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Design of a nanometer five-dimension adjusting frame used for star simulation facility

机译:用于星形仿真设施的纳米五维调节框架设计

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Aiming at the requirement of an accurate docking between high-accuracy star sensor and star simulator in calibration test, so that to achieve the target of accurately picking up positions of simulation stars, a five-dimension adjusting frame with high resolution and good stability is designed. The functional demands of the adjusting frame are analyzed in depth. In order to reduce docking error and improve alignment efficiency, the general designing program is presented in detail. The three-dimension model of designed frame is given by applying CATIA software. Theoretical calculations show that the adjusting mechanism's displacement resolution is 17.6nm and angular resolution is 0.045 arc second. Experimental tests indicate that stability of the adjusting mechanism is quite high, the actual resolutions are 25nm and 0.1 arc second. Calibration test shows that angular distance errors between stars simulated by star simulation facility are all better than 12", can totally meet the technical requirements of calibration test for current high-accuracy star sensor.
机译:旨在要求在校准测试中的高精度星传感器和星模拟器之间准确对接,从而实现精确拾取仿真恒星位置的目标,设计了一种具有高分辨率和良好稳定性的五维调节框架。深度分析调节框的功能要求。为了减少对接误差并提高对准效率,详细介绍了一般设计程序。通过应用CATIA软件给出了设计框架的三维模型。理论计算表明,调节机构的位移分辨率为17.6nm,角度分辨率为0.045秒。实验测试表明调节机构的稳定性非常高,实际分辨率为25nm和0.1秒。校准测试表明,星形仿真设施模拟的星之间的角度距离误差均优于12英寸,可以完全满足当前高精度星传感器的校准测试的技术要求。

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