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Determination of Quasi-static Microaccelerations onboard a Satellite Using Video Images of Moving Objects

机译:使用运动物体的视频图像确定人造卫星上的准静态微加速度

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摘要

A space experiment aimed at determination of quasi-static microaccelerations onboard an artificial satellite of the Earth using video images of the objects executing free motion is considered. The experiment was carried out onboard the Foton M-3 satellite. Several pellets moved in a cubic box fixed on the satellite's mainframe and having two transparent adjacent walls. Their motion was photographed by a digital video camera. The camera was installed facing one of the transparent walls; a mirror was placed at an angle to another transparent wall. Such an optical system allowed us to have in a single frame two images of the pellets from differing viewpoints. The motion of the pellets was photographed on time intervals lasting 96 s. Pauses between these intervals were also equal to 96 s. A special processing of a separate image allowed us to determine coordinates of the pellet centers in the camera's coordinate system. The sequence of frames belonging to a continuous interval of photography was processed in the following way. The time dependence of each coordinate of every pellet was approximated by a second degree polynomial using the least squares method. The coefficient of squared time is equal to a half of the corresponding microacceleration component. As has been shown by processing made, the described method of determination of quasi-static microaccelerations turned out to be sufficiently sensitive and accurate.
机译:考虑了一项太空实验,旨在利用执行自由运动的物体的视频图像确定地球人造卫星上的准静态微加速度。该实验是在福田M-3卫星上进行的。几个药丸在固定在卫星主机上的立方箱中移动,并有两个透明的相邻壁。他们的动作由数码摄像机拍摄。摄像机面向透明墙之一安装。镜子与另一透明墙成一定角度放置。这种光学系统使我们可以在一个框架中从不同的角度获得两个颗粒的图像。以持续96 s的时间间隔拍摄颗粒的运动。这些间隔之间的暂停时间也等于96 s。对单独图像的特殊处理使我们能够确定相机坐标系中颗粒中心的坐标。属于连续摄影间隔的帧序列按以下方式处理。使用最小二乘法通过二次多项式来近似每个颗粒的每个坐标的时间依赖性。时间的平方系数等于相应的微加速度分量的一半。如所进行的处理所表明的,所描述的确定准静态微加速度的方法被证明是足够灵敏和准确的。

著录项

  • 来源
    《Cosmic research》 |2009年第6期|513-524|共12页
  • 作者单位

    Central Mashine Building Research Institute, Korolev, Moscow oblast, Russia;

    Central Mashine Building Research Institute, Korolev, Moscow oblast, Russia;

    Keldysh Institute of Applied Mathematics of the Russian Academy of Sciences, Moscow;

    Keldysh Institute of Applied Mathematics of the Russian Academy of Sciences, Moscow;

    Keldysh Institute of Applied Mathematics of the Russian Academy of Sciences, Moscow;

    Lomonosov Moscow State University;

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

    rigid body and gyroscope motion;

    机译:刚体和陀螺仪运动;

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