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A Review on Distributed Application Processing Frameworks in Smart Mobile Devices for Mobile Cloud Computing

机译:智能移动设备中用于云计算的分布式应用程序处理框架的综述

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The latest developments in mobile devices technology have made smartphones as the future computing and service access devices. Users expect to run computational intensive applications on Smart Mobile Devices (SMDs) in the same way as powerful stationary computers. However in spite of all the advancements in recent years, SMDs are still low potential computing devices, which are constrained by CPU potentials, memory capacity and battery life time. Mobile Cloud Computing (MCC) is the latest practical solution for alleviating this incapacitation by extending the services and resources of computational clouds to SMDs on demand basis. In MCC, application offloading is ascertained as a software level solution for augmenting application processing capabilities of SMDs. The current offloading algorithms offload computational intensive applications to remote servers by employing different cloud models. A challenging aspect of such algorithms is the establishment of distributed application processing platform at runtime which requires additional computing resources on SMDs. This paper reviews existing Distributed Application Processing Frameworks (DAPFs) for SMDs in MCC domain. The objective is to highlight issues and challenges to existing DAPFs in developing, implementing, and executing computational intensive mobile applications within MCC domain. It proposes thematic taxonomy of current DAPFs, reviews current offloading frameworks by using thematic taxonomy and analyzes the implications and critical aspects of current offloading frameworks. Further, it investigates commonalities and deviations in such frameworks on the basis significant parameters such as offloading scope, migration granularity, partitioning approach, and migration pattern. Finally, we put forward open research issues in distributed application processing for MCC that remain to be addressed.
机译:移动设备技术的最新发展已使智能手机成为未来的计算和服务访问设备。用户期望以与功能强大的固定计算机相同的方式在智能移动设备(SMD)上运行计算密集型应用程序。然而,尽管近年来取得了所有进步,但SMD仍然是低电势的计算设备,受CPU电势,内存容量和电池寿命的限制。移动云计算(MCC)是通过将计算云的服务和资源按需扩展到SMD来减轻这种能力丧失的最新实用解决方案。在MCC中,应用程序卸载被确定为一种软件级解决方案,用于增强SMD的应用程序处理能力。当前的卸载算法通过采用不同的云模型将计算密集型应用程序卸载到远程服务器。这种算法的一个挑战性方面是在运行时建立分布式应用程序处理平台,这需要SMD上的其他计算资源。本文回顾了MCC域中现有的SMD分布式应用程序处理框架(DAPF)。目的是强调在MCC域内开发,实现和执行计算密集型移动应用程序中现有DAPF的问题和挑战。它提出了当前DAPF的主题分类法,通过使用主题分类法回顾了当前的卸载框架,并分析了当前卸载框架的含义和关键方面。此外,它基于诸如卸载范围,迁移粒度,分区方法和迁移模式之类的重要参数来研究此类框架中的共性和偏差。最后,我们提出了针对MCC的分布式应用程序处理中尚待解决的开放研究问题。

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