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Enhancing Cache Invalidation in Mobile Environments

机译:在移动环境中增强缓存无效化

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摘要

The diversity of services delivered over wireless channels has increased people desire in ubiquitously accessing these services from their mobile devices. However, an ubiquitous mobile computing environment faces several challenges such as scarce bandwidth, limited energy resources, and frequent disconnection of the server and mobile devices. Caching frequently accessed data is an effective technique to improve the network performance since it reduces the network congestion, the query delay, and the power consumption. When caching is used, maintaining cache consistency becomes a major challenge since data items that are updated on the server should be also updated in the cache of the mobile devices. In this paper we propose a new cache invalidation scheme called Selective Adaptive Sorted (SAS) cache invalidation strategy. The proposed scheme overcomes the false invalidation problem that exists in most of the invalidation strategies found in the literature. The performance of the proposed strategy is evaluated. Results showed that a significant cost reduction can be obtained with SAS when measuring performance metrics such as delay, bandwidth, and energy.
机译:通过无线信道交付的服务的多样性已使人们越来越渴望从他们的移动设备无处不在地访问这些服务。但是,无处不在的移动计算环境面临一些挑战,例如带宽不足,能源资源有限以及服务器与移动设备频繁断开连接。缓存经常访问的数据是提高网络性能的有效技术,因为它可以减少网络拥塞,查询延迟和功耗。使用缓存时,保持缓存一致性成为一项主要挑战,因为在服务器上更新的数据项也应在移动设备的缓存中进行更新。在本文中,我们提出了一种新的缓存无效方案,称为选择性自适应排序(SAS)缓存无效策略。所提出的方案克服了文献中发现的大多数无效策略中存在的虚假无效问题。评估了所提出策略的性能。结果表明,在测量性能指标(例如延迟,带宽和能量)时,使用SAS可以显着降低成本。

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