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Pretension design for space deployable mesh reflectors under multi-uncertainty

机译:多不确定性下空间展开式网格反射器的预张力设计

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The main purpose of this paper is to present a pretension design method for space deployable mesh reflectors under multi-uncertainty. There exist multi-source errors in space deployable structures, such as dimensional error, imperfect material properties, and thermal error in space environment. The error which results in the structural uncertainties is a "time bomb" for space structures. It is thus essential to keep the structural performance robust and reliable under multi-source errors. In this paper, the relationships between multi-source errors and cable-tension uncertainty are established firstly. The errors of dimension, elastic modulus, coefficient of thermal expansion, and thermal load, etc. are equivalent to the tension uncertainty in cables. Then combining with the anti-optimization strategy, a pretension design method for space deployable mesh reflectors considering multi-uncertainty is proposed to minimize the influence from the uncertainties. Finally, the feasibility and effectiveness of the design method are validated by a numerical simulation. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:本文的主要目的是提出一种在多不确定性下空间可展开的网格反射器的预张力设计方法。空间可部署结构中存在多源误差,例如空间环境中的尺寸误差,不完善的材料特性和热误差。导致结构不确定的误差是空间结构的“定时炸弹”。因此,至关重要的是在多源错误下保持结构性能的鲁棒性和可靠性。本文首先建立了多源误差与电缆张力不确定度之间的关系。尺寸,弹性模量,热膨胀系数和热负荷等的误差等价于电缆中的张力不确定性。然后结合反优化策略,提出一种考虑多不确定性的空间可展开式网格反射镜预紧设计方法,以减小不确定性的影响。最后,通过数值仿真验证了该设计方法的可行性和有效性。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

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