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Opportunistic multichannel access with decentralized channel state information

机译:分散的信道状态信息的机会多信道访问

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This paper considers multiaccess control for the uplink in orthogonal frequency division multiple access wireless networks. To avoid the extensive information exchange associated with centralized approaches, we formulate the decentralized access control problem with the contention power constraint as a Bayesian game, mapping time-varying channel state information into contention strategies. By exploiting the problem structure, a strategy where users access the channels with probability one if the observed channel gain is above a predetermined threshold is shown to be optimal. It is also shown that the energy consumption of the threshold strategy will not exceed that of randomized strategies. The game is then equivalently reformulated as one of finding the threshold value in a distributed manner, and the existence and uniqueness of Bayesian Nash equilibria is established. A distributed algorithm based on Lagrange duality is proposed to approach the unique equilibrium, and the algorithm is shown to be globally stable. In a homogeneous system, the performance loss of the proposed scheme is proved to be bounded compared with a centralized channel allocation scheme. Contrary to other proposals, our method allows for heterogeneous channel state information and achieves a comparable throughput with reduced power. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:本文考虑了正交频分多址无线网络中上行链路的多址控制。为避免与集中式方法相关的广泛信息交换,我们将具有竞争权力约束的分散访问控制问题公式化为贝叶斯博弈,将时变信道状态信息映射到竞争策略中。通过利用问题结构,如果观察到的信道增益高于预定阈值,则用户以概率1访问信道的策略被证明是最佳的。还表明阈值策略的能耗不会超过随机策略的能耗。然后,将游戏等效地重新构造为以分布式方式找到阈值之一,并建立贝叶斯纳什均衡的存在性和唯一性。提出了一种基于拉格朗日对偶的分布式算法来逼近唯一平衡,并且证明该算法是全局稳定的。在同类系统中,与集中式信道分配方案相比,该方案的性能损失被证明是有限的。与其他建议相反,我们的方法允许异构信道状态信息,并以降低的功率实现了相当的吞吐量。版权所有(c)2013 John Wiley&Sons,Ltd.

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