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Fog Service in Space Information Network: Architecture, Use Case, Security and Challenges

机译:空间信息网络中的雾服务:架构,用例,安全和挑战

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摘要

As a large heterogeneous information infrastructure, space terrestrial coinformation network provides a reliable and effective services for all types of space-based users, aviation users, marine users and land-based users through satellite networks. However, the precious computing and storage resources of satellite nodes during the service life is not fully exploited, and the enormous potential of the space information network (SIN) needs to be tapped to provide personalized services to end users. In this paper, to improve the utilization of satellite node resources and better meet the real-time requirements of compute-intensive and delay-sensitive users, we propose the SIN fog service. SIN fog service is an extension of fog service paradigm. The visionary concept is to integrate the computing power of satellite network edge nodes, enabling a wide range of benefits, including enhanced computing power, decreased bandwidth, reduced latency and without the need to lay complex and expensive ground networks, which can be widely developed in location navigation, environmental detection, traffic management, anti-terrorism, etc. We present the architecture and a potential use case of the SIN fog service. Then we discuss several related key security and challenges and finally the anti-quantum and efficient mutual-authentication protocol is introduced.
机译:作为一个大型异构信息基础设施,空间地面交换网络通过卫星网络为所有类型的空间用户,航空用户,海洋用户和陆基用户提供可靠而有效的服务。然而,在使用寿命期间的卫星节点的贵重计算和存储资源未充分利用,并且需要轻拍空间信息网络(SIN)的巨大潜力以向最终用户提供个性化服务。在本文中,为了提高卫星节点资源的利用,更好地满足计算密集型和延迟敏感用户的实时要求,我们提出了SIN FOG服务。 SIN FOG服务是雾化服务范式的扩展。值概念是集成卫星网络边缘节点的计算能力,实现了广泛的益处,包括增强的计算能力,减少带宽,减少等待时间,并且无需铺设复杂和昂贵的地面网络,这可以广泛开发位置导航,环境检测,交通管理,反恐等。我们介绍了SIN FOG服务的架构和潜在用例。然后我们讨论了几个相关的关键安全性和挑战,最后介绍了抗量子和有效的互认证协议。

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