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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Modeling and numerical simulation of linear and nonlinear spacecraft attitude dynamics and gravity gradient moments:A comparative study
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Modeling and numerical simulation of linear and nonlinear spacecraft attitude dynamics and gravity gradient moments:A comparative study

机译:线性和非线性航天器姿态动力学和重力梯度矩的建模和数值模拟:比较研究

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摘要

In this paper linear and nonlinear models of spacecraft attitude dynamics equations and gravity gradient moments are investigated. In addition, effects of gravity gradient moments on attitude dynamics of the satellite are studied. The purpose of this paper is to present a comparison between nonlinear and linear models of spacecraft attitude dynamics and gravity gradient moments in order to determine divergence of linear approximation from the nonlinear model. Simulation results indicate that designer of spacecraft attitude control subsystem should be meticulous in applying linear approximation of equations especially in low earth orbits. Consequently, finding an upper bound for small angle to keep the linear model valid and precise enough would be a vital part of using linear approximation. Results supported by numerical examples demonstrate various features of this study.
机译:本文研究了航天器姿态动力学方程和重力梯度矩的线性和非线性模型。此外,研究了重力梯度矩对卫星姿态动力学的影响。本文的目的是对航天器姿态动力学和重力梯度矩的非线性和线性模型进行比较,以便确定与非线性模型的线性近似差异。仿真结果表明,航天器姿态控制子系统的设计者在应用方程的线性近似时应格外谨慎,尤其是在低地球轨道上。因此,找到小角度的上限以保持线性模型有效且足够精确将是使用线性逼近的重要组成部分。数值示例支持的结果证明了这项研究的各种特征。

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