无线边缘计算中基于相似性感知的流行度缓存

Xianglin Wei, Jianwei Liu, Junwei Wang, Yangang Wang, Jianhua Fan
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引用次数: 2

摘要

移动边缘计算(MEC)通过使数据处理、计算和缓存服务更接近数据生成源,可以大大减少移动设备经历的延迟及其能耗。然而,现有的边缘缓存机制通常侧重于根据请求历史预测内容或数据块的流行程度。这将导致新到达的内容启动缓慢的问题,并且无法满足MEC的上下文感知需求。此外,内容和移动设备的动态性还没有得到充分的研究。这些都阻碍了MEC缓存的进一步推广和应用。在此背景下,本文针对无线边缘缓存场景下的缓存问题,提出了一种新的动态缓存架构。在我们的缓存架构中,我们全面考虑了用户的移动性和内容的动态性,而不是像当前许多工作那样采用静态假设。在此基础上,提出了一种基于相似度感知的流行度缓存算法(SAPoC),该算法在进行缓存决策时考虑内容的新鲜度、短期流行度和内容之间的相似度。通过大量的仿真实验来评估SAPoC算法的性能,结果表明SAPoC算法在缓存命中率和能耗方面都优于几种典型算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Similarity-aware popularity-based caching in wireless edge computing
Mobile edge computing (MEC) can greatly reduce the latency experienced by mobile devices and their energy consumption through bringing data processing, computing, and caching services closer to the source of data generation. However, existing edge caching mechanisms usually focus on predicting the popularity of contents or data chunks based on their request history. This will lead to a slow start problem for the newly arrived contents and fail to fulfill MEC's context-aware requirements. Moreover, the dynamic nature of contents as well as mobile devices has not been fully studied. Both of them hinder the further promotion and application of MEC caching. In this backdrop, this paper aims to tackle the caching problem in wireless edge caching scenarios, and a new dynamic caching architecture is proposed. The mobility of users and the dynamics nature of contents are considered comprehensively in our caching architecture rather than adopting a static assumption as that in many current efforts. Based on this framework, a Similarity-Aware Popularity-based Caching (SAPoC) algorithm is proposed which considers a content's freshness, short-term popularity, and the similarity between contents when making caching decisions. Extensive simulation experiments have been conducted to evaluate SAPoC's performance, and the results have shown that SAPoC outperforms several typical proposals in both cache hit ratio and energy consumption.
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