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Gazing into the Crystal Ball: When the Future Internet Meets the Mobile Clouds

机译:凝视水晶球:当未来的互联网遇到移动云时

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摘要

The latest advances in mobile devices and the widespread diffusion of networked objects are driving the evolution of traditional Mobile Cloud Computing (MCC) systems toward a new framework where storage, computing, sensing, and other device capabilities are offered as a service at the network edge. This visionary scenario, encompassing heterogeneous resources generated, shared, and consumed everywhere in the network, requires innovative architectural and protocol design. In this context, can the approaches recently formulated in the Future Internet research arena (e.g., middleware-based virtualization, Information Centric Networking, and Software-Defined Networking/Network Function Virtualization) support the evolution of mobile cloud systems? This paper provides an affirmative answer by proposing Future-MCC, a novel architecture that capitalizes on such promising approaches and re-thinks (when needed) their philosophy to better fit the evolution of MCC systems. The performance of Future-MCC has been investigated in a representative heterogeneous and dynamic Smart City scenario. Computer simulation results clearly demonstrate that the proposed solution ensures (i) a reduction of the bandwidth requirements spanning from 66 to 91 percent and (ii) an average energy saving equal to 99 percent with respect to a conventional cloud computing platform.
机译:移动设备的最新进展和网络对象的广泛传播,正推动着传统移动云计算(MCC)系统向新框架的演进,在该框架中,存储,计算,传感和其他设备功能作为服务在网络边缘提供。这种具有远见的方案涵盖了网络中各处生成,共享和使用的异构资源,因此需要创新的体系结构和协议设计。在这种情况下,未来互联网研究领域中最近制定的方法(例如,基于中间件的虚拟化,以信息为中心的网络和软件定义的网络/网络功能虚拟化)是否可以支持移动云系统的发展?本文通过提出Future-MCC(一种新颖的体系结构)提供了肯定的答案,该体系结构利用了这种有前途的方法,并在需要时重新考虑其理念,以更好地适应MCC系统的发展。在具有代表性的异构和动态智能城市场景中,对Future-MCC的性能进行了研究。计算机仿真结果清楚地表明,与传统的云计算平台相比,所提出的解决方案可确保(i)将带宽要求从66%降低到91%,以及(ii)平均节能量相当于99%。

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