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Tradeoff between execution speedup and reliability for compute-intensive code offloading in mobile device cloud

机译:在执行速度和可靠性之间进行权衡,以实现移动设备云中计算密集型代码的卸载

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摘要

With the advent of different mobile computing technologies, mobile devices have opened up a plethora of computational infrastructure to provide improved performance for compute-intensive applications to the end users. Mobile Device Cloud (MDC) technology brings the code offloading mechanism from distant cloud to neighbor mobile devices. However, the major challenges of code offloading in MDC systems include maximization of computation speedup and reliability; unfortunately, these two performance parameters often oppose each other. In this paper, an optimization framework, namely TESAR, has been devised to tradeoff between application execution speedup and reliability while maintaining device energy within a predefined range. We also provide an algorithm for developing a dependency tree among the modules of an application so as to allow higher number of parallel executions, wherever and whenever it is possible. The emulation results of the proposed algorithm outperform the relevant state-of-the-art works in terms of application completion time, communication latency and rescheduling overhead.
机译:随着不同移动计算技术的出现,移动设备已经开放了众多的计算基础架构,以为最终用户提供针对计算密集型应用程序的改进性能。移动设备云(MDC)技术将代码卸载机制从遥远的云转移到相邻的移动设备。但是,MDC系统中代码卸载的主要挑战包括最大程度地提高计算速度和可靠性。不幸的是,这两个性能参数通常彼此相对。在本文中,设计了一个优化框架TESAR,以在应用程序执行速度和可靠性之间进行权衡,同时将设备能量保持在预定范围内。我们还提供了一种算法,用于在应用程序的模块之间开发依赖关系树,以便在任何可能的地方允许更多数量的并行执行。在应用程序完成时间,通信等待时间和重新安排开销方面,所提出算法的仿真结果优于相关的最新技术。

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