确定固定安装可展开太阳能板位置的仿真方法

H. Septanto, Oetomo Sudjana
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引用次数: 2

摘要

小卫星的普及、发展和良好的在轨性能,使其承载任务的发展趋势变得更加复杂。由于小型卫星可能会带来更高功率要求的有效载荷来执行任务。这种有效载荷可能无法由电力系统支持,其中是太阳能电池板和电池的组合。小型卫星还存在体积和质量的限制,无法为太阳能帆板带来主动运动机构。要回答的一个自然问题是,相对于主体卫星,可展开太阳能电池板的最佳安装位置(放置位置)是什么,以便电力系统可以获得最大的太阳能。本文提出了一种基于仿真的方法来确定固定安装可展开太阳能电池板系统的放置位置,使其能够提供最大的功率。为了验证该方法的有效性,本文给出了两种不同卫星轨道和11种情况下的仿真数据总结。根据仿真结果,给出了固定安装可展开太阳能板的位置选项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simu1ation Approach to Determine Position of the Fixed Installed Deployable Solar Panel
The popularity, development and promising performance in orbit for small satellite make it’s trends of mission to be run by the satellite become more complex. Since the small satellites may brought payload with higher power requirement to run its mission. This payload may not be able supported by the power system, in which is a combination of solar panel with batteries. Small satellite also has size and mass constraints which made it won’t be able to bring active motion mechanism for the solar panel. A natural question to be answered is where the best installation position (placement) of the deployable solar panel with respect to the body satellite such that the power system can acquire maximal solar energy. This paper proposes simulation based method to determine placement (position) of the fixed installed deployable solar panel system such that maximal power can be provided. To validate this method, simulations data summary is presented in this paper where concerns in two different orbits of satellites and eleven cases that accommodates. Based in the simulation results, options for the position of the fixed installed deployable solar panel is provided.
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