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Efficient Nash Equilibrium Based Cloud Resource Allocation by Using a Continuous Double Auction

机译:使用连续双重拍卖,高效的纳什均衡基于云资源分配

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To allocate cloud resources efficiently and obtain the maximum economic benefit are the major goals of the cloud resource providers and users. The objective of this paper is to present a novel cloud resource allocation algorithm named NECDA to overcome some of the shortcomings of the current mechanisms. A cloud resource allocation model of m*n type based on M/M/1 queuing system is established first Then the Nash equilibrium mode is applied in the cloud computing among m*n allocation environment, the optimization objective of each allocation is performance-QoS and economic-QoS, and the Nash equilibrium is achieved by taking advantage of the continuous double auction in each step, each provider agent determines its requested value based on its workload, and each user agent determines its bid value based on the remaining time and resources. By simulations, we conclude that the NECDA is more suited to cloud computing environments and can better meet the QoS requirements of users.
机译:有效地分配云资源并获得最大的经济效益是云资源提供者和用户的主要目标。本文的目的是提出一个名为NECDA的新型云资源分配算法,以克服当前机制的一些缺点。首先建立了基于M / M / 1排队系统的M * n型云资源分配模型,然后在M * n分配环境中云计算应用了NASH均衡模式,每个分配的优化目标是性能-QoS通过在每个步骤中利用连续的双重拍卖来实现的经济QoS和纳什均衡,每个提供者代理基于其工作负载确定其所请求的值,并且每个用户代理基于剩余时间和资源确定其出价值。通过模拟,我们得出的结论是,NECDA更适合云计算环境,并且可以更好地满足用户的QoS要求。

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