系统仿真学报 ›› 2015, Vol. 27 ›› Issue (6): 1204-1208.doi: 10.16182/j.cnki.joss.2015.06.007

• 仿真建模与仿真算法及数值仿真 • 上一篇    下一篇

一种挠性动力学模型解耦及局部迭代方法

王献忠1,2, 汤敏1,2, 董晋芳1,2   

  1. 1.上海市空间智能控制技术重点实验室,上海 200233;
    2.上海航天控制技术研究所,上海 200233
  • 收稿日期:2014-05-23 修回日期:2014-08-21 出版日期:2015-06-08 发布日期:2021-01-15
  • 作者简介:王献忠(1971-),男,江苏太仓。博士。研究员。研究方向为飞行器控制系统研究与设计; 汤敏兰(1987-),女,江苏常熟,硕士,工程师,研究方向为飞行器轨道控制研究与设计。

Decoupling and Partial Iterative Calculation Method of Flexibility Dynamics

Wang Xianzhong1,2, Tang Minlan1,2, Dong Jinfang1,2   

  1. 1. Shanghai Rey Laboratory of Aerospace Intelligent Control Technology, Shanghai 200233, China;
    2. Shanghai Aerospace Control Technology Institute, Shanghai 200233, China
  • Received:2014-05-23 Revised:2014-08-21 Online:2015-06-08 Published:2021-01-15

摘要: 带有大型帆板、大量推进剂的航天器挠性模态阶数可以达到上百阶,其挠性动力学要实现毫秒级周期迭代运算,需要高性能的计算机。基于挠行模态 和星体转动 解耦,局部迭代等措施避免迭代误差导致挠性动力学运算发散,解耦后的挠性动力学模型参数K1,K2,I-1等可以离线计算,从而减小了迭代计算量,降低了对计算机的性能要求,且易于工程实现。仿真验证了解耦及迭代运算方法的有效性,仿真结果表明计算速度可以提高约2个数量级。

关键词: 挠性动力学, 解耦, 迭代, 航天器

Abstract: Some spacecrafts have large solar panels and a lot of propellant. These spacecrafts with flexible modes can reach hundreds of order. High-powered computers are needed for these spacecrafts,flexibility dynamics iterative operation within several milliseconds. The measures of decoupling flexibility vibration from body rotation and partial iterative calculation were applied to avoid no convergence of the flexibility dynamics iterative operation because of iterative computing error. The parameters of flexible dynamics model which were decoupled could be calculated off-line. The amount of calculation was decreased for the decoupled flexibility dynamics model as parameters could be computed before simulation. The method doesn't need high-powered computer and is applicable to engineering application. The simulation result validates the decoupling and the iterative operation. The calculation speed can be improved by about two orders of magnitude.

Key words: flexibility dynamics, decoupling, iterative computing, spacecraft

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