MIND:磁盘阵列的黑盒能耗模型

Zhuo Liu, Jian Zhou, Weikuan Yu, Fei Wu, X. Qin, C. Xie
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引用次数: 9

摘要

能源消耗正在成为数据中心日益关注的问题。为了解决这个问题,已经提出了许多节能技术。然而,仍然需要一个综合的方法来评估存储系统和各种节能技术的能源效率。对存储系统上不同工作负载的广泛测量通常非常耗时,并且需要昂贵的设备。我们分析了独立磁盘和RAID阵列的功率和性能等变化特征,然后将MIND定义为RAID阵列的黑盒功率模型。MIND旨在定量测量在各种执行模式下运行不同工作负载的冗余磁盘阵列的功耗。在MIND中,我们定义了五种模式(空闲、待机和几种类型的访问)和四种操作,以精确地描述RAID阵列的电源状态和变化。此外,我们为每种模式和动作制定了相应的度量,然后将该模型和测量算法集成到流行的跟踪工具- blktrace中。有了这些特性,我们就可以在具有节能技术的大型存储系统上运行不同的IO跟踪。然后收集准确的能耗和性能统计数据,以评估存储系统设计和节能技术的能效。我们在企业RAID阵列上运行合成工作负载和实际工作负载的实验表明,MIND可以以低于2%的错误率估计磁盘阵列的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MIND: A black-box energy consumption model for disk arrays
Energy consumption is becoming a growing concern in data centers. Many energy-conservation techniques have been proposed to address this problem. However, an integrated method is still needed to evaluate energy efficiency of storage systems and various power conservation techniques. Extensive measurements of different workloads on storage systems are often very time-consuming and require expensive equipments. We have analyzed changing characteristics such as power and performance of stand-alone disks and RAID arrays, and then defined MIND as a black box power model for RAID arrays. MIND is devised to quantitatively measure the power consumption of redundant disk arrays running different workloads in a variety of execution modes. In MIND, we define five modes (idle, standby, and several types of access) and four actions, to precisely characterize power states and changes of RAID arrays. In addition, we develop corresponding metrics for each mode and action, and then integrate the model and a measurement algorithm into a popular trace tool - blktrace. With these features, we are able to run different IO traces on large-scale storage systems with power conservation techniques. Accurate energy consumption and performance statistics are then collected to evaluate energy efficiency of storage system designs and power conservation techniques. Our experiments running both synthetic and real-world workloads on enterprise RAID arrays show that MIND can estimate power consumptions of disk arrays with an error rate less than 2%.
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