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Distributed Throughput Maximization in Wireless Networks via Random Power Allocation

机译:通过随机功率分配实现无线网络中的分布式吞吐量最大化

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We develop a distributed throughput-optimal power allocation algorithm in wireless networks. The study of this problem has been limited due to the nonconvexity of the underlying optimization problems that prohibits an efficient solution even in a centralized setting. By generalizing the randomization framework originally proposed for input queued switches to SINR rate-based interference model, we characterize the throughput-optimality conditions that enable efficient and distributed implementation. Using gossiping algorithm, we develop a distributed power allocation algorithm that satisfies the optimality conditions, thereby achieving (nearly) 100 percent throughput. We illustrate the performance of our power allocation solution through numerical simulation.
机译:我们开发了无线网络中的分布式吞吐量最优功率分配算法。由于根本的优化问题的不凸性,即使在集中式环境中,也无法提供有效的解决方案,因此对该问题的研究受到了限制。通过将最初为输入排队交换机提议的随机化框架概括为基于SINR速率的干扰模型,我们表征了可实现高效和分布式实现的吞吐量优化条件。使用闲聊算法,我们开发了一种满足最优条件的分布式功率分配算法,从而实现了(几乎)100%的吞吐量。我们通过数值仿真说明了我们的电源分配解决方案的性能。

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