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Utility and constraints of PocketQubes

机译:工具和PocketQubes的限制

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PocketQubes are a form factor of highly miniaturized satellites with a body of one or more cubic units of 5 cm. In this paper, the characteristics of PocketQubes in terms of their constraints and their (potential) utility are treated. To avoid space debris and limit collision risk, the orbits of PocketQubes need to be constraint. An analysis of orbital decay characteristics has been carried out which, considering existing space regulations and a pro-active attitude, PocketQubes should preferably be launched in low Earth orbits below 400 km altitude. Due to technical constraints, such as form factor, power and attitude control, the domain of applications for single PocketQube missions is limited. Still, they can act as low-cost training and technology demonstration platforms. To make PocketQubes an attractive platform for other types of missions, not only the launch cost, but also the development, production and operations cost should be significantly lower than CubeSats. When the PocketQube platform matures and produced in high numbers, networks of PocketQubes can enable new applications. Applications considered feasible are in the field of (but not limited to) continuous surveillance using optical instruments, gravity field monitoring using precise orbit determination, in-situ measurements of the space environment, low data rate or bandwidth communication services and inexpensive probes around other celestial bodies.
机译:Pocketqubes是高度小型化卫星的形状因素,具有5厘米的一个或多个立方单元的身体。在本文中,对其约束及其(潜在)效用的PocketQubes的特征得到处理。为避免空间碎片和限制碰撞风险,PocketQubes的轨道需要约束。考虑到现有的空间规则和积极活动态度,PocketQubes优选在低于400公里的高度低于400公里的高度低于400公里的高度的低地轨道上发射轨道衰减特征的分析。由于技术限制,如外形,功率和姿态控制,单个PocketQube任务的应用领域有限。尽管如此,他们仍然可以充当低成本的培训和技术示范平台。为了使PocketQubes成为其他类型任务的有吸引​​力的平台,而不仅是发射成本,而且开发,生产和运营成本应该明显低于CubeSats。当PocketQube平台成熟并以高数量产生时,PocketQubes网络可以实现新的应用程序。认为可行的应用是使用光学仪器的(但不限于)连续监视的领域,使用精确的轨道确定,原位测量空间环境,低数据速率或带宽通信服务以及其他天体的廉价探头身体。

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