改进空间交通管理小物体可跟踪性和识别性的创新方法

IF 3.1 2区 物理与天体物理 Q1 ENGINEERING, AEROSPACE Acta Astronautica Pub Date : 2024-10-09 DOI:10.1016/j.actaastro.2024.10.004
Holger Krag , Mike Lindsay , Mark A. Skinner , Yukihito Kitazawa , Paolo Marzioli
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引用次数: 0

摘要

需要对技术解决方案和业务影响进行评估,以确定其在跟踪和识别方法中的关键作用。地球轨道上的物体越来越多,因此更有必要对每个空间系统进行衡算,以便能够管理所有空间物体之间的碰撞风险。跟踪和识别密切相关,因为跟踪能力的增强可以最大限度地减少对特殊识别技术的需求。针对这两个特点,讨论了主动和被动系统之间的区别。跟踪主要是光学跟踪或雷达跟踪;采用哪种跟踪方式,就会采用哪种与操作最相关的识别解决方案。例如,雷达标签可以对雷达的射频(RF)能量做出反应,而激光反射器则可以完全无源。而用于光学跟踪的识别辅助设备则是主动光源(选定频率),需要电源。
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Innovative methods for trackability and identification improvement of small objects for space traffic management
Technology solutions and operational implications need a evaluation for their crucial role in tracking and identification methodologies. The growth of objects in Earth orbit have made it more important that every space system can be accounted for to be able manage the collision risk between all space objects. Tracking and identification are intimately related as enhanced tracking capabilities minimizes the need for special identification techniques. For both features, the difference between active and passive systems are discussed. Tracking is primarily optical or radar; which of these that is being used drives the most operationally-relevant identification solutions. For example, radar tags can be made to be respond to the radio frequency (RF) energy from the radar and laser reflectors can be completely passive. Whereas identification aids for use by optical tracking are active light sources (of some selected frequency) requiring a power source.
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来源期刊
Acta Astronautica
Acta Astronautica 工程技术-工程:宇航
CiteScore
7.20
自引率
22.90%
发文量
599
审稿时长
53 days
期刊介绍: Acta Astronautica is sponsored by the International Academy of Astronautics. Content is based on original contributions in all fields of basic, engineering, life and social space sciences and of space technology related to: The peaceful scientific exploration of space, Its exploitation for human welfare and progress, Conception, design, development and operation of space-borne and Earth-based systems, In addition to regular issues, the journal publishes selected proceedings of the annual International Astronautical Congress (IAC), transactions of the IAA and special issues on topics of current interest, such as microgravity, space station technology, geostationary orbits, and space economics. Other subject areas include satellite technology, space transportation and communications, space energy, power and propulsion, astrodynamics, extraterrestrial intelligence and Earth observations.
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