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Modeling and analysis of dynamics for spacecraft relative motion actuated by inter-satellite non-contacting force

机译:卫星间非接触力驱动的航天器相对运动动力学建模与分析

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With the recent flurry of research on spacecraft relative motion actuated by inter-satellite non-contacting force, i.e., electrostatic force, electromagnetic force and magnetic flux-pinned force, the need has become apparent for dynamic modeling and dynamics analysis that capture the characteristics of this generic force. Based on the basic derivation of electrostatic force model and some theorems, the actuations of electrostatic force, electromagnetic force/torque and magnetic flux-pinned force/torque are unified and the corresponding mathematic models are derived. And then, with a general notation of this inter-satellite non-contacting force, the dynamic models are developed with respect to several assumptions of circular orbit, elliptical orbit and general Keplerian orbit pertaining to the motion of center of mass of the spacecraft cluster. A detailed dynamics analysis based on these derived models are carried out, including constraints of the relative motion dynamics, the special characteristics of applications to the near-Earth relative orbit motion and the deep space relative motion, and then a case with co-rotating pair of satellites subject to the previously mentioned inter-satellite non-contacting forces was simulated to validate the dynamic modeling and dynamics analysis. At last, some useful conclusions follow. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:随着对卫星间非接触力(即静电力,电磁力和磁通钉扎力)致动的航天器相对运动的最新研究,对动态建模和动力学分析的需求变得越来越明显,这些动力学模型和动力学分析可捕捉航天器的特性。这种通用的力量。基于静电力模型的基本推导和一些定理,将静电力,电磁力/转矩和磁通钉扎力/转矩的激励统一起来,并推导了相应的数学模型。然后,利用这种卫星间非接触力的一般表示法,针对与航天器团的质心运动有关的圆形,椭圆形和开普勒一般轨道的几种假设,建立了动力学模型。在这些导出模型的基础上进行了详细的动力学分析,包括相对运动动力学的约束,近地相对轨道运动和深空相对运动应用的特殊特征,然后是同向旋转的情况。模拟了受到前述卫星间非接触力影响的卫星,以验证动力学建模和动力学分析。最后,得出一些有用的结论。 (C)2015 Elsevier Masson SAS。版权所有。

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