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Scoop: Decentralized and Opportunistic Multicasting of Information Streams

机译:Scoop:信息流的分散和机会多播

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摘要

We consider the problem of delivering information streams to interested mobile users, leveraging both access to the infrastructure and device-to-device data transfers. The goal is to design practical relaying algorithms that aim at optimizing a global system objective that accounts for two important aspects: first, the user interest in content with respect to its type and delivery time; and, second, resource constraints such as storage and transmission costs. We first examine a set of real-world datasets reporting contacts between users moving in relatively restricted geographic areas (e.g. a city). These datasets provide evidence that significant performance gains can be achieved by extending the information dissemination from one to two hops, and that using longer paths only brings marginal benefits. We also show that correlation of delays through different paths is typically significant, thus asking for system design that would allow for general user mobility. We then propose a class of relaying strategies (referred to as Sc:oop) that aim at optimizing a global system objective, are fully decentralized, require only locally observable states by individual devices, and allow for general user mobility. These properties characterize a practical scheme whose efficiency is evaluated using real-world mobility traces.
机译:我们考虑利用对基础架构的访问和设备到设备的数据传输来向感兴趣的移动用户传递信息流的问题。目的是设计实用的中继算法,旨在优化考虑两个重要方面的全局系统目标:首先,用户对内容的类型和交付时间感兴趣。第二,资源限制,例如存储和传输成本。我们首先检查了一组真实的数据集,这些数据集报告了在相对受限的地理区域(例如城市)中移动的用户之间的联系。这些数据集提供的证据表明,通过将信息传播从一跳扩展到两跳可以实现显着的性能提升,并且使用更长的路径只会带来边际收益。我们还表明,通过不同路径的延迟之间的相关性通常很重要,因此要求系统设计允许一般的用户移动性。然后,我们提出了一类中继策略(称为Sc:oop),旨在优化全局系统目标,完全分散化,只需要单个设备在本地观察状态并允许一般用户移动。这些特性描述了一种实用的方案,其效率是使用现实世界中的移动轨迹进行评估的。

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