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DESIGN OF A BASIC ANGLE MONITORING SYSTEM IN SILICON CARBIDE

机译:碳化硅中基本角度监测系统的设计

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Due to the 10 microarcsecond accuracy, with which Gaia will measure the positions of stars using 2 astrometric telescopes, stability requirements on the payload module are extremely stringent. In order to achieve the required 10 microarcsecond accuracy, a metrology system could be installed on the satellite to monitor variations on the basic angle: the basic angle monitoring system. This system has high stability requirements of picome-ters in several hours and is therefore, like the rest of the payload module, constructed of Silicon Carbide. This is a ceramic material with good mechanical and thermal properties. However it also needs special attention in design, because final processing is difficult. The mounting of optical components is performed directly on the optical bench, by tensioning the optical components with spiders against the optical bench. Alignment is performed by shifting the component across a plane using an external and removable alignment mechanism. In the near future experiments will be performed to proof the design.
机译:由于10微内置精度,盖亚将使用2个横梁测量星形的位置,有效载荷模块上的稳定性要求非常严格。为了达到所需的10微内置精度,可以在卫星上安装计量系统以监测基本角度的变化:基本角度监测系统。该系统在几个小时内具有高稳定性要求,因此,与碳化硅构成的其他有效载荷模块的其余部分相同。这是一种具有良好机械和热性能的陶瓷材料。然而,它也需要在设计中进行特别关注,因为最终加工很难。通过将带有蜘蛛的光学部件张紧在光学台上,直接在光学台上直接执行光学部件的安装。通过使用外部和可拆卸的对准机构将部件转移到平面上来执行对准。在不久的将来实验中将进行证明设计。

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