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A General Framework for Crowdsourcing Mobile Communication, Computation, and Caching

机译:众包移动通信,计算和缓存的通用框架

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Today's mobile devices are capable of tackling various complicated tasks that may require a large amount of communication, computation, and caching (3C) resources. Due to users' heterogeneous resources and service requirements, it is challenging for each user to always accomplish his task satisfactorily. To alleviate this issue, mobile users can exploit the heterogeneity and crowdsource their resources to enhance the task execution performance. In this paper, we propose a general 3C framework that enables mobile users to share all three types of resources through device- to-device connections. Such a framework generalizes many existing 1C/2C resource sharing models (that only shares one or two types of resources among users). To quantify the benefit of the proposed framework, we focus on an energy minimization problem, and show that the 3C framework always achieves a smaller total energy consumption, comparing with other 1C/2C models. Furthermore, we show that the energy reduction is maximized, when user connection probability and content caching ratio are neither too large nor too small. Our numerical results show that, when ignoring device-to-device transmission energy, the general 3C framework can reduce the total energy consumption by 82.98%, comparing with the 1C/2C models.
机译:当今的移动设备能够处理可能需要大量通信,计算和缓存(3C)资源的各种复杂任务。由于用户的异构资源和服务要求,使每个用户始终令人满意地完成其任务是一个挑战。为了缓解此问题,移动用户可以利用异构性并众包其资源以增强任务执行性能。在本文中,我们提出了一个通用的3C框架,该框架使移动用户可以通过设备到设备的连接共享所有三种类型的资源。这样的框架概括了许多现有的1C / 2C资源共享模型(在用户之间仅共享一种或两种类型的资源)。为了量化所提出框架的好处,我们集中在能量最小化问题上,并表明与其他1C / 2C模型相比,3C框架总能实现较小的总能耗。此外,我们显示出,当用户连接概率和内容缓存率既不太大也不不太小时,能量减少最大化。我们的数值结果表明,与1C / 2C模型相比,当忽略设备到设备的传输能量时,通用3C框架可以将总能耗降低82.98%。

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