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Performance evaluation of an optimal cache replacement policy for wireless data dissemination

机译:无线数据分发的最佳缓存替换策略的性能评估

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Data caching at mobile clients is an important technique for improving the performance of wireless data dissemination systems. However, variable data sizes, data updates, limited client resources, and frequent client disconnections make cache management a challenge. We propose a gain-based cache replacement policy, Min-SAUD, for wireless data dissemination when cache consistency must be enforced before a cached item is used. Min-SAUD considers several factors that affect cache performance, namely, access probability, update frequency, data size, retrieval delay, and cache validation cost. The paper employs stretch as the major performance metric since it accounts for the data service time and, thus, is fair when items have different sizes. We prove that Min-SAUD achieves optimal stretch under some standard assumptions. Moreover, a series of simulation experiments have been conducted to thoroughly evaluate the performance of Min-SAUD under various system configurations. The simulation results show that, in most cases, the Min-SAUD replacement policy substantially outperforms two existing policies, namely, LRU and SAIU.
机译:移动客户端的数据缓存是提高无线数据分发系统性能的一项重要技术。但是,可变的数据大小,数据更新,有限的客户端资源以及频繁的客户端断开连接使高速缓存管理成为一个挑战。当必须在使用缓存项之前强制执行缓存一致性时,我们建议基于增益的缓存替换策略Min-SAUD,用于无线数据分发。 Min-SAUD考虑了一些影响缓存性能的因素,即访问概率,更新频率,数据大小,检索延迟和缓存验证成本。本文使用拉伸作为主要性能指标,因为它考虑了数据服务时间,因此,当项目具有不同大小时,它是公平的。我们证明,在某些标准假设下,Min-SAUD可获得最佳拉伸。此外,已经进行了一系列仿真实验,以全面评估Min-SAUD在各种系统配置下的性能。仿真结果表明,在大多数情况下,Min-SAUD替换策略大大优于LRU和SAIU这两个现有策略。

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