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Investigation on runtime partitioning of elastic mobile applications for mobile cloud computing

机译:用于移动云计算的弹性移动应用程序的运行时分区研究

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摘要

The latest developments in mobile computing technology have increased the computing capabilities of smartphones in terms of storage capacity, features support such as multimodal connectivity, and support for customized user applications. Mobile devices are, however, still intrinsically limited by low bandwidth, computing power, and battery lifetime. Therefore, the computing power of computational clouds is tapped on demand basis for mitigating resources limitations in mobile devices. Mobile cloud computing (MCC) is believed to be able to leverage cloud application processing services for alleviating the computing limitations of smartphones. In MCC, application offloading is implemented as a significant software level solution for sharing the application processing load of smartphones. The challenging aspect of application offloading frameworks is the resources intensive mechanism of runtime profiling and partitioning of elastic mobile applications, which involves additional computing resources utilization on Smart Mobile Devices (SMDs). This paper investigates the overhead of runtime application partitioning on SMD by analyzing additional resources utilization on SMD in the mechanism of runtime application profiling and partitioning. We evaluate the mechanism of runtime application partitioning on SMDs in the SmartSim simulation environment and validate the overhead of runtime application profiling by running prototype application in the real mobile computing environment. Empirical results indicate that additional computing resources are utilized in runtime application profiling and partitioning. Hence, lightweight alternative with optimal distributed deployment and management mechanism are mandatory fc accessing application processing services of computational clouds.
机译:移动计算技术的最新发展在存储容量,功能支持(如多模式连接性)以及对自定义用户应用程序的支持方面提高了智能手机的计算能力。但是,移动设备仍然受到低带宽,计算能力和电池寿命的内在限制。因此,根据需要利用计算云的计算能力,以减轻移动设备中的资源限制。人们认为,移动云计算(MCC)能够利用云应用程序处理服务来减轻智能手机的计算限制。在MCC中,应用程序分载是一种重要的软件级解决方案,用于共享智能手机的应用程序处理负载。应用程序卸载框架具有挑战性的方面是弹性移动应用程序的运行时概要分析和分区的资源密集型机制,这涉及在智能移动设备(SMD)上额外利用计算资源。本文通过在运行时应用程序概要分析和分区机制中分析SMD上的额外资源利用率,研究了SMD上运行时应用程序分区的开销。我们在SmartSim仿真环境中评估了SMD上的运行时应用程序分区机制,并通过在实际的移动计算环境中运行原型应用程序来验证运行时应用程序分析的开销。实验结果表明,在运行时应用程序概要分析和分区中使用了其他计算资源。因此,具有最佳分布式部署和管理机制的轻量级替代方案是访问计算云的应用程序处理服务所必需的。

著录项

  • 来源
    《Journal of supercomputing》 |2014年第1期|84-103|共20页
  • 作者单位

    Mobile Cloud Computing Research Lab, Faculty of Computer Science and Information Technology, University of Malaya, Kuala Lumpur, Malaysia;

    Mobile Cloud Computing Research Lab, Faculty of Computer Science and Information Technology, University of Malaya, Kuala Lumpur, Malaysia;

    Mobile Cloud Computing Research Lab, Faculty of Computer Science and Information Technology, University of Malaya, Kuala Lumpur, Malaysia;

    Mobile Cloud Computing Research Lab, Faculty of Computer Science and Information Technology, University of Malaya, Kuala Lumpur, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mobile cloud computing; Elastic applications; Distributed systems; Application offloading;

    机译:移动云计算;弹性应用;分布式系统;应用程序分载;

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