CSMA-Based Distributed Scheduling in Multi-hop MIMO Networks under SINR Model

Dajun Qian, D. Zheng, Junshan Zhang, N. Shroff
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引用次数: 46

Abstract

We study the problem of distributed scheduling in multi-hop MIMO networks. We first develop a ``MIMO-pipe" model that provides the upper layers a set of rates and SINR requirements, which capture the rate-reliability tradeoff in MIMO communications. The main thrust of this study is then dedicated to developing CSMA-based MIMO-pipe scheduling under the SINR model. We choose the SINR model over the extensively studied matching or protocol-based interference models because it more naturally captures the impact of interference in wireless networks. The coupling among the links caused by the interference makes the problem of devising distributed scheduling algorithms particularly challenging. To that end, we explore CSMA-based MIMO-pipe scheduling, from two perspectives. First, we consider an idealized continuous time CSMA network. We propose a dual-band approach in which control messages are exchanged instantaneously over a channel separate from the data channel, and show that CSMA-based scheduling can achieve throughput optimality under the SINR model. Next, we consider a discrete time CSMA network. To tackle the challenge due to the coupling caused by interference, we propose a ``conservative" scheduling algorithm in which more stringent SINR constraints are imposed based on the MIMO-pipe model. We show that this suboptimal distributed scheduling can achieve an efficiency ratio bounded from below.
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SINR模型下基于csma的多跳MIMO网络分布式调度
研究了多跳MIMO网络中的分布式调度问题。我们首先开发了一个“MIMO管道”模型,该模型为上层提供了一组速率和SINR要求,可以捕获MIMO通信中的速率可靠性权衡。本研究的重点是致力于在SINR模型下开发基于csma的mimo -管道调度。我们选择SINR模型而不是广泛研究的匹配或基于协议的干扰模型,因为它更自然地捕捉无线网络中干扰的影响。由干扰引起的链路间的耦合使得分布式调度算法的设计变得特别具有挑战性。为此,我们从两个角度探讨了基于csma的mimo管道调度。首先,我们考虑一个理想的连续时间CSMA网络。我们提出了一种双频方法,其中控制消息在与数据通道分离的信道上即时交换,并表明基于csma的调度可以在SINR模型下实现吞吐量最优。接下来,我们考虑离散时间CSMA网络。为了解决由于干扰引起的耦合所带来的挑战,我们提出了一种“保守”调度算法,该算法基于mimo -管道模型施加了更严格的信噪比约束。我们证明了这种次优分布式调度可以实现从下到下的效率比。
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