Dynamic Cache Invalidation Scheme in IR-Based Wireless Environments

Yeim-Kuan Chang, Y. Ting, Tai-Hong Lin
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引用次数: 5

Abstract

Traditional cache invalidation schemes are not suitable to be employed in wireless environments due to the affections of mobility, energy consumption, and limited bandwidth. Cache invalidation report (IR) is proposed to deal with the cache consistency problem. However, the main drawback of IR-based schemes is the long latency of data access because the mobile hosts (MHs) need to wait next IR interval for cache invalidation when the cache hit happens. In this paper, we propose a dynamic invalidation report (DIR) to reduce the latency of data access when the MHs query data. DIR contains an early cache validation mechanism by utilizing the validation messages. Therefore, the MHs can verify their cached data as soon as possible. Next, we design a predictive method to dynamically adjust IR interval to further reduce the latency called DIR-AI (DIR with adjustable interval) scheme. Finally, we evaluate the performance of the DIR and DIR-AI and compare them with the existing invalidation report schemes by using NS2 (network simulator). The experimental results show that DIR reduces averagely 54.3% and 34.3% of latency; DIR-AI reduces averagely 57.35 and 38.6% of latency compared with TS (TimeStamp) and UIR (updated IR) schemes respectively.
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基于红外的无线环境中的动态缓存失效方案
由于移动性、能量消耗和带宽限制的影响,传统的缓存失效方案不适合在无线环境中使用。为了解决缓存一致性问题,提出了缓存失效报告(IR)。然而,基于IR的方案的主要缺点是数据访问的延迟时间长,因为当缓存命中发生时,移动主机(mh)需要等待下一个IR间隔来使缓存失效。在本文中,我们提出了一种动态失效报告(dynamic invalidation report, DIR)来减少mh查询数据时的数据访问延迟。DIR通过利用验证消息包含一个早期缓存验证机制。因此,mh可以尽快验证其缓存的数据。接下来,我们设计了一种动态调整红外间隔的预测方法,以进一步减少延迟,称为DIR- ai(可调间隔DIR)方案。最后,我们利用NS2(网络模拟器)评估了DIR和DIR- ai的性能,并将它们与现有的无效报告方案进行了比较。实验结果表明,DIR平均减少了54.3%和34.3%的延迟;与TS (TimeStamp)和UIR (updated IR)方案相比,DIR-AI分别平均减少57.35%和38.6%的延迟。
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