Random Access in Wireless Ad Hoc Networks for Throughput Maximization

Bo Yang, G. Feng, X. Guan
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引用次数: 15

Abstract

We consider the distributed random access algorithms for wireless ad hoc networks in which each node needs to tune its persistent probability so as to optimize its own the total throughput. First, we present an asynchronous algorithm for updating persistent probabilities and prices to avoid collision using local coordination. By casting this algorithm as a best response in a cooperative game, we characterize its convergence analytically. We further model that each node attempts to maximize a selfish local payoff function. We characterize the Nash equilibrium (NE) of the non-cooperative game and prove the convergence of a best response algorithm to the unique NE. Then we study the energy efficient throughput maximization problem when the wireless nodes are constrained by their battery power. Despite the inherent difficulty of non-separability of the constraint set, we propose a distributed primal-based algorithm. Its convergence is studied numerically
无线自组织网络中吞吐量最大化的随机接入
考虑无线自组织网络的分布式随机访问算法,其中每个节点需要调整其持续概率以优化自己的总吞吐量。首先,我们提出了一种异步算法来更新持久概率和价格,以避免使用局部协调的冲突。通过将该算法描述为合作博弈中的最佳对策,对其收敛性进行了分析表征。我们进一步建模,每个节点试图最大化一个自私的局部收益函数。我们刻画了非合作博弈的纳什均衡,并证明了最佳对策算法对唯一的纳什均衡的收敛性。在此基础上,研究了无线节点受电池电量约束时的高效吞吐量最大化问题。针对约束集不可分的固有困难,提出了一种基于分布式原的算法。对其收敛性进行了数值研究
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