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A Multi-Traffic Inter-Cell Interference Coordination Scheme in Dense Cellular Networks

机译:密集蜂窝网络中的多业务小区间干扰协调方案

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This paper proposes a novel semi-distributed and practical ICIC scheme based on the Almost Blank SubFrame (ABSF) approach specified by 3GPP. We define two mathematical programming problems for the cases of guaranteed and best-effort traffic, and use game theory to study the properties of the derived ICIC distributed schemes, which are compared in detail against unaffordable centralized schemes. Based on the analysis of the proposed models, we define Distributed Multi-traffic Scheduling (DMS), a unified distributed framework for adaptive interference-aware scheduling of base stations in future cellular networks, which accounts for both guaranteed and best-effort traffic. DMS follows a two-tier approach, consisting of local ABSF schedulers, which perform the resource distribution between the guaranteed and best effort traffic, and a light-weight local supervisor, which coordinates ABSF local decisions. As a result of such a two-tier design, DMS requires very light signaling to drive the local schedulers to globally efficient operating points. As shown by means of numerical results, DMS allows to: (i) maximize radio resources rescue; (ii) provide requested quality for guaranteed traffic; (iii) minimize the time dedicated to guaranteed traffic to leave room for best-effort traffic; and (iv) maximize resource utilization efficiency for the best-effort traffic.
机译:本文提出了一种新颖的半分布式,实用的ICIC方案,该方案基于3GPP规定的几乎空白子帧(ABSF)方法。我们为保证交通量和尽力而为交通量定义了两个数学规划问题,并使用博弈论研究了派生的ICIC分布式方案的性质,并与负担不起的集中式方案进行了详细比较。在对提出的模型进行分析的基础上,我们定义了分布式多业务调度(DMS),这是一种用于未来蜂窝网络中基站的自适应干扰感知调度的统一分布式框架,该框架同时考虑了保证流量和尽力而为流量。 DMS遵循两层方法,由本地ABSF调度程序(负责在保证流量和尽力而为流量之间进行资源分配)和轻量级本地主管(负责协调ABSF本地决策)组成。这种两层设计的结果是,DMS需要非常轻的信号来将本地调度程序驱动到全局高效的工作点。如数值结果所示,DMS可以:(i)最大程度地挽救无线电资源; (ii)提供要求的质量以保证流量; (iii)尽量减少保证交通的时间,以腾出空间来尽力而为; (iv)尽最大努力使资源利用效率最大化。

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