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Proposal of Non-Flying-Type MEID mechanism for lunar/planetary exploration spacecraft

机译:月球/行星探测航天器非飞行式MEID机制的建议

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Lunar/planetary spacecraft should be able to land softly and conduct thorough explorations. Conventional landing methods suffer from various problems such as high rebound, the impossibility of reuse, and necessity of air. Therefore, a novel landing method that solves these problems is required for landing in severe environments. Toward this end, the authors have applied Momentum Exchange Impact Damper (MEID). MEID realizes landing by exchanging the momentum of the spacecraft with damper masses. However, flying damper masses may collide with and damage the spacecraft. Furthermore, they may pollute the lunar/planetary surface. Therefore, in this paper, the authors propose a Non-Flying-Type MEID (NFMEID) mechanism without flying damper masses. Unlike conventional landing methods and MEIDs, the NFMEID (i) reduces a spacecraft's rebound, (ii) can be reused, (iii) can be used in vacuum, and (iv) can protect a spacecraft and the surface pollution from launched masses. Furthermore, the NFMEID may extend the usefulness of MEID because it is considered effective for the shock response control of not only spacecraft but also general mechanical structures. This paper explains the NFMEID mechanism and evaluates its landing performance through some simulations. This study shows that the NFMEID is a promising landing method for further lunar/planetary exploration missions.
机译:月球/行星航天器应该能够软着陆并进行彻底的探索。常规的着陆方法遭受各种问题,例如高回弹,无法重复使用以及需要空气。因此,在严酷的环境下着陆需要一种解决这些问题的新颖的着陆方法。为此,作者采用了动量交换冲击​​阻尼器(MEID)。 MEID通过用阻尼质量交换航天器的动量来实现着陆。但是,飞行的阻尼块可能会碰撞并损坏航天器。此外,它们可能污染月球/行星表面。因此,在本文中,作者提出了一种非飞行型MEID(NFMEID)的机制,它没有飞行阻尼块。与常规着陆方法和MEID不同,NFMEID(i)减少了航天器的回弹,(ii)可以重复使用,(iii)可以在真空中使用,并且(iv)可以保护航天器和表面免受发射物质的污染。此外,NFMEID可能会扩展MEID的用途,因为它被认为不仅对航天器而且对通用机械结构的冲击响应控制都是有效的。本文介绍了NFMEID机制,并通过一些仿真评估了其着陆性能。这项研究表明,NFMEID是进行进一步月球/行星探测任务的有前途的着陆方法。

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