Target attitude estimation for motional Large Aperture Telescope (LAT)

Jiaming Lei, Rongqi Ma, Yunxia Xia, Xiang Liu, Qiang Wang, Qiongyan Wu, Dong He, Jinying Li, Xijun Zhao, Chao Peng, Liangzhu Yuan, Yongmei Huang, Ge Ren
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Abstract

With the widening of the application scenarios for target observation, the traditional ground-based fixed LAT system has been unable to meet the requirement of high precision tracking ,the LAT need to be installed on different motion platforms. In this case, a series of photoelectric tracking systems based on motion platforms have been derived. The combination of LAT and moving platform brings a new problem--Disturbance such as braking, vibrating, and shaking of the platform will cause the deflection and shaking of the LAT imaging screen, which will have a great impact on the LAT tracking. In this paper, a method to determine the change of the attitude angle θ of the target in the field of view caused by the movement of a moving platform is proposed to suppressed overcome the disturbance introduced caused by the application of LAT in moving platform carrier. According to the angular position data of the target tracking point acquired by the CCD system and the attitude information of the motion platform in the geodetic coordinate system provided by the inertial navigation system, the attitude angle of the target can be calculated by applying the proposed attitude estimation algorithm. This method not only, provides a specific estimation process of target attitude angle, but also offers principle information for tracking state decision, image processing, and fiducial direction calculation.
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运动大口径望远镜(LAT)目标姿态估计
随着目标观测应用场景的不断拓宽,传统的地面固定LAT系统已经不能满足高精度跟踪的要求,需要在不同的运动平台上安装LAT。在这种情况下,推导了一系列基于运动平台的光电跟踪系统。LAT与移动平台的结合带来了一个新问题——平台的制动、振动、晃动等扰动会引起LAT成像屏的偏转和晃动,对LAT跟踪产生很大的影响。本文提出了一种确定运动平台运动引起的视场目标姿态角θ变化的方法,以抑制克服LAT在运动平台载体中的应用所带来的干扰。根据CCD系统获取的目标跟踪点角位置数据和惯性导航系统提供的运动平台在大地坐标系下的姿态信息,应用所提出的姿态估计算法可计算出目标的姿态角。该方法不仅提供了目标姿态角的具体估计过程,而且为跟踪状态决定、图像处理和基准方向计算提供了原理信息。
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