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Image-based systems for space surveillance: from images to collision avoidance

机译:基于图像的空间监视系统:从图像到避免碰撞

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In many spatial systems, image is a core technology to fulfil the mission requirements. Depending on the application, the needs and the constraints are different and imaging systems can offer a large variety of configurations in terms of wavelength, resolution, field-of-view, focal length or sensitivity. Adequate image processing algorithms allow the extraction of the needed information and the interpretation of images. As a prime contractor for many major civil or military projects, Astrium ST is very involved in the proposition, development and realization of new image-based techniques and systems for space-related purposes. Among the different applications, space surveillance is a major stake for the future of space transportation. Indeed, studies show that the number of debris in orbit is exponentially growing and the already existing population of small and medium debris is a concrete threat to operational satellites. This paper presents Astrium ST activities regarding space surveillance for space situational awareness (SSA) and space traffic management (STM). Among other possible SSA architectures, the relevance of a ground-based optical station network is investigated. The objective is to detect and track space debris and maintain an exhaustive and accurate catalogue up-to-date in order to assess collision risk for satellites and space vehicles. The system is composed of different type of optical stations dedicated to specific functions (survey, passive tracking, active tracking), distributed around the globe. To support these investigations, two in-house operational breadboards were implemented and are operated for survey and tracking purposes. This paper focuses on Astrium ST end-to-end optical-based survey concept. For the detection of new debris, a network of wide field of view survey stations is considered: those stations are able to detect small objects and associated image processing (detection and tracking) allow a preliminary restitution of their orbit.
机译:在许多空间系统中,图像是满足任务要求的一项核心技术。取决于应用程序,需求和约束条件是不同的,并且成像系统可以提供波长,分辨率,视野,焦距或灵敏度方面的多种配置。适当的图像处理算法可以提取所需的信息并解释图像。作为许多重大民用或军事项目的总承包商,Astrium ST积极参与与空间相关的基于图像的新技术和系统的提议,开发和实现。在不同的应用程序中,空间监视是未来空间运输的主要利益。确实,研究表明,在轨碎片的数量呈指数增长,并且已经存在的中小型碎片种群对正在运行的卫星构成了具体威胁。本文介绍了Astrium ST在空间监视方面的活动,以进行空间态势感知(SSA)和空间交通管理(STM)。在其他可能的SSA体系结构中,研究了基于地面的光站网络的相关性。目的是检测和跟踪空间碎片,并保持详尽而准确的目录,以评估卫星和太空飞行器的碰撞风险。该系统由专用于特定功能(调查,被动跟踪,主动跟踪)的不同类型的光站组成,这些光站遍布全球。为了支持这些调查,实施了两个内部操作面包板,并对其进行操作以进行调查和跟踪。本文重点介绍Astrium ST端到端基于光学的调查概念。为了检测新碎​​片,考虑了一个具有大视野的测量站网络:这些站能够探测小物体,并且相关的图像处理(检测和跟踪)可以初步恢复其轨道。

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