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Multiaccess fading channels. I. Polymatroid structure, optimal resource allocation and throughput capacities

机译:多路访问衰落信道。一,多类动物结构,最佳资源分配和吞吐能力

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In multiaccess wireless systems, dynamic allocation of resources such as transmit power, bandwidths, and rates is an important means to deal with the time-varying nature of the environment. We consider the problem of optimal resource allocation from an information-theoretic point of view. We focus on the multiaccess fading channel with Gaussian noise, and define two notions of capacity depending on whether the traffic is delay-sensitive or not. We characterize the throughput capacity region which contains the long-term achievable rates through the time-varying channel. We show that each point on the boundary of the region can be achieved by successive decoding. Moreover, the optimal rate and power allocations in each fading state can be explicitly obtained in a greedy manner. The solution can be viewed as the generalization of the water-filling construction for single-user channels to multiaccess channels with arbitrary number of users, and exploits the underlying polymatroid structure of the capacity region.
机译:在多址无线系统中,动态分配资源(例如发射功率,带宽和速率)是应对环境随时间变化的重要手段。我们从信息论的角度考虑资源优化分配的问题。我们将重点放在具有高斯噪声的多路接入衰落信道上,并根据通信量是否对延迟敏感来定义两个容量概念。我们描述了吞吐量容量区域,该区域包含通过时变信道的长期可实现速率。我们表明,可以通过连续解码来实现区域边界上的每个点。而且,可以以贪婪的方式明确地获得每个衰落状态下的最优速率和功率分配。该解决方案可以看作是将单用户通道的注水构造推广为具有任意数量用户的多通道通道,并利用了容量区域的底层多类拟似结构。

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