首页> 外文期刊>Information Systems >Arrangement of multi-dimensional scalable video data for heterogeneous clients
【24h】

Arrangement of multi-dimensional scalable video data for heterogeneous clients

机译:异构客户端的多维可伸缩视频数据的安排

获取原文
获取原文并翻译 | 示例
       

摘要

A scalable video server extracts data corresponding to the resolution requested by its client from the total data containing the information encoding a full resolution video. Depending on the requested resolution, the extracted data may not be contiguously placed on a disk or a disk array. For this reason, the traverse distance, which indicates the difference between the first read position and the last read position, can be much larger than the amount of the requested data. This causes additional rotational latency in a disk and thus degrades disk performance. Furthermore, scalable video data more seriously deteriorates the independency of disks in a disk array. That is, even a small read request can be split into multiple disk requests across disks of a disk array, because the requested data are scattered across multiple disks. To address these problems, we propose new data arrangement schemes for scalable video data. In these new schemes, we first deal with the arrangement of multi-dimensional scalable video data, which can be employed regardless of the number of scalability dimensions. Second, we improve disk performance by reducing average disk cost, which is based on both the traverse distance of each disk and the independency of disks. Third, we improve overall performance of disk devices through considering the entire request pattern, when large numbers of clients concurrently demand heterogeneous resolutions of videos from a server. We also propose fast arrangement algorithms to reduce the computation time required for searching an effective arrangement so that they can be easily applied to practical server system.
机译:可伸缩视频服务器从包含对全分辨率视频进行编码的信息的总数据中提取与客户端请求的分辨率相对应的数据。根据请求的分辨率,提取的数据可能不会连续放置在磁盘或磁盘阵列上。因此,表示第一个读取位置和最后一个读取位置之间的差异的移动距离可能比请求的数据量大得多。这会导致磁盘中的额外旋转延迟,从而降低磁盘性能。此外,可伸缩视频数据更严重地恶化了磁盘阵列中磁盘的独立性。也就是说,即使很小的读取请求也可以在磁盘阵列的磁盘上拆分为多个磁盘请求,因为所请求的数据分散在多个磁盘上。为了解决这些问题,我们提出了可伸缩视频数据的新数据安排方案。在这些新方案中,我们首先处理多维可伸缩视频数据的安排,无论可伸缩性维度的数量如何,都可以使用它。其次,我们通过降低平均磁盘成本来提高磁盘性能,该成本基于每个磁盘的移动距离和磁盘的独立性。第三,当大量客户端同时要求来自服务器的视频的异构分辨率时,我们通过考虑整个请求模式来提高磁盘设备的整体性能。我们还提出了快速排列算法,以减少搜索有效排列所需的计算时间,以便可以轻松地将它们应用到实际的服务器系统中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号