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首页> 外文期刊>Acta astronautica >Ground tests for vision based determination and control of formation flying spacecraft trajectories
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Ground tests for vision based determination and control of formation flying spacecraft trajectories

机译:用于基于视觉的编队飞行航天器轨迹确定和控制的地面测试

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The advances in the computational capabilities and in the robustness of the dedicated algorithms are suggesting vision based techniques as a fundamental asset in performing space operations such as rendezvous, docking and on-orbit servicing. This paper discusses a vision based technique in a scenario where the chaser satellite must identify a non-cooperative target, and use visual information to estimate the relative kinematic state. A hardware-in-the-loop experiment is performed to test the possibility to perform a space rendezvous using the camera as a standalone sensor. This is accomplished using a dedicated test bed constituted by a dark room hosting a robotic manipulator. The camera is mounted on the end effector that moves replicating the satellite formation dynamics, including the control actions, which depend at each time step by the state estimation based on the visual algorithm, thus realizing a closed GNC loop.
机译:专用算法的计算能力和鲁棒性的进步表明,基于视觉的技术已成为执行太空活动(如交会,对接和在轨维修)的基本资产。本文讨论了在追踪卫星必须识别非合作目标并使用视觉信息估计相对运动状态的情况下基于视觉的技术。进行了硬件在环实验,以测试使用相机作为独立传感器执行空间会合的可能性。这是通过一个专用的试验床完成的,该试验床由一个容纳机器人操纵器的暗室构成。摄像机安装在末端执行器上,该末端执行器可移动复制卫星编队动力学,包括控制动作,这些动作在每个时间步均取决于基于视觉算法的状态估计,从而实现了闭合的GNC回路。

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