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Experimental Investigation of Vertical Translation Design Commonality Across Differing Gravitation Levels

机译:垂直平移设计平常跨越引力水平的实验研究

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Current knowledge of human habitation in partial-gravity is limited to six brief sorties to the lunar surface. As interest in human exploration and longer-term habitation of the Moon and Mars increases, methods must be created to better understand how to design a living environment for humans in differing gravity levels. This paper presents the results of recent studies at the University of Maryland on human accessibility between different floors of a habitat in various gravity levels, based on the use of body segment parameter ballasting in the underwater environment to represent the gravitational force on each body segment in ascending and descending ladders and staircases. This has culminated in the development of a dedicated test apparatus which allows full reconfiguration of the angle and tread spacing on staircases, and can be used both underwater and in the laboratory environment. Test subjects ascend and descend the ladder at various gravity conditions to determine the effect of differing apparent gravity levels, with data collected on both performance and gaits as measured by motion capture systems. Extensions to this work are proposed that focus on part-task simulations such as servicing and repair of equipment racks, and focused studies on the habitat design implications of rotating habitats for artificial gravity.
机译:目前局部重力人类居住的知识仅限于月球表面的六个简短。由于对人类勘探和月球和火星的长期居住的兴趣,必须创造方法以更好地了解如何为具有不同引力水平的人类设计生活环境。本文提出了马里兰大学在各种重力水平的不同楼层之间的人类可访问性的研究结果,基于水下环境中的身体段参数镇静来表示每个车身段的引力力上升和下行梯子和楼梯。这在开发专用测试设备的开发中有峰,该测试装置允许在楼梯上完全重新配置角度和胎面间距,并且可以在水下和实验室环境中使用。测试对象在各种重力条件下升降并下降梯子,以确定不同的表观重力水平的效果,并且通过运动捕获系统测量的性能和Gaits上收集的数据。提出了对这项工作的扩展,专注于部件任务模拟,例如设备机架的维修和维修,并专注于旋转栖息地用于人工重力的栖息地设计的研究。

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