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卫星展开机构活动电缆干扰力矩特性研究

陈凯 吴云强 汪林 李金柱 陈伟男

航天器环境工程2026,Vol.43Issue(1):34-42,9.
航天器环境工程2026,Vol.43Issue(1):34-42,9.DOI:10.12126/see.2025095

卫星展开机构活动电缆干扰力矩特性研究

Interference torque characteristics of flexible cables in satellite deployment mechanisms

陈凯 1吴云强 1汪林 1李金柱 1陈伟男1

作者信息

  • 1. 上海卫星装备研究所,上海 200240
  • 折叠

摘要

Abstract

To address the problem of interference torque generated by flexible cables in satellite deployment mechanisms and the difficulty of accurately simulating their large deformation behavior using traditional methods,a variable-length cable dynamic model was established based on the Absolute Nodal Coordinate Formulation with the Arbitrary Lagrangian-Eulerian description(ALE-ANCF).The system governing equations were constructed by incorporating constraint conditions.The accuracy of the proposed model was verified by comparing experimental and simulation results.The control variable method was employed to analyze the effects of key parameters,including cable diameter,redundancy,fixed point position,deployment speed,space temperature,and microgravity,on the interference torque.The parameter analysis reveals that:(1)reducing the cable diameter or increasing the distance between fixed points significantly reduces the interference torque;(2)appropriately increasing the cable redundancy also lowers the torque;(3)a higher deployment speed exacerbates torque fluctuations;(4)the ambient temperature in space is negatively correlated with the interference torque;and(5)under microgravity conditions,torque fluctuations diminish,while the risk of cable entanglement increases.This study provides a theoretical basis and data support for the parameter optimization of cable systems in satellite deployment mechanisms.

关键词

卫星展开机构/活动电缆/干扰力矩/ALE-ANCF方法/参数分析

Key words

satellite deployment mechanism/flexible cable/interference torque/ALE-ANCF method/parameter analysis

分类

航空航天

引用本文复制引用

陈凯,吴云强,汪林,李金柱,陈伟男..卫星展开机构活动电缆干扰力矩特性研究[J].航天器环境工程,2026,43(1):34-42,9.

基金项目

基础科研计划项目(编号:JCKY2022XXXC048) (编号:JCKY2022XXXC048)

航天器环境工程

1673-1379

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