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Orbit control of high area-to-mass ratio spacecraft using electrochromic coating

机译:使用电致变色涂层的高面积质量比航天器的轨道控制

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摘要

This paper presents a novel method for the orbit control of high area-to-mass ratio spacecraft, such as spacecraft-on-a-chip, future „smart dust‟ devices and inflatable spacecraft. By changing the reflectivity coefficient of an electrochromic coating of the spacecraft, the perturbing effect of solar radiation pressure (SRP) is exploited to enable long-lived orbits and to control formations, without the need for propellant consumption or active pointing. The spacecraft is coated with a thin film of an electrochromic material that changes its reflectivity coefficient when a small current is applied. The change of reflectance alters the fraction of the radiation pressure force that is transmitted to the satellite, and hence has a direct effect on the spacecraft orbit evolution. The orbital element space is analysed to identify orbits which can be stabilised with electrochromic orbit control. A closed-loop feedback control method using an artificial potential field approach is introduced to stabilise these otherwise unsteady orbits. The stability of this solution is analysed and verified through numerical simulation. Finally, a test case is simulated in which the control method is used to perform orbital manoeuvres for a spacecraft formation.
机译:本文提出了一种高面积质量比航天器的轨道控制新方法,例如片上航天器,未来的“智能尘埃”设备和充气航天器。通过改变航天器电致变色涂层的反射系数,可以利用太阳辐射压力(SRP)的扰动作用来实现长寿命轨道并控制地层,而无需消耗推进剂或主动瞄准。航天器上涂有一层电致变色材料薄膜,当施加小电流时,该薄膜会改变其反射系数。反射率的变化会改变发射到卫星的辐射压力的比例,从而直接影响航天器的轨道演变。分析轨道元素空间以识别可以用电致变色轨道控制稳定的轨道。引入了使用人工势场方法的闭环反馈控制方法,以稳定这些原本不稳定的轨道。通过数值模拟分析和验证了该解决方案的稳定性。最后,模拟了一个测试案例,在该案例中,控制方法用于执行航天器编队的轨道操纵。

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