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Orbit Radial Dynamic Analysis of Two-Craft Coulomb Formation at Libration Points

机译:两克拉库仑形成点轨道径向动力学分析

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摘要

The linearized orbit radial dynamics and stability analysis of a two-craft virtual Coulomb structure at Earth-moon libration points are investigated. The linearized study assumes that the sunlit areas of the two-craft structure are equal such that the differential solar radiation pressure on the formation is zero. The relative distance between the two satellites of the Coulomb tether is controlled using electrostatic Coulomb forces. The separation distance between the satellites is stabilized with a charge feedback law that maintains the relative distance at a constant value. The electrostatic virtual tether between the two craft is capable of both tensile and compressive forces. The gravity gradient torques on the formation due to the two celestial objects is exploited to stabilize the Coulomb tether formation in the orbit radial direction. Controlling the separation distance stabilizes the in-plane rotation angle; however, the out-of-plane rotational motion is not affected by the spacecraft charge control law. The new two-craft dynamics at the libration points is provided as a general framework in which circular Earth orbit dynamics form a special case. Furthermore, an alternate linear control technique for a two-craft Coulomb virtual tether formation's radial equilibrium at a collinear libration point is developed and analyzed. Numerical simulations using charge feedback law are presented at both a collinear and a triangular libration point.
机译:研究了在月球释放点两机虚拟库仑结构的线性轨道径向动力学和稳定性分析。线性化研究假设两人飞行器结构的日照面积相等,因此地层上的太阳辐射压差为零。使用静电库仑力控制库仑系绳的两个卫星之间的相对距离。卫星之间的间隔距离通过电荷反馈定律得以稳定,该电荷反馈定律将相对距离保持在恒定值。两种飞行器之间的静电虚拟系绳能够承受拉力和压力。利用由于两个天体引起的地层上的重力梯度转矩来稳定库仑系绳地层在轨道径向上的稳定性。控制分离距离可稳定面内旋转角度;但是,平面外旋转运动不受航天器电荷控制法则的影响。在解放点提供了新的两飞行器动力学作为通用框架,其中圆形地球轨道动力学形成了特例。此外,还开发并分析了共线解放点上的两机库仑虚拟系绳地层径向平衡的替代线性控制技术。在共线的和三角形的释放点都给出了使用电荷反馈定律的数值模拟。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2014年第2期|682-691|共10页
  • 作者单位

    University of Colorado, Boulder, Colorado 80309,Aerospace Engineering Sciences Department;

    University of Colorado, Boulder, Colorado 80309,Aerospace Engineering Sciences Department;

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  • 正文语种 eng
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