Opportunistic Temporal Fair Scheduling for Non-Orthogonal Multiple Access

Shahram Shahsavari, Farhad Shirani, E. Erkip
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引用次数: 5

Abstract

Non-orthogonal multiple access (NOMA) is one of the key enabling techniques for the next generation of mobile networks. Opportunistic scheduling is necessary to fully exploit the multiplexing gains in NOMA systems. In this paper, scheduling for NOMA systems under temporal fairness constraints is considered. The objective is to maximize the system utility (e.g. throughput) subject to constraints on the average active time for each user. It is shown that threshold based scheduling strategies (TBS) achieve optimal performance in terms of system utility. Furthermore, it is shown that any optimal strategy is equivalent to a TBS. An iterative algorithm based on the Robbins-Monro method is introduced which constructs the optimal TBS by finding optimal thresholds for a given system utility metric. Numerical simulations are provided to evaluate the proposed approach.
非正交多址的机会时间公平调度
非正交多址(NOMA)是下一代移动网络的关键使能技术之一。在NOMA系统中,机会调度是充分利用多路复用增益的必要条件。本文研究了时间公平性约束下NOMA系统的调度问题。目标是在限制每个用户的平均活动时间的情况下最大化系统效用(例如吞吐量)。结果表明,基于阈值的调度策略(TBS)在系统效用方面具有最优的性能。进一步证明了任何最优策略都等价于TBS。介绍了一种基于罗宾斯-门罗方法的迭代算法,该算法通过寻找给定系统效用度量的最优阈值来构造最优TBS。通过数值模拟对该方法进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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