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Edge (of the Earth) Replication: Optimizing Content Delivery in Large LEO Satellite Communication Networks

机译:边缘(地球)复制:优化大型LEO卫星通信网络中的内容交付

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Large low earth orbit (LEO) satellite networks such as SpaceX’s Starlink constellation promise to deliver low-latency, high-bandwidth Internet access with global coverage. As an alternative to terrestrial fiber as a global Internet backbone, they could potentially serve billions of Internet-connected devices. Currently, operators of CDNs exploit the hierarchical topology of the Internet to place points-of-presence near users, yet this approach is no longer possible when the topology changes to a single, wide-area, converged access and backhaul network.In this paper, we explore the opportunities of points-of-presence for CDNs within the satellite network itself, as it could provide better access latency for users while reducing operational costs for the satellite Internet service providers. We propose four strategies for selecting points-of-presence in satellite constellations that we evaluate through extensive simulation. In one case, we find that replicating web content within satellites can reduce bandwidth usage in the constellation by 93% over an approach without replication in the network, while storing only 0.01% of all content in individual satellites.
机译:大型低地球轨道(LEO)卫星网络如Spacex的Starlink星座承诺提供低延迟,高带宽互联网接入全局覆盖范围。作为陆地纤维作为全球互联网骨架的替代方案,它们可能潜行数十亿个连接设备。目前,CDNS的运营商利用Internet的分层拓扑,以放置在用户附近的位置点,但在拓扑变化到单个,广域,融合访问和回程网络时,不再可能不再可能。本文,我们探索卫星网络本身内CDNS的存在点的机会,因为它可以为用户提供更好的访问延迟,同时降低卫星互联网服务提供商的运营成本。我们提出了四种策略,用于选择我们通过广泛模拟评估的卫星星座中的存在点。在一个情况下,我们发现,在网络中,在没有复制的情况下,在网上复制卫星内的Web内容可以在没有复制的情况下,在没有复制的情况下,在没有复制的方法中,在没有复制的方法中,在单个卫星中仅存储0.01%的所有内容。

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