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Research on application of high precision angle encoder in Antarctic telescope

机译:高精度角度编码器在南极望远镜中的应用研究

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The extremely low temperature in Antarctic inland area has taken a new challenge for telescope design and develops, the adaptability of components and parts in telescope for the environment close to space. The application of high accuracy encoder is the only way to improve the accuracy of tracking, however, due to the temperature requirement, there is no application of encoder under such a low temperature ever since. To realize the high accuracy of tracking and steering in telescope, high accuracy encoders must be applied in it. Based on the analysis of influence on encoder caused by temperature, an initial thermal control measure is carried out. Secondly, the thermal control measure is optimized with the method that consists of CFD simulations and experiments. Finally, an effective thermal control measure is applied on the second telescope of the 3 Antarctic Schmidt Telescopes (AST3). By the comparison of normal temperature experiment and low temperature experiment, the encoder can reach a temperature of about 25 degrees when it is under the circumstance of -80 degrees after the thermal control works, and the power consumes by the thermal control is less than 6W. The experiment result indicates that the thermal control measure can fit the requirement of temperature that ranges from -10 degrees to 80 degrees and the lowly consuming power requirement, the encoder can reliably work in low temperature with the thermal control measure works.
机译:南极内陆地区的极低温度为望远镜设计和开发的新挑战,为靠近空间的环境的望远镜的组件和零件的适应性。高精度编码器的应用是提高跟踪准确性的唯一方法,然而,由于温度要求,因此在这种低温下没有应用编码器。为了实现望远镜的跟踪和转向的高精度,必须应用高精度编码器。基于对温度引起的编码器的影响分析,进行了初始热控制测量。其次,通过由CFD模拟和实验组成的方法进行了优化了热控制措施。最后,在3南极施密特望远镜(AST3)的第二望远镜上施加有效的热控制措施。通过对常温实验和低温实验的比较,当热控制工作后的情况下,编码器可以在-80度的情况下达到约25度的温度,并且通过热控制的功率小于6W 。实验结果表明,热控制措施可以符合从-10度到80度的温度的要求,并且低功率要求,编码器可以通过热控制测量工作可靠地工作。

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