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High-Throughput Distributed Spacecraft Network: architecture and multiple access technologies

机译:高通量分布式航天器网络:体系结构和多路访问技术

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BBN Technologies (BBN), under a task for the Space Communications Project, designed the High-Throughput Distributed Spacecraft Network, or Hi-DSN. It provides a self-forming vertically integrated network infrastructure for establishing and maintaining high-throughput multi-hop communications among spacecraft operating in diverse orbits. The Hi-DSN integrates the predictability of orbital movement to establish and maintain cross-links and multi-hop routes, ad hoc networking capabilities to autonomously discover "new" neighbors, null-steered spatial multiplexing to maximize re-use of the allocated spectrum, and variable-rate cross-links to maximize network connectivity under large inter-spacecraft distances and distance differentials. The Hi-DSN architecture is hierarchical and can be extended to provide dynamic "terminal affiliation and handoff" for transferring data from spacecraft to aircraft and spacecraft to ground terminals and sensors. The descriptions included in this paper focus on the aspects of the architecture that are relevant for the planet vicinity networks, part of NASA's future space-based internetwork communications infrastructure, and specifically on the enabling physical-layer, medium-access control (MAC) layer and sub-network level (i.e., below IP) technologies required to create a scalable communications infrastructure that can be used to extend the (terrestrial) Internet to space. In a follow-on development for NASA, BBN is designing the architectural extensions and developing the protocols to extend Internet VPNs to space, or Space VPNs.
机译:BBN Technologies(BBN)根据空间通信项目的任务,设计了高通量分布式航天器网络或Hi-DSN。它提供了一个自我形成的垂直集成网络基础结构,用于在不同轨道上运行的航天器之间建立和维护高吞吐量的多跳通信。 Hi-DSN整合了轨道运动的可预测性,以建立和维护交叉链接和多跳路线,具有自组织网络功能以自主发现“新”邻居,采用空导向的空间多路复用以最大程度地重用分配的频谱,以及可变速率的交叉链接,以在较大的航天器间距离和距离差异下最大化网络连接性。 Hi-DSN体系结构是分层的,可以扩展以提供动态的“终端从属关系和切换”,以便将数据从航天器传输到飞机,从航天器传输到地面终端和传感器。本文中的描述集中在与行星附近网络相关的架构方面,NASA未来基于天基的互联网络通信基础架构的一部分,尤其是支持物理层,媒体访问控制(MAC)层以及创建可扩展的通信基础结构所需的子网级别(即低于IP)技术,可用于将(地面)Internet扩展到空间。在NASA的后续开发中,BBN正在设计体系结构扩展并开发协议,以将Internet VPN扩展到太空或Space VPN。

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