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MAC-layer integration of multiple radio bands in indoor millimeter wave networks

机译:室内毫米波网络中多个无线电频段的MAC层集成

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The abundant bandwidth at 60 GHz band (around 7 GHz) offers the potential for multi-Gbps indoor wireless connections for bandwidth-intensive applications. However, 60 GHz millimeter wave (mmWave) links are highly susceptible to blockage since it is difficult to diffract around obstacles. In this paper, we propose multi-radio band integration framework to have 2.4/5 GHz band assist mmWave band to prevent drastic data rate reduction. Specifically, the problem of multi-radio band integration with TDMA-based MAC is formulated as an optimization problem. We decompose the problem into two subproblems: radio band selection and space-time scheduling. Firstly, considering network load and mmWave channel status, we define start-integration threshold and stop-integration threshold to select an active radio band for data transmission. Secondly, a space-time scheduling scheme is proposed to allow multiple flows over different radio bands operate concurrently to exploit the spatial reuse. Simulation results of the proposed multi-radio band integration mechanism demonstrate significant improvements of network connectivity and the number of supported traffic flows.
机译:60 GHz频带(约7 GHz)上的丰富带宽为带宽密集型应用提供了多Gbps室内无线连接的潜力。但是,由于很难绕障碍物衍射,因此60 GHz毫米波(mmWave)链路极易受到阻塞的影响。在本文中,我们提出了具有2.4 / 5 GHz频带辅助mmWave频带的多无线电频带集成框架,以防止大幅降低数据速率。具体地,将与基于TDMA的MAC的多无线电频带集成的问题表述为优化问题。我们将该问题分解为两个子问题:无线电频带选择和空时调度。首先,考虑网络负载和毫米波信道状态,我们定义开始积分阈值和停止积分阈值,以选择活动的无线电频带进行数据传输。其次,提出了一种空时调度方案,以允许不同无线电频带上的多个流同时运行以利用空间复用。所提出的多无线电频带集成机制的仿真结果证明了网络连接性和支持的业务流数量的显着改善。

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