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NET-BASED PAYLOAD ON BOARD AVUM ENHANCED PLATFORM TO EFFICIENTLY REMOVE LARGE DEBRIS FROM LOW EARTH ORBITS

机译:车载AVUM增强平台上的基于网络的有效载荷,可有效地从低地球轨道上清除大碎片

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Space debris mitigation and remediation are urgent and growing issues to be faced for future space operations and space exploitation durability, especially in Low Earth Orbits (LEO). In past decades, several launches have placed more than 6000 satellites into orbit, of which less than a thousand are still operational today. Active Debris Removal (ADR) topic focuses on trading-off. designing and making operational mechanisms placed on board an active chaser that can rendezvous with and grapple an inert and tumbling target, to eventually change its dynamics either directly transferring it to a graveyard orbit or providing a control device to be attached to the dead element to make it controlled up to disposal.. The paper presents the design of a net-based debris capturing payload, to be embarked on a enhanced AVUM based chaser, specifically adapted for large satellites removal from LEO. he study run under ESA support, in collaboration with ELV SpA and MDA Inc. In particular, the numerical simulator, developed at Politecnico di Milano to model the net dynamics from its launch to its target wrapping, useful to drive the design of the flexible components in the payload, is discussed in details: the viscoelastic behaviour of the flexible parts is modelled and a multi-body constrained dynamics has been implemented; the dynamic simulator was already validated by mean of some preliminary experimental campaign, run at Politecnico di Milano as internal research. The results obtained by exploiting the mentioned simulator to make the whole net payload matching the AVUM enhanced I/F requirements are discussed to assess limitations and advantages in exploiting such a high thrust unit for ADR missions.
机译:减少空间碎片和补救是迫在眉睫的问题,对于未来的空间运作和空间开发的持久性,尤其是在低地球轨道(LEO)中,将面临越来越大的问题。在过去的几十年中,几次发射已将6000多颗卫星送入轨道,而如今仍不到1000颗正在运行。主动清除碎片(ADR)主题着重于权衡。设计和制造放置在主动追赶者身上的操作机构,该追赶者可以与惰性和翻滚的目标会合,并最终改变其动力,要么将其直接转移到墓地轨道上,要么提供一个控制装置以附着到死元素上以进行制造本文介绍了一种基于网络的碎屑捕获有效载荷的设计,该方案将搭载在基于AVUM的增强型追踪器上,该追踪器特别适用于从LEO上移除大型卫星。他的研究是在ESA的支持下与ELV SpA和MDA Inc.合作进行的。特别是由米兰理工大学开发的数值模拟器,用于对从推出到目标包装的净动力学建模,有助于推动柔性组件的设计在有效载荷中,将进行详细讨论:对柔性零件的粘弹性行为进行建模,并实现了多体约束动力学;动态模拟器已经通过一些初步的实验活动进行了验证,该实验在米兰理工大学进行了内部研究。讨论了通过利用上述模拟器使整个净载荷与AVUM增强的I / F要求相匹配而获得的结果,以评估为ADR任务利用这种高推力装置的局限性和优势。

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