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首页> 外文期刊>Journal of Sound and Vibration >Chaotic attitude maneuvers in spacecraft with a completely liquid-filled cavity
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Chaotic attitude maneuvers in spacecraft with a completely liquid-filled cavity

机译:具有完全充满液体的空腔的航天器中的混沌姿态操纵

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摘要

This paper investigates the problem of chaotic dynamics in attitude transition maneuvers. We consider the case of a rigid body with a completely liquid-filled cavity, whose spin changes from the minor axis to the major axis under the influence of viscous damping and low-amplitude oscillating perturbations expressed as external torques. The Metnikov integral is used to predict transversal intersections of the perturbed system's stable and unstable manifolds. After discussing the phase space of the system. the equations of motion are transformed into a form more suitable for the application of Melnikov's method. Melnikov's method yields an analytical criterion for homoclinic chaos, in the form of an inequality written in terms of the system parameters. In addition, the prediction of the Melnikov criterion is compared to numerical simulations of the system. Finally, we investigate the dependence of chaotic dynamics on quantities such as body shape, degree of damping, and frequency of the perturbing torques. (c) 2007 Elsevier Ltd. All rights reserved.
机译:本文研究了姿态过渡机动中的混沌动力学问题。我们考虑具有完全充满液体的空腔的刚体的情况,该刚体在粘性阻尼和低振幅振荡扰动(表示为外部转矩)的影响下,从短轴向主轴旋转。 Metnikov积分用于预测被摄动系统的稳定和不稳定歧管的横向交点。之后讨论系统的相空间。运动方程被转换为一种更适合梅尔尼科夫方法应用的形式。梅尔尼科夫(Melnikov)的方法以系统参数的不等式形式给出了同宿混沌的分析标准。此外,将梅尔尼科夫准则的预测与系统的数值模拟进行了比较。最后,我们研究了混沌动力学对诸如车身形状,阻尼度和扰动转矩频率等量的依赖性。 (c)2007 Elsevier Ltd.保留所有权利。

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