Mechanical and pneumatic design and testing of a floating module for zero-gravity motion simulation

S. Galleani
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Abstract

Abstract Close proximity operations demand an accurate control in a micro-gravity environment, hence they must be reproduced and simulated systematically. Consequently, laboratory tests are a crucial aspect to validate the performances of space systems. This paper presents the development of a floating pneumatic module, whose dimensions and mass are representative of a 12U CubeSat. The vehicle has been designed to perform planar low friction motion over a levelled table for docking experiments. The paper focuses on the pneumatic and mechanical designs and on the laboratory tests of the module. The pneumatic design regards the air-compressed pneumatic system. The major specifics have been determined by the requirement of performing a docking procedure by starting from a distance of 500 mm. The mechanical design has been guided by two main requirements. The first is the possibility to accommodate different docking systems (e.g.: docking port). The second is the possibility to control the position of the centre of mass of the module. Several tests have been performed to verify the capabilities of the vehicle, such as: (1) pneumatic tests to evaluate the thrust of the propulsion system through the execution of linear motions and (2) mechanical measurements with dedicated setups to improve the estimation of the position of the centre of mass from the CAD model of the system.
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用于零重力运动模拟的浮动模块的机械和气动设计与测试
近距离操作要求在微重力环境下进行精确控制,因此必须对其进行系统的再现和模拟。因此,实验室测试是验证空间系统性能的一个关键方面。本文介绍了一种浮式气动模块的研制,其尺寸和质量代表了12U立方体卫星。该飞行器被设计成在一个水平台上进行平面低摩擦运动,用于对接实验。本文重点介绍了该模块的气动设计和力学设计,以及模块的实验室测试。气动设计为空气压缩气动系统。主要的细节是由执行对接程序的要求决定的,从500毫米的距离开始。机械设计以两个主要要求为指导。首先是容纳不同对接系统的可能性(例如:对接端口)。第二个是控制模块质心位置的可能性。已经进行了几项测试来验证车辆的能力,例如:(1)气动测试,通过执行线性运动来评估推进系统的推力;(2)专用装置的机械测量,以改进对系统CAD模型中质心位置的估计。
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