认知传感器网络中的节能功率分配:一种博弈论方法

Bo Chai, Ruilong Deng, Peng Cheng, Jiming Chen
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引用次数: 19

摘要

在本文中,我们研究了认知传感器网络中的功率分配,其中认知用户(认知启用的传感器节点)机会性地与主用户(许可设备)共享公共频谱。我们定义了一个以能源效率为导向的效用函数作为评估电力分配的新指标。考虑到传感器节点是自利的,以最大化自身的效用,我们将节能功率分配问题表述为一个非合作博弈。首先证明了所提对策存在纳什均衡。其次,在一定条件下证明了权力分配博弈是一个超模博弈。最后,利用最佳响应算法确定纳什均衡。仿真结果表明,在认知传感器网络中,所提出的功率分配策略在能量效率、收敛速度和公平性方面都取得了令人满意的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-efficient power allocation in cognitive sensor networks: A game theoretic approach
In this paper, we study power allocation in cognitive sensor networks where cognitive users (cognitive enabled sensor nodes) opportunistically share a common spectrum with primary users (licensed devices). We define an energy efficiency-oriented utility function as a new metric to evaluate power allocation. Consider that sensor nodes are self-interested to maximize their own utility, we formulate the energy efficient power allocation problem as a non-cooperative game. We firstly prove that there exist Nash equilibriums in the proposed game. Secondly, we prove that the power allocation game is a supermodular game with some conditions. Finally, we use best response algorithm to identify the Nash equilibrium. Simulations are conducted to demonstrate that the proposed power allocation strategy can achieve satisfactory performance in terms of energy efficiency, convergence speed and fairness in cognitive sensor networks.
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