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Power Conscious Disk Scheduling for Multimedia Data Retrieval

机译:多媒体数据检索的功耗意识磁盘调度

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In this paper, we present the novel algorithm called Adaptive Round Merge(ARM) of retrieving the multimedia data blocks for real-time playback. We focus on minimizing the power consumption involved in multimedia data retrieval. Different from the legacy text based data, real-time multimedia playback requires that the storage supplies the data block continuously until the end of the playback. This puts immense burden on the power scare environment since the disk has to be active for the entire playback duration. Our algorithm, ARM, carefully analyzes the power consumption profile of the disk drive and establishes the data retrieval schedule for the given playback. The objective is to minimize the power consumption. It determines the amount of data blocks to read, the length of active and idle period. According to our simulation result, the ARM algorithm reduces the power consumption by as much as 40% compared to the Full Buffering strategy. It manifests itself when the playback length is relatively short, typically less than 30 sec.
机译:在本文中,我们提出了一种新颖的算法,称为Adaptive Round Merge(ARM),该算法可检索多媒体数据块以进行实时回放。我们致力于最大限度地减少多媒体数据检索中涉及的功耗。与基于传统文本的数据不同,实时多媒体播放需要存储设备连续提供数据块,直到播放结束。由于磁盘必须在整个播放期间都处于活动状态,因此这给电源恐慌环境带来了沉重负担。我们的算法ARM仔细分析了磁盘驱动器的功耗曲线,并为给定的播放建立了数据检索计划。目的是使功耗最小化。它确定要读取的数据块数量,活动和空闲周期的长度。根据我们的仿真结果,与全缓冲策略相比,ARM算法可将功耗降低多达40%。当播放长度相对较短(通常小于30秒)时,它就会显示出来。

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