A Game Theoretic Approach to Multi-User Spectrum Allocation

P. Wrycza, B. Shankar, M. Bengtsson, B. Ottersten
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引用次数: 3

Abstract

We consider the interaction of several transmit-receive pairs coexisting in the same area and communicating using the same portion of the spectrum. Using a game theoretic framework, each pair is regarded as a player whose payoff function is the individual link rate and power is allocated using the iterative water-filling algorithm. We find properties of the resulting Nash equilibria and derive conditions for when various operating points are achievable. The analysis presented herein extends previous work by characterizing the set of stable solutions for a multi-user system. Also, we show how the game can be modified to obtain better operating points in terms of sum rate compared to the iterative water-filling algorithm. The increase in performance corresponding to one such modification is evaluated and compared to the iterative water-filling algorithm by numerical simulations.
多用户频谱分配的博弈论方法
我们考虑了共存于同一区域并使用同一部分频谱进行通信的几个发送-接收对的相互作用。利用博弈论框架,将每一对作为一个玩家,其收益函数为个体连接率,并使用迭代注水算法分配权力。我们发现了所得到的纳什均衡的性质,并推导了各种操作点可达到的条件。本文提出的分析通过描述多用户系统的稳定解决方案集来扩展以前的工作。此外,我们还展示了如何修改游戏,以获得与迭代注水算法相比,在求和速率方面更好的操作点。通过数值模拟,评估了一种这样的修改所对应的性能提高,并与迭代充水算法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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