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A pricing strategy for job allocation in mobile grids using a non-cooperative bargaining theory framework

机译:基于非合作议价理论框架的移动网格工作分配定价策略

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摘要

Due to their inherent limitations in computational and battery power, storage and available bandwidth, mobile devices have not yet been widely integrated into grid computing platforms. However, millions of laptops, PDAs and other portable devices remain unused most of the time, and this huge repository of resources can be potentially utilized, leading to what is called a mobile grid environment. In this paper, we propose a game theoretic pricing strategy for efficient job allocation in mobile grids. By drawing upon the Nash bargaining solution, we show how to derive a unified framework for addressing such issues as network efficiency, fairness, utility maximization, and pricing. In particular, we characterize a two-player, non-cooperative, alternating-offer bargaining game between the Wireless Access Point Server and the mobile devices to determine a fair pricing strategy which is then used to effectively allocate jobs to the mobile devices with a goal to maximize the revenue for the grid users. Simulation results show that the proposed job allocation strategy is comparable to other task allocation schemes in terms of the overall system response time.
机译:由于它们在计算和电池电量,存储和可用带宽方面的固有局限性,因此移动设备尚未广泛集成到网格计算平台中。然而,数百万的笔记本电脑,PDA和其他便携式设备在大多数时间仍未使用,并且这种巨大的资源库可以被潜在地利用,从而导致所谓的移动网格环境。在本文中,我们提出了一种用于在移动网格中有效分配工作的博弈论定价策略。通过利用Nash讨价还价解决方案,我们展示了如何得出一个统一的框架来解决诸如网络效率,公平性,效用最大化和定价等问题。特别是,我们描述了无线接入点服务器和移动设备之间的两人,非合作,交替要约的讨价还价博弈,以确定公平的定价策略,然后将该策略有效地分配给移动设备以达到目标为电网用户最大化收益。仿真结果表明,所提出的工作分配策略在总体系统响应时间方面可与其他任务分配方案相媲美。

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