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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Thermal analysis of space debris for infrared-based active debris removal
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Thermal analysis of space debris for infrared-based active debris removal

机译:空间碎片的热分析,用于基于红外的主动碎片清除

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摘要

In space, visual-based relative navigation systems suffer from dynamic illumination conditions of the target (eclipse conditions, solar glare, etc.) where most of these issues are addressed by advanced mission planning techniques. However, such planning would not be always feasible or even if it is, it would not be straightforward for active debris removal missions. On the other hand, using an infrared-based system would overcome this problem, if a guideline to predict infrared signature of space debris based on the target thermal profile could be provided for algorithm design and testing. Spacecraft thermal design is unique to every platform. This means every active debris removal target will have a different infrared signature, which changes over time not just only due to orbital dynamics but also due to its thermal surface coatings. In order to provide a space debris infrared signature guideline for most of the possible active debris removal targets, we introduce an innovative grouping system for thermal surface coatings based on their behaviour in space environment. Through the use of this grouping system, we propose a space debris infrared signature estimation method, which was extensively verified by our simulations and experiments. During our verifications, we have also discovered very important problem so-called 'signature ambiguity' that is unique to infrared-based active debris removal systems, which we have also discussed in our work.
机译:在太空中,基于视觉的相对导航系统会遭受目标的动态照明条件(日食条件,太阳眩光等)的困扰,而这些问题大多数都是通过先进的任务计划技术解决的。但是,这样的计划并不总是可行的,即使是可行的,对于主动清除碎片的任务也不是一件容易的事。另一方面,如果可以为基于算法的设计和测试提供基于目标热剖面预测空间碎片的红外特征的指南,则使用基于红外的系统将克服此问题。航天器的热设计对于每个平台都是唯一的。这意味着每个活动的碎片清除目标都将具有不同的红外特征,这不仅随轨道动力学而且还由于其热表面涂层而随时间变化。为了为大多数可能的主动碎片清除目标提供空间碎片红外签名指南,我们基于其在太空环境中的行为,针对热表面涂层引入了一种创新的分组系统。通过使用此分组系统,我们提出了一种空间碎片红外特征估计方法,该方法已通过我们的仿真和实验得到了广泛验证。在验证过程中,我们还发现了非常重要的问题,即所谓的“签名模糊性”,这是基于红外线的主动碎片清除系统所独有的,我们也在工作中进行了讨论。

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