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A reliable virtual network embedding algorithm based on game theory within cloud#039;s backbone

机译:基于博弈论的云骨干网中可靠的虚拟网络嵌入算法

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In this paper, we propose a new survivable virtual network mapping strategy within Cloud's backbone enhancing the Cloud Provider's revenue and dealing with physical failures of routers and links. In order to skirt the exponential complexity of the mapping, we propose a new reliable embedding strategy, denoted by CG-VNE, based on coordination game framework. To do so, we have formulated the problem as two interleaved coordination games. The first game addresses the virtual routers' mapping. In fact, the actions of each virtual router player strongly depend on the mapping of its attached virtual links. Hence, the second game is launched to embed the virtual links. Note that with both games, fictitious players cooperate to reach Nash Equilibrium of which we have proven the existence and it corresponds to a social optimum. CG-VNE aims to maximise the Cloud's provider revenue by maximising the acceptance rate of clients, as well as minimise the blackout rate of virtual networks caused by the outage of substrate routers and/or links. Based on extensive simulations, the results obtained show that CG-VNE has the best performance in terms of i) rejection rate of new clients, ii) Cloud's revenue and iii) rate of clients impacted by physical failures.
机译:在本文中,我们在云的骨干内提出了一种新的可生存的虚拟网络映射策略,增强了云提供商的收入,并处理路由器和链接的物理故障。为了介绍映射的指数复杂性,我们提出了一种基于协调游戏框架的CG-VNE表示的新可靠的嵌入策略。为此,我们向两个交错协调游戏制定了这个问题。第一个游戏解决了虚拟路由器的映射。实际上,每个虚拟路由器播放器的操作强烈依赖于附加虚拟链路的映射。因此,第二场比赛被启动以嵌入虚拟链接。请注意,通过两个游戏,虚构的玩家合作达到纳什均衡,我们已经证明存在并且它相当于社会最佳。 CG-VNE旨在通过最大化客户的接受率来最大限度地提高云的提供商收入,并最大限度地减少由基板路由器的中断和/或链接引起的虚拟网络的停电率。基于广泛的模拟,所获得的结果表明,CG-VNE在I)拒绝率的最佳性能,即新客户,II)云的收入和III)受到物理失败影响的客户率。

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