论文标题
基于NDN的LEO卫星网络星座中的缓存位置
Cache Placement in an NDN Based LEO Satellite Network Constellation
论文作者
论文摘要
更适合以信息为中心的替代方案的人,以替代成功的,尽管是衰老的TCP/IP Internet体系结构的成功,但努力。命名的数据网络(NDN)体系结构可能是成为未来互联网网络层的主要竞争者之一,这要归功于其对移动性,网络内缓存,安全性,安全性以及总体上更好地适应当前网络应用程序需求的支持。同时,目前正在部署大量的卫星星座(LEO),以提供网络连接的后端。预计,由于卫星间的通信链接,这些星座很快就会起到适当的网络作用。这些新的卫星网络将能够从其绿地状态和新的网络体系结构中受益。在本文中,我们分析了如何部署基于NDN的LEO卫星网络的网络缓存。特别是,我们展示了如何共同选择每个内容的最合适的缓存节点,以及如何以两种简单的替代方式转发整个星座的数据。绩效结果表明,提出的缓存和转发策略将路径长度降低到三分之一,只有几个缓存节点,同时,有助于沿网络扩大负载。
The efforts to replace the successful, albeit aging, TCP/IP Internet architecture with a better suited one have driving research interest to information-centric alternatives. The Named Data Networking (NDN) architecture is probably one of the main contenders to become the network layer of the future Internet thanks to its inbuilt support for mobility, in-network caching, security and, in general, for being better adapted to the needs of current network applications. At the same time, massive satellite constellations are currently being deployed in low Earth orbits (LEO) to provide a backend for network connectivity. It is expected that, very soon, these constellations will function as proper networks thanks to inter-satellite communication links. These new satellite networks will be able to benefit from their greenfield status and the new network architectures. In this paper we analyze how to deploy the network caches of an NDN-based LEO satellite network. In particular, we show how we can jointly select the most appropriate caching nodes for each piece of content and how to forward data across the constellation in two simple alternative ways. Performance results show that the caching and forwarding strategies proposed reduce path lengths up to a third with just a few caching nodes while, simultaneously, helping to spread the load along the network.