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Centralized and Decentralized Routing Solutions for Present and Future Space Information Networks

机译:目前和未来空间信息网络的集中和分散路由解决方案

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摘要

Space information networks (SINs) are pushing the boundaries of networking into near-Earth orbit and beyond. Nevertheless, the harsh and costly space context forces most risk-prone missions to be designed with minimal chance of failure. The careful consideration of routing protocols used to connect the fleet is by no means the exception. Although decentralized SIN routing schemes have received the most attention of the research community, centralized approaches are captivating the industry, as these come with tighter control and enable troubleshooting of valuable space assets from a mission control center on the ground. In this article, we settle the matter by qualitatively and quantitatively comparing both SIN paradigms. We propose two novel centralized routing schemes, and evaluate their resulting performance against contact graph routing (CGR), the decentralized state of the art. In this evaluation, computational effort, memory utilization, and energy consumption are taken as figures of merit. The outcome provides compelling evidence that centralized routing schemes can safely, successfully, and efficiently connect SINs with up to 10,000 daily contacts, while CGR can be better entrusted with larger-scale SIN deployments.
机译:空间信息网络(SINS)正在推动近地轨道和超越接近地球的边界。尽管如此,苛刻和昂贵的空间上下文迫使大多数风险易于的任务设计,可能会有最小的失败机会。仔细考虑用于连接船队的路由协议绝不是例外。虽然分散的罪行路由计划得到了研究界最受关注的,但集中方法正在迷住行业,因为这些方法具有更严格的控制,并能够从地面上的任务控制中心进行有价值的空间资产进行故障排除。在本文中,我们通过定性和定量比较SIN范式来解决问题。我们提出了两种新型集中路由方案,并评估了它们对接触曲线路由(CGR)的结果表现,是本领域的分散状态。在这种评估中,计算工作,内存利用率和能量消耗被视为优点的图。结果提供了令人信服的证据,即集中路由方案可以安全地,成功,高效地连接何种循环,每日触点可达10,000次,而CBR可以更好地委托大规模的SIN部署。

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  • 来源
    《IEEE Network》 |2021年第4期|110-117|共8页
  • 作者单位

    Univ Lyon CONICET Lyon France|Univ Nacl Cordoba Cordoba Argentina|Saarland Univ Saarbrucken Germany;

    Univ Nacl Cordoba FAMAF Cordoba Argentina;

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  • 正文语种 eng
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