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TRAJECTORY BASED 3D FRAGMENT TRACKING IN HYPERVELOCITY IMPACT EXPERIMENTS

机译:超速度冲击实验中基于轨迹的3D片段跟踪

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Collisions between space debris and satellites in Earth’s orbits are not only catastrophic to the satellite, but also create thousands of new fragments, exacerbating the space debris problem. One challenge in understanding the space debris environment is the lack of data on fragmentation and breakup caused by hypervelocity impacts. In this paper, we present an experimental measurement technique capable of recording 3D position and velocity data of fragments produced by hypervelocity impact experiments in the lab. The experimental setup uses stereo high-speed cameras to record debris fragments generated by a hypervelocity impact. Fragments are identified and tracked by searching along trajectory lines and outliers are filtered in 4D space (3D?+?time) with RANSAC. The method is demonstrated on a hypervelocity impact experiment at 3.2?km/s and fragment velocities and positions are measured. The results demonstrate that the method is very robust in its ability to identify and track fragments from the low resolution and noisy images typical of high-speed recording.
机译:空间碎片与地球轨道上的卫星之间的碰撞不仅对卫星造成灾难性影响,而且还会产生成千上万的新碎片,加剧了空间碎片问题。理解空间碎片环境的一项挑战是缺乏有关超高速撞击造成的碎片和破碎的数据。在本文中,我们提出了一种实验测量技术,该技术能够记录实验室中超高速撞击实验产生的碎片的3D位置和速度数据。实验装置使用立体声高速摄像机来记录超高速撞击产生的碎片。通过沿着轨迹线进行搜索来识别和跟踪碎片,并使用RANSAC在4D空间(3D?+?时间)中过滤离群值。该方法在3.2?km / s的超高速撞击实验中得到证明,并测量了碎片的速度和位置。结果表明,该方法在从高速记录中典型的低分辨率和嘈杂图像中识别和跟踪片段的能力非常强大。

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