具有主动重力补偿系统的支架上伞形反射镜打开过程的分析

A. V. Ivanov, S. A. Zommer
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引用次数: 0

摘要

在验证地面条件下改造结构的功能期间,有必要将重力的影响降至最低,以避免铰链组件和开启机构上出现额外载荷。为了执行这项任务,在测试可变形伞形反射器时,使用了带有主动重力补偿系统的支架,其中重力补偿力施加到反射器的每个辐条上。然而,当补偿反射器的重力辐条时,悬索的固定点与辐条的质心不一致,这导致作用在悬挂结构上的额外力矩的出现。因此,作为研究对象,考虑了反射器的一部分,由辐条、连接在其上的成形结构绳索和网格组成。已经开发了一个3D模型,使用该模型在反射器开口的关键阶段确定了所考虑结构的质心位置。对在公开过程中作用在结构上的驱动力和力矩进行了计算分析。建立了悬点位置对重力补偿精度的影响程度。文章中给出的分析结果可以用作开发主动重力补偿系统操作算法的初始数据,该算法将能够考虑在反射器打开期间悬挂点的位置和结构的质心相对于辐条的旋转轴,通过改变重力补偿力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the umbrella-type reflector opening process on a stand with an active gravity compensation system
During the verification of the functioning of the transformed structures in ground conditions, it is necessary to minimize the effect of gravity in order to exclude the occurrence of additional loads on the hinge assemblies and opening mechanisms. To perform this task, when testing a transformable umbrella-type reflector, stands with an active gravity compensation system are used, in which the gravity compensation force is applied to each spoke of the reflector. However, when compensating for the gravity spokes of the reflector, the fixing point of the suspension cable does not coincide with the center of mass of the spoke, which leads to the appearance of additional moments of forces acting on the suspended structure. Therefore, as an object of research, a part of the reflector was considered, consisting of a spoke, with cords of a formforming structure attached to it and a mesh. A 3D model has been developed, using which the positions of the center of mass of the structure under consideration were determined in the key phases of the reflector opening. A computational analysis of the driving forces and moments acting on the structure in the process of disclosure is carried out. The degree of influence of the suspension point position on the inaccuracy of gravity compensation has been established. The results of the analysis presented in the article can be used as initial data for the development of an algorithm for the operation of an active gravity compensation system, which will be able to take into account the position of the suspension point and the center of mass of the structure relative to the axis of rotation of the spoke during the opening of the reflector, by changing the gravity compensation force.
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