Priori information and sliding window based prediction algorithm for energy-efficient storage systems in cloud

Zhihui Du*, Wenjun Fan, Yunpeng Chai, Yinong Chen

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

One of the major challenges in cloud computing and data centers is the energy conservation and emission reduction. Accurate prediction algorithms are essential for building energy efficient storage systems in cloud computing. In this paper, we first propose a Three-State Disk Model (3SDM), which can describe the service quality and energy consumption states of a storage system accurately. Based on this model, we develop a method for achieving energy conservation without losing quality by skewing the workload among the disks to transmit the disk states of a storage system. The efficiency of this method is highly dependent on the accuracy of the information predicting the blocks to be accessed and the blocks not be accessed in the near future. We develop a priori information and sliding window based prediction (PISWP) algorithm by taking advantage of the priori information about human behavior and selecting suitable size of sliding window. The PISWP method targets at streaming media applications, but we also check its efficiency on other two applications, news in webpage and new tool released. Disksim, an established storage system simulator, is applied in our experiments to verify the effect of our method for various users' traces. The results show that this prediction method can bring a high degree energy saving for storage systems in cloud computing environment.

Original languageEnglish
Pages (from-to)3-19
Number of pages17
JournalSimulation Modelling Practice and Theory
Volume39
DOIs
Publication statusPublished - 2013
Externally publishedYes

Keywords

  • Conventional disk
  • Energy conservation
  • Energy-efficient cloud computing
  • Prediction algorithm

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