Data placement scheme on continuous media servers with ZBR disks

Shunnian Zhai, T.K.Y. Chan
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Abstract

Recent advances in computer technologies have made it feasible to provide multimedia services. As a result, the research and development of continuous media servers has received more attention in recent years. In general, these servers consist of multiple zone-bit recording (ZBR) disks or multiple storage nodes connected through the high-speed network to construct a distributed server. One key issue in developing continuous media servers is the allocation of data into ZBR disks. We propose a novel data placement scheme, called VARBT (variable block-size and data-transfer-time), to fully utilize the characteristics of ZBR disks. The proposed scheme determines data block size in each zone completely according to the capacity of that zone thus the storage utilization is 100%. During the process of data retrieval, the data transfer rate for each block is equal to the bandwidth of each physical zone thus the bandwidth utilization is also maximal. This scheme can be applied not only to a single-disk platform, but also to a multiple-disk server and even a distributed server with multiple storage nodes. Through simulations and performance evaluation, we found that VARBT scheme has the smaller average block size, required memory space and system response time to support more simultaneous streams, and meanwhile it achieves 100% storage utilization and bandwidth utilization.
在带有ZBR磁盘的连续媒体服务器上的数据放置方案
计算机技术的最新进展使提供多媒体服务成为可能。因此,连续介质服务器的研究和开发近年来受到越来越多的关注。这些服务器通常由多个ZBR (zone-bit recording)磁盘或多个存储节点通过高速网络连接组成分布式服务器。开发连续介质服务器的一个关键问题是将数据分配到ZBR磁盘中。我们提出了一种新的数据放置方案,称为VARBT(可变块大小和数据传输时间),以充分利用ZBR磁盘的特性。该方案完全根据每个区域的容量来确定每个区域的数据块大小,从而使存储利用率达到100%。在数据检索过程中,每个数据块的数据传输速率等于每个物理区的带宽,因此带宽利用率也是最大的。该方案不仅适用于单盘平台,也适用于多盘服务器,甚至是多存储节点的分布式服务器。通过仿真和性能评估,我们发现VARBT方案具有更小的平均块大小、支持更多并发流所需的内存空间和系统响应时间,同时实现了100%的存储利用率和带宽利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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