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Time characterization of the coupled solar radiation pressure-planetary oblateness dynamics

机译:耦合太阳辐射压力行星抑形动态的时间表征

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Recent works demonstrated that the dynamics caused by the planetary oblateness coupled with the solar radiation pressure can be described by means of an analytical model based on singly-averaged equations of motion. The coupled perturbations affect the evolution of the eccentricity, inclination and orientation of the orbit with respect to the Sun-Earth line. The model can provide the location of the central and hyperbolic invariant manifolds which drive the phase space evolution, and the dynamical systems theory can be applied for performing a preliminary mission analysis for practical applications. In this work, we will continue the analysis by focusing on the timescale associated with a given dynamical behavior. First the bifurcation diagram for the phase space evolution is derived, then a possible exploitation for deorbiting from the LEO region is described. The characterization of the corresponding time-scales is given analytically on the basis of the linear theory, as a function of the semi-major axis, area-to-mass ratio, initial phase with respect to the Sun and the integral of motion associated with the dynamical system.
机译:最近的作用表明,由基于单平均运动方程的分析模型来描述由与太阳辐射压力耦合的行星熔断引起的动力学。耦合的扰动会影响轨道的偏心,倾斜和方向的演变,相对于太阳地线。该模型可以提供驱动相空间演化的中央和双曲不变歧管的位置,并且可以应用动态系统理论来对实际应用进行初步任务分析。在这项工作中,我们将通过专注于与给定动态行为相关的时间尺度来继续分析。首先,推导出相位空间进化的分叉图,然后描述从Leo区域的遮光吸收的可能开采。基于线性理论的基于线性理论,作为半主轴,区域对质量比,相对于太阳的初始相位和与与之相关的运动的积分的函数来分析相应的时间尺度的表征。动态系统。

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