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Architecture and CONOPS of Next-Generation Ground Network for Communications and Tracking of Interplanetary SmallSats

机译:行星际小卫星通信和跟踪的下一代地面网络的架构和CONOPS

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As small spacecraft venture out of Earth orbit, they will encounter challenges not experienced or addressed by the numerous low Earth orbit (LEO) CubeSat and Smallsat missions staged to date. The LEO CubeSats typically use low-cost, proven CubeSat radios, antennas, and university ground stations with small apertures. As more ambitious yet cost-constrained space mission concepts to the Moon and beyond are being developed, CubeSats and smallsats have the potential to provide a more affordable platform for exploring deep space and performing the associated science. Some of the challenges that have, so far, slowed the proliferation of small interplanetary spacecraft are those of communications and navigation. In, we discussed the communications and tracking challenges facing interplanetary smallsats and CubeSats, and the next-generation ground network architecture being evolved to mitigate those challenges. In this paper we summarized the results in. Based on our understanding on the mission set of interplanetary smallsats and ground network architecture, we discuss the preliminary thoughts on the operations concept that would transform the current DSN architecture to a federated network architecture that, in addition to traditional deep space missions, can also provide just-in-time communications and tracking services to a large number of interplanetary smallsats/CubeSats. We focus on the following topics: 1. DSN compatibility and interfaces. 2. Challenges on integrating heterogeneous non-DSN antennas into the DSN service management and service execution framework. 3. Cross-support with university antennas, with other space agencies, and with other research centers. 4. Network planning and scheduling concepts that maximize pass opportunities for smallsats and CubeSats.
机译:作为小型航天器进入地球轨道之外,它们将遇到迄今为止尚未完成的众多低地球轨道(LEO)CubeSat和Smallsat任务未经历或未解决的挑战。 LEO CubeSat通常使用经过验证的低成本CubeSat无线电,天线和孔径较小的大学地面站。随着越来越雄心勃勃但又受成本限制的太空任务概念在月球及更远地区的发展,CubeSats和smallsats有潜力为探索深空和执行相关科学提供更实惠的平台。迄今为止,已经减缓了小型行星际航天器扩散的一些挑战是通信和导航方面的挑战。在其中,我们讨论了行星际小卫星和CubeSat面临的通信和跟踪挑战,以及下一代地面网络体系结构正在发展以缓解这些挑战。在本文中,我们总结了其中的结果。基于对星际小卫星和地面网络体系结构的任务集的理解,我们讨论了有关将当前DSN体系结构转换为联邦网络体系结构的操作概念的初步思想。除了传统的深空任务外,它还可以为大量行星际小卫星/立方体卫星提供及时的通信和跟踪服务。我们专注于以下主题:1. DSN兼容性和接口。 2.将异构非DSN天线集成到DSN服务管理和服务执行框架中的挑战。 3.与大学天线,其他空间机构和其他研究中心交叉支持。 4.网络规划和调度概念,可最大限度地提高小型卫星和立方卫星的通过机会。

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