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Efficient CSMA Using Regional Free Energy Approximations

机译:使用区域自由能近似的有效CSMA

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Distributed link scheduling algorithms based on carrier sense multiple access and Gibbs sampling are known to achieve throughput optimality, if certain parameters called the fugacities are appropriately chosen. However, the problem of computing these fugacities is NP-hard. Further, the complexity of the existing stochastic gradient descent-based algorithms that compute the exact fugacities scales exponentially with the network size. In this paper, we propose a general framework to estimate the fugacities using regional free energy approximations. In particular, we derive explicit expressions for approximate fugacities corresponding to any feasible service rate vector. We further prove that our approximate fugacities are exact for the class of chordal graphs. A distinguishing feature of our work is that the regional approximations that we propose are tailored to conflict graphs with small cycles, which is a typical characteristic of wireless networks. Numerical results indicate that the proposed methods are quite accurate, and significantly outperform the existing approximation techniques.
机译:如果适当地选择称为脆弱性的某些参数,则已知基于载波侦听多路访问和吉布斯采样的分布式链路调度算法可实现吞吐量的最优性。然而,计算这些逸度的问题是NP难的。此外,现有的基于随机梯度下降的算法的复杂度,其计算精确的脆弱性随网络规模呈指数增长。在本文中,我们提出了一个使用区域自由能近似来估算逸散度的通用框架。特别是,我们推导了对应于任何可行服务速率向量的近似脆弱性的显式表达式。我们进一步证明,我们的近似松散性对于弦图类是准确的。我们工作的一个显着特征是,我们建议的区域近似值适合具有小周期的冲突图,这是无线网络的典型特征。数值结果表明,所提出的方法是非常准确的,并且明显优于现有的近似技术。

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