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Rotational Oscillation of Satellite in Elliptic Orbit under Magnetic Torque

机译:磁矩作用下椭圆轨道卫星的旋转振荡

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Magnetic disturbance torque results from interaction between spacecraft's residual magnetic field and geomagnetic field. The primary sources of magnetic disturbance torques are spacecraft magnetic moments, eddy currents and hysteresis. The instantaneous magnetic disturbance torque due to spacecraft effective magnetic moment is the product of geocentric magnetic flux density and sum of individual magnetic moments caused by permanent and induced magnetism and spacecraft generated current loops. Let us consider a rigid satellite S moving around the central body C and orbital plane of satellite coincides with equatorial plane of C. This paper deals with rotational oscillation of satellite under influence of magnetic torque in elliptic orbit. Non-linear planar equation of motion of model has been derived. Using BKM method, it is observed that resonances exist. The analysis regarding stability of stationary planar oscillation of satellite near resonance frequency shows that discontinuity occurs in amplitude of oscillation at frequency of external periodic force which is less than frequency of the natural oscillation. The half width of chaotic separatrix has been estimated by Chirikov's criterion. Through surface of section method, it has been observed that magnetic torque parameter, eccentricity and mass ratio play an important role in changing regular motion into chaotic one.
机译:磁干扰转矩是航天器的残余磁场与地磁场之间相互作用的结果。磁干扰转矩的主要来源是航天器的磁矩,涡流和磁滞。航天器有效磁矩引起的瞬时磁干扰转矩是地心磁通密度与永久性和感应磁场以及航天器产生的电流回路所引起的单个磁矩之和的乘积。让我们考虑一个绕着中心体C移动的刚性卫星S,卫星的轨道平面与C的赤道平面重合。本文讨论了在椭圆轨道上的磁转矩影响下卫星的旋转振荡。推导了模型的非线性平面运动方程。使用BKM方法,观察到存在共振。关于卫星在谐振频率附近的平稳平面振荡的稳定性的分析表明,在小于自然振荡频率的外部周期性力的频率下,振荡幅度出现不连续性。混沌分离的半宽度已根据Chirikov准则进行了估算。通过截面法,观察到磁转矩参数,偏心率和质量比在将规则运动转变为混沌运动中起着重要作用。

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