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Pricing-based power allocation in wireless network virtualization: A game approach

机译:无线网络虚拟化中基于定价的功率分配:一种博弈方法

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Since wireless network virtualization (WNV) enables physical resources abstraction and sharing, the overall resources inefficiency can be reduced dramatically. This paper investigates a pricing-based energy efficient (EE) optimization problem for orthogonal frequency-division multiple Access (OFDMA) WNV. A typical WNV environment consists of an infrastructure provider (InP), virtual network operators (VNOs) and end users. The objective of this paper is to maximize VNOs' EE in bits per joule unit. This is achieved by allocating each VNO certain amount of power. The problem is formulated as a commercial market competition based on a pricing function. A non-cooperative game is applied and a power allocation algorithm is developed to search the Nash equilibrium which is the solution of this game. The Nash equilibrium indicates the best strategy that each VNO can employ. The performances of the proposed algorithm are obtained in a frequency selective fading environment. Evaluation results reveal the VNO adaptation of power sharing strategies and also shows the inefficiency of the Nash equilibrium.
机译:由于无线网络虚拟化(WNV)可以实现物理资源的抽象和共享,因此可以大大降低整体资源效率低下的情况。本文研究了正交频分多址(OFDMA)WNV的基于定价的节能(EE)优化问题。典型的WNV环境由基础结构提供程序(InP),虚拟网络运营商(VNO)和最终用户组成。本文的目的是使VNO的EE以每焦耳单位的比特数最大化。这是通过为每个VNO分配一定数量的功率来实现的。该问题被制定为基于定价函数的商业市场竞争。应用了一种非合作博弈,并开发了一种功率分配算法来搜索纳什均衡,这是该博弈的解决方案。纳什均衡表示每个VNO可以采用的最佳策略。该算法的性能是在频率选择性衰落环境中获得的。评估结果揭示了VNO对功率共享策略的适应性,还显示了纳什均衡的效率低下。

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