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Exploiting Locality of Interest in Online Social Networks

机译:利用在线社交网络中的兴趣点

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Online Social Networks (OSN) are fun, popular, and socially significant. An integral part of their success is the immense size of their global user base. To provide a consistent service to all users, Facebook, the world's largest OSN, is heavily dependent on centralized U.S. data centers, which renders service outside of the U.S. sluggish and wasteful of Internet bandwidth. In this paper, we investigate the detailed causes of these two problems and identify mitigation opportunities. Because details of Facebook's service remain proprietary, we treat the OSN as a black box and reverse engineer its operation from publicly available traces. We find that contrary to current wisdom, OSN state is amenable to partitioning and that its fine grained distribution and processing can significantly improve performance without loss in service consistency. Through simulations of reconstructed Facebook traffic over measured Internet paths, we show that user requests can be processed 79% faster and use 91% less bandwidth. We conclude that the partitioning of OSN state is an attractive scaling strategy for Facebook and other OSN services.
机译:在线社交网络(OSN)有趣,流行且具有社会意义。他们成功的不可或缺的部分是其全球用户群的巨大规模。为了向所有用户提供一致的服务,全球最大的OSN Facebook严重依赖美国的集中数据中心,这使得美国境外的服务变得缓慢且浪费互联网带宽。在本文中,我们调查了这两个问题的详细原因,并确定了缓解机会。由于Facebook服务的详细信息仍为专有信息,因此我们将OSN视为黑匣子,并从公开的跟踪信息中反向工程其操作。我们发现,与当前的观点相反,OSN状态适合分区,并且其细粒度的分布和处理可以显着提高性能而不会损失服务一致性。通过对在测量的Internet路径上重构的Facebook流量的仿真,我们表明可以将用户请求的处理速度提高79%,并将带宽使用量减少91%。我们得出结论,OSN状态的分区对于Facebook和其他OSN服务而言是一种有吸引力的扩展策略。

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