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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >Buffer management and dimensioning for a pull-based parallel videoserver
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Buffer management and dimensioning for a pull-based parallel videoserver

机译:基于拉式并行视频服务器的缓冲区管理和尺寸确定

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There has been a trend toward designing video-on-demand systems using parallel-server architectures. By exploiting server-level parallelism, researchers can break through the performance limit of a single server, while keeping the system cost low by leveraging on commodity hardware platforms. A number of studies have demonstrated the feasibility of building parallel video servers around the client-pull architecture and one can even incorporate data redundancy into the system to sustain server-level failures. However, due to randomness of request arrivals and server processing time, dimensioning the server resource requirement is often difficult. This paper tackles the problem of buffer management and dimensioning for such a pull-based parallel video server. Using a generic buffer-pool model with worst-case analysis, upper bounds on the server buffer requirement are derived for a parallel-server design with multiple disks per server. The obtained bounds are independent of placement policy, video bit-rate, disk-scheduling discipline, and even number of servers in the system, making it applicable to a wide range of server designs. The analytical results also proved that the scalability of this pull-based server design will not be limited by the server buffer requirement
机译:使用并行服务器体系结构设计视频点播系统已经成为一种趋势。通过利用服务器级别的并行性,研究人员可以突破单个服务器的性能限制,同时通过利用商用硬件平台来保持较低的系统成本。大量研究表明,围绕客户端拉式架构构建并行视频服务器的可行性,甚至可以将数据冗余整合到系统中,以维持服务器级故障。但是,由于请求到达和服务器处理时间的随机性,确定服务器资源需求的尺寸通常很困难。本文解决了这种基于拉的并行视频服务器的缓冲区管理和尺寸确定问题。使用具有最坏情况分析的通用缓冲池模型,可以得出每个服务器具有多个磁盘的并行服务器设计的服务器缓冲要求上限。所获得的界限与系统中的放置策略,视频比特率,磁盘调度规则甚至服务器数量无关,从而使其适用于各种服务器设计。分析结果还证明,这种基于请求的服务器设计的可伸缩性将不受服务器缓冲区要求的限制。

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