VRG)的性能。支持VRG的传动系统的主要组件是自动手动变速箱和鼠笼感应发电机,它们直接连接到电网。当成本和可靠性受到关注时,该系统的简单性可能会吸引应用程序。它是变速系统的替代方案,变速系统需要改进的发电机和功率调节设备。在部分负荷运行期间,VRG提供一组离散的转子速度。这使控制器能够跟踪风速并实现更高的效率。这项研究表明,与主动刀片一起使用时,三个VRG比率足以改善性能。提出了一个案例研究,其中使用三个不同的风力数据集模拟了性能。研究表明,VRG可以在低风地区将产量提高7%至8.5%。设计过程还说明了一种用于寻找VRG设计所需的最低和最高传动比的技术。这些比率使系统达到最低切入速度和额定速度。该方法对无级变速器的设计也有有益的启示。 (C)2017 Elsevier Ltd.保留所有权利。

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