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A simple model for studying rotation errors of gimbal mount axes in laser tracking system based on spherical mirror as a reflection unit

机译:基于球面镜作为反射单元的激光跟踪系统中万向架安装轴旋转误差的简单模型

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This paper presents a novel experimental approach and a simple model for verifying that spherical mirror of laser tracking system could lessen the effect of rotation errors of gimbal mount axes based on relative motion thinking. Enough material and evidence are provided to support that this simple model could replace complex optical system in laser tracking system. This experimental approach and model interchange the kinematic relationship between spherical mirror and gimbal mount axes in laser tracking system. Being fixed stably, gimbal mount axes' rotation error motions are replaced by spatial micro-displacements of spherical mirror. These motions are simulated by driving spherical mirror along the optical axis and vertical direction with the use of precision positioning platform. The effect on the laser ranging measurement accuracy of displacement caused by the rotation errors of gimbal mount axes could be recorded according to the outcome of laser interferometer. The experimental results show that laser ranging measurement error caused by the rotation errors is less than 0.1 μm if radial error motion and axial error motion are under 10 urn. The method based on relative motion thinking not only simplifies the experimental procedure but also achieves that spherical mirror owns the ability to reduce the effect of rotation errors of gimbal mount axes in laser tracking system.
机译:本文提出了一种新型实验方法,一种简单的模型,用于验证激光跟踪系统的球形镜可以基于相对运动思维来减少万向节轴旋转误差的效果。提供了足够的材料和证据来支持,这种简单的模型可以取代激光跟踪系统中的复杂光学系统。这种实验方法和模型交换了激光跟踪系统中球面镜和万向石安装轴的运动关系。稳定地固定,Gimbal Mount轴的旋转误差运动由球面镜的空间微位移代替。通过使用精密定位平台,通过沿着光轴和垂直方向驱动球形镜和垂直方向来模拟这些运动。根据激光干涉仪的结果,可以记录对由Gimbal安装轴的旋转误差引起的位移引起的激光测距测量精度的影响。实验结果表明,如果径向误差运动和轴向误差运动低于10 URN,则由旋转误差引起的激光测距误差小于0.1μm。基于相对运动思维的方法不仅简化了实验程序,还实现了球形镜子拥有在激光跟踪系统中降低万向石安装轴旋转误差效果的能力。

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