Opportunistic Temporal Fair Mode Selection and User Scheduling for Full-duplex Systems

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

Abstract

In-band full-duplex (FD) communications - enabled by recent advances in antenna and RF circuit design - has emerged as one of the promising techniques to improve data rates in wireless systems. One of the major roadblocks in enabling high data rates in FD systems is the inter-user interference (IUI) due to activating pairs of uplink and downlink users at the same time-frequency resource block. Opportunistic user scheduling has been proposed as a means to manage IUI and fully exploit the multiplexing gains in FD systems. In this paper, scheduling under long-term and short-term temporal fairness for single-cell FD wireless networks is considered. Temporal fair scheduling is of interest in delay-sensitive applications, and leads to predictable latency and power consumption. The feasible region of user temporal demand vectors is derived, and a scheduling strategy maximizing the system utility while satisfying long-term temporal fairness is proposed. Furthermore, a short-term temporal fair scheduling strategy is devised which satisfies user temporal demands over a finite window-length. It is shown that the strategy achieves optimal average system utility as the window-length is increased asymptotically. Subsequently, practical construction algorithms for long-term and shortterm temporal fair scheduling are introduced. Simulations are provided to verify the derivations and investigate the multiplexing gains. It is observed that using successive interference cancellation at downlink users improves FD gains significantly in the presence of strong IUI.
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全双工系统的机会时间公平模式选择和用户调度
由于天线和射频电路设计的最新进展,带内全双工(FD)通信已成为提高无线系统数据速率的有前途的技术之一。在FD系统中实现高数据速率的主要障碍之一是由于在同一时间-频率资源块上激活上行链路和下行链路用户对而导致的用户间干扰(IUI)。机会用户调度被提出作为一种管理IUI和充分利用FD系统多路复用收益的手段。本文研究了单蜂窝FD无线网络在长期和短期时间公平性下的调度问题。对于延迟敏感的应用程序来说,时间公平调度很重要,它会导致可预测的延迟和功耗。推导了用户时间需求向量的可行域,提出了在满足长期时间公平性的同时最大化系统效用的调度策略。在此基础上,设计了一种短期公平调度策略,在有限的窗口长度内满足用户的时间需求。结果表明,随着窗口长度的渐近增加,该策略可以获得最优的系统平均效用。随后介绍了长期和短期时间公平调度的实用构造算法。仿真结果验证了该方法的正确性和复用增益。可以观察到,在强IUI存在的情况下,在下行链路用户使用连续干扰消除可以显著提高FD增益。
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