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Reaction wheel with HTS bearings for mini-satellite attitude control

机译:带HTS轴承的反作用轮,用于微型卫星姿态控制

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摘要

We have developed a small reaction wheel, designed to be lightweight, compact and energy efficient. The main innovation is the use of the HTS magnet's bearings that promise low friction so that high momentum storage can be achieved with high spin speed. The bearings consist of seeded growth superconducting discs arranged in rings located above and below the rotating levitated wheel containing ring-magnets embedded at the top and bottom. The reaction wheel is in the shape of a hollow stainless steel cylinder. A brushless dc motor is installed inside the hollow cylinder to provide the necessary torque to the reaction wheel. The maximum design spin speed is 15000 RPM to store 3.5 J s~(-1) of angular momentum. Spin-down test of the reaction wheel was performed in air. We have also measured the input power required to sustain rotational speed of the reaction wheel in air. Results from both of these measurements, when extrapolated to full speed in vacuum, indicate that power consumption, even accounting for the needs of the cooling system, is significantly smaller than that for state of the art commercial reaction wheels using mechanical ball bearings.
机译:我们已经开发出一种小型反作用轮,其设计轻巧,紧凑且节能。主要的创新之处在于使用了HTS磁铁轴承,该轴承具有低摩擦力,因此可以在高旋转速度下实现高动量存储。轴承由种子状生长超导圆盘组成,这些圆盘布置在位于悬浮在顶部和底部的环形磁铁的旋转悬浮轮上方和下方的环中。反作用轮为空心不锈钢圆柱体的形状。无刷直流电动机安装在空心圆柱体内,以向反作用轮提供必要的扭矩。最大设计旋转速度为15000 RPM,以存储3.5 J s〜(-1)的角动量。反作用轮的旋转测试在空气中进行。我们还测量了维持空气中反作用轮转速所需的输入功率。这两个测量的结果在外推至真空全速时均表明,即使考虑到冷却系统的需求,功耗也大大低于使用机械球轴承的现有商业反作用轮的功耗。

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