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The Optical Reference Error Analysis and Control Method in Ground Validation System of Stellar-Inertial Integration

机译:恒星-惯性积分地面验证系统中的光学参考误差分析与控制方法

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摘要

The authenticity of the Stellar-Inertial integration ground validation system will eventually determine the navigation performance in flight. The optical reference error characteristics remain a crucial but unsolved issue due to the arc-second level accuracy in the ground validation system. The characteristic of the star simulator celestial angle error and the north reference error are discussed and analyzed in detail. A new error control method of the star simulators intersection angle is proposed with the help of the high precision three-axis turntable. The north reference error can be isolated as a certain azimuth bias error in ground validation. The synthesis of all the error sources is performed to give the criterion value of the evaluation accuracy for the ground validation system. Experimental tests confirm that the error analysis and control method are effective. The evaluation accuracy is improved from 10.99 to 4.88 arc-seconds under the condition of remaining the unchanged ground validation system. Meanwhile, such an in ground test system is close to the flight conditions and it can satisfy the stringent requirement for high-accuracy star sensors.
机译:恒星-惯性集成地面验证系统的真实性最终将决定飞行中的导航性能。由于地面验证系统中的弧秒级精度,光学参考误差特性仍然是关键但尚未解决的问题。详细讨论并分析了恒星模拟器天球角误差和北向参考误差的特征。借助高精度三轴转台,提出了一种新的星际模拟器相交角误差控制方法。在地面验证中,可以将北参考误差隔离为某个方位偏差。进行所有误差源的综合,以得出地面验证系统评估精度的标准值。实验测试证实了误差分析和控制方法是有效的。在保持地面验证系统不变的情况下,评估精度从10.99弧秒提高到4.88弧秒。同时,这种地面测试系统接近飞行条件,可以满足对高精度恒星传感器的严格要求。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2019年第2期|670-678|共9页
  • 作者单位

    Science and Technology on Inertial Laboratory, School of Instrumentation Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China;

    Science and Technology on Inertial Laboratory, School of Instrumentation Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China;

    Science and Technology on Inertial Laboratory, School of Instrumentation Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China;

    Science and Technology on Inertial Laboratory, School of Instrumentation Science and Opto-Electronics Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adaptive optics; Azimuth; Optical sensors; Navigation; Extraterrestrial measurements; Theodolites;

    机译:自适应光学;方位角;光学传感器;导航;地球仪测量;经纬仪;

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