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Joint Scheduling and Resource Allocation in OFDMA Downlink Systems Via ACK/NAK Feedback

机译:通过ACK / NAK反馈在OFDMA下行链路系统中进行联合调度和资源分配

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In this paper, we consider the problem of joint scheduling and resource allocation in the orthogonal-frequency-division multiple-access (OFDMA) downlink, with the goal of maximizing an expected long-term goodput-based utility subject to an instantaneous sum-power constraint, and where the feedback to the base station consists only of acknowledgementsegative acknowledgements (ACK/NAKs) from recently scheduled users. We first establish that the optimal solution is a partially observable Markov decision process (POMDP), which is impractical to implement. In response, we propose a greedy approach to joint scheduling and resource allocation that maintains a posterior channel distribution for every user, and has only polynomial complexity. For frequency-selective channels with Markov time-variation, we then outline a recursive method to update the channel posteriors, based on the ACK/NAK feedback, that is made computationally efficient through the use of particle filtering. To gauge the performance of our greedy approach relative to that of the optimal POMDP, we derive a POMDP performance upper-bound. Numerical experiments show that, for slowly fading channels, the performance of our greedy scheme is relatively close to the upper bound, and much better than fixed-power random user scheduling (FP-RUS), despite its relatively low complexity.
机译:在本文中,我们考虑正交频分多址(OFDMA)下行链路中的联合调度和资源分配问题,目的是在瞬时和功率的作用下最大化预期的基于长期吞吐量的效用约束,并且到基站的反馈仅包含来自最近调度的用户的确认/否定确认(ACK / NAK)。我们首先确定最佳解决方案是部分可观察的马尔可夫决策过程(POMDP),这是不切实际的。作为回应,我们提出了一种用于联合调度和资源分配的贪婪方法,该方法可为每个用户维护后验信道分布,并且仅具有多项式复杂度。然后,对于具有马尔可夫时变的频率选择信道,我们概述了一种基于ACK / NAK反馈的更新后验信道的递归方法,该方法通过使用粒子滤波使计算效率更高。为了评估相对于最佳POMDP的贪婪方法的性能,我们导出了POMDP性能上限。数值实验表明,对于缓慢衰落的信道,我们的贪心方案的性能相对接近上限,尽管其复杂度较低,但比固定功率随机用户调度(FP-RUS)更好。

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