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On Resource Allocation in Fading Multiple-Access Channels–An Efficient Approximate Projection Approach

机译:衰落的多路访问信道中的资源分配-一种有效的近似投影方法

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摘要

In this paper, we consider the problem of rate and power allocation in a multiple-access channel (MAC). Our objective is to obtain rate and power allocation policies that maximize a general concave utility function of average transmission rates on the information-theoretic capacity region of the MAC without using queue-length information. First, we address the utility maximization problem in a nonfading channel and present a gradient projection algorithm with approximate projections. By exploiting the polymatroid structure of the capacity region, we show that the approximate projection can be implemented in time polynomial in the number of users. Second, we present optimal rate and power allocation policies in a fading channel where channel statistics are known. For the case that channel statistics are unknown and the transmission power is fixed, we propose a greedy rate allocation policy and characterize the performance difference of this policy and the optimal policy in terms of channel variations and structure of the utility function. The numerical results demonstrate superior convergence rate performance for the greedy policy compared to queue-length-based policies. In order to reduce the computational complexity of the greedy policy, we present approximate rate allocation policies which track the greedy policy within a certain neighborhood.
机译:在本文中,我们考虑了多路访问信道(MAC)中的速率和功率分配问题。我们的目标是获得速率和功率分配策略,从而在不使用队列长度信息的情况下,最大化MAC的信息理论容量区域上平均传输速率的一般凹效用函数。首先,我们解决非衰落信道中的效用最大化问题,并提出一种具有近似投影的梯度投影算法。通过利用容量区域的多拟阵结构,我们表明可以在用户数量的时间多项式中实现近似投影。其次,我们在已知信道统计信息的衰落信道中提供最佳速率和功率分配策略。对于信道统计未知且传输功率固定的情况,我们提出了一种贪婪速率分配策略,并根据信道变化和效用函数的结构来表征该策略和最优策略的性能差异。数值结果表明,与基于队列长度的策略相比,贪婪策略的收敛速度性能更高。为了降低贪婪策略的计算复杂度,我们提出了近似速率分配策略,该策略在特定邻域内跟踪贪婪策略。

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