用于宇宙射线探测的纳米卫星方案

A. Paolozzi, M. Abbrescia, G. Righini, I. Ciufolini, C. Paris, L. Schirone, G. Sindoni, S. Bianco, L. Benussi, D. Piccolo, G. Saviano, M. Mazziotta
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引用次数: 0

摘要

本文介绍了一种用于宇宙射线探测的纳米卫星。主载荷由粒子探测器组成。第二个有效载荷可由一种新型光伏电池的控制单元构成,这种电池将具有双重目标:测试性能并为纳米卫星提供额外电力。目前正在研究使用推进模块的可能性,以防在a阶段研究的后期,将实现将轨道从圆形(商业发射中最常用的)转移到椭圆轨道的额外优势。发射机会相对频繁,因为纳米卫星市场正在迅速增长,发射供应商正在将其纳入其业务。服务舱将提供电力、无线电通信、机载计算机和姿态控制。热控制将通过使用具有适当吸收率和发射率的油漆和热毯来被动地实现。这种方法的问题是,油漆和太阳能电池必须共享纳米卫星的外表面,除非将包括可展开的太阳能电池阵列。宇宙射线除了是我们银河系内外来源信息的重要载体外,还可能对地球环境以及轨道卫星和载人航天等技术先进的人类活动产生影响。这颗卫星的目的有两个:训练学生在太空任务的所有阶段进行动手活动,发展粒子探测器,以及研究探测到的宇宙射线的特性,这可能对基础物理学和地球环境研究有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A proposal for a nanosatellite for cosmic ray detection
In this paper we present a nanosatellite for cosmic ray detection. The main payload is constituted by a particle detector. A second payload may be constituted by the control unit of an innovative type of photovoltaic cells that will have a twofold objective: test the performances and provide additional power to the nanosatellite. It is under investigation the possibility of using a propulsion module in case, later in the phase A study, will be realized an additional advantage to transfer the orbit from circular (the most commonly used in commercial launches) to elliptical. Launch opportunities are relatively frequent since the market of nanosatellites is rapidly increasing and launch providers are including those into their business. The service module will provide power, radio communication, on board computer and attitude control. Thermal control will be achieved passively by the use of paint with proper absorptivity and emissivity and thermal blankets. The problem with this approach is that paint and solar cells have to share the external surface of the nanosatellite, unless a deployable solar array will be included. Besides being an important carrier of information from sources in our galaxy and beyond, cosmic rays may have influence in the terrestrial environment as well as in the technologically advanced human activities, such as orbiting satellites and human spaceflight. The objective of the satellite will be twofold: to train students with hands-on activities through all the phases of a space mission and the development of particle detectors as well as to study the properties of the detected cosmic rays with possible implication in fundamental physics and Earth environmental studies.
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