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Research on solar sail halo orbits around artificial lagrange point

机译:人工拉格朗士法地区太阳能风帆光环轨道研究

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The successful launch of the first satellite around the collinear libration point—International Sun-Earth Explorer-3(ISEE-3), undrawed the prelude of the mission around the libration point. And now, along with the development of the technology of low thrust propulsion and the renaissance of the technology of the solar sail, it has received considerable attention that how to utilize the solar sail in the space mission around the collinear libration point. This paper bases on the Circular Restricted Three-Body Problem(CRTBP), and takes the traditional L1 point as example, studies on the halo orbit around the traditional L1 point, and discusses the solar sail artificial L1 point, analyses the variation of the position of the artificial L1 point with the lightness number of the solar sail, and then investigates the solar sail halo orbit around the artificial L1 point, and compares it with the halo orbit around the traditional L1 point, at the end, analyses the effect of the difference of the lightness number and the out-of-plane amplitude on the orbit, and the variation of the orbit period with the lightness number.
机译:成功推出了第一个卫星周围的联合肆虐 - 国际Sun-explorer-3(Isee-3),取消了自由点周围的任务的初步。而现在,随着发展技术的低推力推进和太阳帆技术的文艺复兴,它得到了相当大的关注,如何利用太阳能在共线解点周围的空间任务中。本文基于循环限制的三体问题(CRTBP),并采取传统的L1点为例,研究了传统L1点围绕着光环轨道的研究,并讨论了太阳帆人造L1点,分析了位置的变化人造L1点与太阳帆的亮度数,然后调查人工L1点周围的太阳帆晕轨道,并将其与传统L1点周围的Halo轨道进行比较,最后分析了效果轨道上的智能数量和平面外振幅的差异,以及轨道周期的变化。

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