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The Key Technology of Large Telescope Tracking System Based on Integrated Super-low Speed Bearingless Motor

机译:集成超低速无轴承电机的大型望远镜跟踪系统关键技术

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With the continuous exploration of the universe and astronomy's development, the telescopes are bigger and bigger. Horizon structure is widely used in the modern large telescopes rack, which carries dozens, even thousands of tons of the rotary parts and demands high accuracy and good stability. Therefore, it is one of the key technologies for large telescope to develop the precision support technology integrated direct drive with large load, high stiffness, low friction , even frictionless. Magnetic suspension bearing has not only the advantage of non-contact, no friction, high rigidity, high precision, low power, low mechanical assembly requirements, but also is integrated with the driven torque motor, which simplifies the structure, reduces the cost. This paper explores one kind of active bias magnetic suspension bearing integrated with direct drive technology based on multidisciplinary design optimization (MDO), which provides a new choice and view for the modern large astronomical telescope tracking system.
机译:随着对宇宙的不断探索和天文学的发展,望远镜变得越来越大。 Horizo​​n结构广泛用于现代大型望远镜机架,该机架承载数十个,甚至数千吨的旋转零件,并要求高精度和良好的稳定性。因此,开发集大负载,高刚度,低摩擦,甚至无摩擦的直接驱动一体化的精密支撑技术,是大型望远镜的关键技术之一。磁悬浮轴承不仅具有非接触,无摩擦,高刚度,高精度,低功率,低机械组装要求的优点,而且与从动扭矩电机集成在一起,简化了结构,降低了成本。本文基于多学科设计优化(MDO),探索一种集成有直接驱动技术的主动偏置磁悬浮轴承,为现代大型天文望远镜跟踪系统提供了新的选择和观点。

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