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Form-finding design of cable-mesh reflector antennas with minimal length configuration

机译:最小长度配置的网状反射天线的找形设计

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摘要

Deployable cable-mesh reflector antenna is one popular kind of satellite antennas for space applications. The form-finding design of cable-mesh antennas, which aims to determine the pre-tensioned equilibrium state with a satisfactory reflector surface shape, is vital and indispensable. The tension uniformity of the cables plays an important role in maintaining the stability of the surface shape of on-orbit cable mesh antennas. A new iterative form-finding technique based on force density method is presented to implement the uniform-tension design of cable-mesh antennas. First, equilibrium equations of the front, the rear and the whole cable nets are derived based on force density method. Then, based on the equilibrium equations, an iterative form-finding strategy is proposed. In the design process, force densities of all the cables are updated simultaneously to achieve the uniform tension of the front and rear nets, and node positions of the front net are iteratively modified to ensure that they are exactly located on the paraboloid. Finally, three typical cable-mesh antennas are employed to illustrate the feasibility and effectiveness of the method. Simulation results show that the front and rear cable nets of the obtained cable-mesh antennas are both minimal length configurations with the tension ties being inclined appropriately. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:可展开的网状反射器天线是用于太空应用的一种流行的卫星天线。旨在确定具有令人满意的反射器表面形状的预张紧平衡状态的电缆网状天线的找形设计是至关重要且必不可少的。电缆的张力均匀性在维持在轨电缆网状天线的表面形状的稳定性方面起着重要作用。提出了一种新的基于力密度法的迭代寻形技术,以实现网状天线的均匀受力设计。首先,基于力密度法推导了前,后和整个电缆网的平衡方程。然后,基于平衡方程,提出了一种迭代寻形策略。在设计过程中,所有电缆的力密度同时更新,以实现前后网的均匀张力,并且迭代修改前网的节点位置,以确保它们准确地位于抛物面上。最后,使用三种典型的网状天线来说明该方法的可行性和有效性。仿真结果表明,所获得的网状天线的前后电缆网均为最小长度配置,且束紧带适当倾斜。 (C)2016 Elsevier Masson SAS。版权所有。

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