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Joint Scheduling and Resource Allocation in the OFDMA Downlink: Utility Maximization Under Imperfect Channel-State Information

机译:OFDMA下行链路中的联合调度和资源分配:不完全信道状态信息下的效用最大化

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We consider the problem of simultaneous user-scheduling, power-allocation, and rate-selection in an orthogonal frequency division multiple access (OFDMA) downlink, with the goal of maximizing expected sum-utility under a sum-power constraint. In doing so, we consider a family of generic goodput-based utilities that facilitate, e.g., throughput-based pricing, quality-of-service enforcement, and/or the treatment of practical modulation-and-coding schemes (MCS). Since perfect knowledge of channel state information (CSI) may be difficult to maintain at the base-station, especially when the number of users and/or subchannels is large, we consider scheduling and resource allocation under imperfect CSI, where the channel state is described by a generic probability distribution. First, we consider the “continuous” case where multiple users and/or code rates can time-share a single OFDMA subchannel and time slot. This yields a nonconvex optimization problem that we convert into a convex optimization problem and solve exactly using a dual optimization approach. Second, we consider the “discrete” case where only a single user and code rate is allowed per OFDMA subchannel per time slot. For the mixed-integer optimization problem that arises, we discuss the connections it has with the continuous case and show that it can solved exactly in some situations. For the other situations, we present a bound on the optimality gap. For both cases, we provide algorithmic implementations of the obtained solution. Finally, we study, numerically, the performance of the proposed algorithms under various degrees of CSI uncertainty, utilities, and OFDMA system configurations. In addition, we demonstrate advantages relative to existing state-of-the-art algorithms.
机译:我们考虑在正交频分多址(OFDMA)下行链路中同时进行用户调度,功率分配和速率选择的问题,目的是在总和功率约束下最大化期望的总和效用。这样做时,我们考虑了一系列基于通用善意的实用程序,这些实用程序可促进例如基于吞吐量的定价,服务质量的实施和/或实际调制编码方案(MCS)的处理。由于可能很难在基站上保持对信道状态信息(CSI)的全面了解,尤其是在用户和/或子信道的数量很大的情况下,因此我们考虑在不完善的CSI下进行调度和资源分配,其中描述了信道状态通过一般的概率分布。首先,我们考虑“连续”情况,其中多个用户和/或码率可以分时共享一个OFDMA子信道和时隙。这产生了一个非凸优化问题,我们将其转换为凸优化问题,并使用对偶优化方法精确求解。其次,我们考虑“离散”情况,其中每个时隙的每个OFDMA子信道只允许单个用户和编码速率。对于出现的混合整数优化问题,我们讨论了它与连续情况的联系,并表明它可以在某些情况下完全解决。对于其他情况,我们提出了最优差距的界限。对于这两种情况,我们都提供所获得解决方案的算法实现。最后,我们在数值上研究了所提出算法在不同程度的CSI不确定性,效用和OFDMA系统配置下的性能。此外,我们展示了相对于现有最新技术的优势。

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