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Power Flow Modelling in a Planetary Speed Increaser for Wind Turbines with Counter-rotating Electric Generator

机译:具有反旋转发电机的风力涡轮机的行星速度换电器电流模型

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The paper presents the kinematic and static modelling of a planetary speed increaser with one input and two outputs and a closed power loop, which is required in establishing the power flow transmitted by the increaser from a wind rotor to a counter-rotating electric generator (with mobile rotor and mobile stator), during operation at constant input power. The modelling algorithm starts in the first stage by establishing the block scheme for the connection of the component gears, two bevel gear pairs and a spur planetary gear set, and the kinematic and static correlations specific to the component mechanisms, and the inner and outer links of the speed increaser. The planetary speed increaser transmission functions are set up analytically in stage II of the kinematic modelling, followed by the determination of the relations for the transmission efficiency and torques on each power branch (stage III). In the second part of the paper a relevant numerical case is presented, which highlights the influence of the kinematic ratios of the bevel gear pairs on the amplification ratios and efficiencies, as well as the power flow through the planetary transmission. The results are useful to wind turbine designers and developers in the process of functional and constructive optimization of wind system solutions with a counter-rotating electric generator.
机译:本文介绍了一个输入和两个输出的行星速度更高的运动和静态建模,以及两个输出和闭合电源回路,这是在建立由向上移动到反向旋转发电机的电流传输的功率流(用)移动转子和移动定子),在恒定输入功率下操作期间。建模算法通过建立用于连接组件齿轮,两个锥齿轮对和喷射行星齿轮组的连接方案,以及特定于部件机构的运动和静态相关性,以及内部链路的运动和静态相关性,从第一阶段开始速度较大。在运动学建模的II阶段分析地建立了行星速度更高的传输功能,然后确定了每个功率分支上的传输效率和扭矩的关系(阶段III)。在纸张的第二部分中,提出了相关的数值案例,其突出了斜面齿轮对运动比对放大比率和效率的影响,以及通过行星传输的功率流动。在具有反向旋转发电机的风系统解决方案的功能和建设优化过程中,这些结果对于风力涡轮机设计者和开发人员有用。

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