A Fast Boot, Fast Shutdown Technique for Android OS Devices.

Increasingly complex Android OS applications demand additional software initialization and configuration during startup, which slows system boot time and inconveniences users. The authors propose an approach based on existing snapshot-imaging techniques that can reduce startup time by 80.5 percent a...

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Published in:Computer (00189162) Vol. 49; no. 7; pp. 62 - 69
Main Authors: Yang, Xia, Shi, Peng, Sun, Haiyong, Zheng, Wenxuan, Alves-Foss, Jim
Format: Article
Published: IEEE Jul2016
Subjects:
Online Access:View this record in EBSCOhost
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        atl: A Fast Boot, Fast Shutdown Technique for Android OS Devices.
      aug:
        au:
          Yang, Xia
          Shi, Peng
          Sun, Haiyong
          Zheng, Wenxuan
          Alves-Foss, Jim
        affil:
          University of Electronic Science and Technology of China
          University of Idaho
      su:
        Android (Operating system)
        Cell phones
        Image processing
        Synchronization
        Access control of operating systems
      sug:
        subj:
          Android (Operating system)
          Cell phones
          Image processing
          Synchronization
          Access control of operating systems
      keyword:
        Android
        Android devices
        Android OS
        Androids
        boot time
        cell phones
        Cellular phones
        embedded system applications
        embedded systems
        FBFS technique
        Humanoid robots
        Random access memory
        resynchronization
        shutdown time
        Smart phones
        snapshot image
        SR technique
        startup time
        suspend-resume technique
      ab: Increasingly complex Android OS applications demand additional software initialization and configuration during startup, which slows system boot time and inconveniences users. The authors propose an approach based on existing snapshot-imaging techniques that can reduce startup time by 80.5 percent and shutdown time by half while avoiding the system-synchronization problem that plagues suspend-resume methods.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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