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基于虚拟样机技术的航天器配重设计与实现
引用本文:尹航,高永明,董正宏,阎慧.基于虚拟样机技术的航天器配重设计与实现[J].系统仿真学报,2010(11).
作者姓名:尹航  高永明  董正宏  阎慧
作者单位:解放军装备指挥技术学院,北京101436;
摘    要:将航天器的质量、质心和转动惯量调配到一定目标范围内,可以降低航天器姿态控制的难度,提高航天器姿态控制的准确性,利用虚拟样机技术和数值优化技术的相关软件设计了航天器配重仿真优化方法,能够对航天器进行构件设计,仿真装配、动力学分析和可变装配参数优化,能够支持构件可变质量优化和装配位置优化,最后通过空间机器人地面气浮仿真平台的配重实例验证了配重方法的正确性,结果表明该方法可以有效地对航天器进行配重优化。
Abstract:
The mass, centroid and moment of inertia of spacecraft, regulated at a certain target range, can reduce the difficulty and improve accuracy in spacecraft stance control. The relative software of virtual prototyping and numerical optimization techniques were used for designing the methods of simulation and optimization in spacecraft balance. The methods could make spacecraft devised in components, simulation assembly, dynamic analysis and parameter optimization of variable assembly and support the components of variable quality optimization and assembly location optimization. The accuracy of balancing platform was validated by the balancing example of space robot ground floatation simulation platform. The result shows that spacecraft can be effectively balanced and optimized by this method.

关 键 词:虚拟样机  航天器  配重  优化  空间机器人

Design and Implementation of Spacecraft Balance Based on Virtual Prototype Technology
YIN Hang,GAO Yong-ming,DONG Zheng-hong,YAN Hui.Design and Implementation of Spacecraft Balance Based on Virtual Prototype Technology[J].Journal of System Simulation,2010(11).
Authors:YIN Hang  GAO Yong-ming  DONG Zheng-hong  YAN Hui
Abstract:The mass, centroid and moment of inertia of spacecraft, regulated at a certain target range, can reduce the difficulty and improve accuracy in spacecraft stance control. The relative software of virtual prototyping and numerical optimization techniques were used for designing the methods of simulation and optimization in spacecraft balance. The methods could make spacecraft devised in components, simulation assembly, dynamic analysis and parameter optimization of variable assembly and support the components of variable quality optimization and assembly location optimization. The accuracy of balancing platform was validated by the balancing example of space robot ground floatation simulation platform. The result shows that spacecraft can be effectively balanced and optimized by this method.
Keywords:virtual prototype  spacecraft  balance  optimization  space robot
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