A novel two tiered proxy caching scheme for video on demand applications

A. Nayyeri, M. Hashemi, N. Yazdani
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Abstract

Considering the constant increase of network traffic, and existing bandwidth limitations, caching Internet objects is an essential technique to improve the provided quality of service and to reduce the network load. Caching is particularly helpful for video objects due to their interactive nature, large size, long playback duration, real time constraints, and typically variable bit rate. Several caching schemes for video streams have been proposed in the literature. The performance of the existing methods generally degrades in applications like video on demand where random access is common. In this paper a new two tiered proxy caching scheme for random access applications has been proposed. The proposed design consists of two layers: the cache layer and the fetch layer. The cache layer divides the incoming video stream into small segments, and selects the segments that should be cached based on their current access probability and the utility they provide. The fetch layer organizes the outgoing requests according to the priority it assigns to them. Simulation results indicate that the proposed technique outperforms existing caching schemes when random access is significant. The provided utility is up to three times better than the existing solutions.
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一种新颖的视频点播两层代理缓存方案
考虑到网络流量的不断增加和现有带宽的限制,缓存Internet对象是提高所提供的服务质量和减少网络负载的必要技术。缓存对视频对象特别有帮助,因为它们具有交互性、大尺寸、长播放持续时间、实时限制和通常可变的比特率。文献中已经提出了几种视频流的缓存方案。现有方法的性能通常会在视频点播等随机访问常见的应用中下降。本文提出了一种新的用于随机访问应用的两层代理缓存方案。提出的设计包括两层:缓存层和读取层。缓存层将传入的视频流分成小段,并根据其当前访问概率和提供的实用程序选择应该缓存的段。获取层根据分配给它们的优先级组织传出请求。仿真结果表明,在随机访问较大的情况下,该技术优于现有的缓存方案。所提供的实用程序比现有解决方案好三倍。
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