The influence of gravity load on the accuracy of mesh reflector antenna

Author:

Wang Lipeng,Zhang Xin,Hu Jianfeng,Yang Zhao,Xiao Yong

Abstract

Abstract Space large deployable mesh antennas are the focus of research in the aerospace field. There is a high requirement for the reflector surface accuracy of the mesh antenna in orbit. Due to the low stiffness of the truss cable net system, the deformation of the flexible mesh surface under the ground gravity load cannot be ignored. Therefore, it is the key technology to ensure the accuracy of on orbit cable network reflector that accurately predict the difference of reflector under gravity load and microgravity load. This study establishes the mechanical model of the cable-truss system. The Newton Iterative Method is used to solve the nodal nonlinear equilibrium equation in the gravity load, and the deformation of the antenna mesh surface under the gravity load is obtained.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference7 articles.

1. Astro Mesh™ Deployable Reflectors for Ku and Ka Band Commercial Satellites;Thomson,2002

2. In-Orbit Deployment Characteristics of Large Deployable Antenna Reflector Onboard Engineering Test Satellite VIII;Meguro,2009

3. Parameter Matching Design Method for Ring Truss Antenna Based on Stiffness Requirement;Wang;J. Space Electronic Technology,2017

4. Adjustment Procedure of a High Precision Deployable Mesh Antenna for MUSES-B Spacecraft;Tabata;Journal of Intelligent Material Systems and Structures,1997

5. Gravity compensation system of mesh antennas for in-orbit prediction of deployment dynamics;Zhao;J. Acta Astronautica,2010

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