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Efficient Beam Sweeping Algorithms and Initial Access Protocols for Millimeter-Wave Networks

机译:高效光束扫描算法和毫米波网络的初始接入协议

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5G millimeter-wave (mmW) systems rely on electronically steerable antenna arrays to support directional communications. Directionality complicates the initial access (IA) process, whereby a base station (BS) announces itself to nearby user equipments (UEs), giving them the opportunity to associate with this BS. Existing approaches for IA suffer from long discovery time and/or nonnegligable probability of missing UEs. In this paper, we propose FastLink, an efficient IA protocol for mmW systems, in which discovery beacons are transmitted/received using the narrowest possible beams, allowing for high beamforming gains and low misdetection rate, while maintaining low discovery time. Fastlink executes a unique algorithm, called 3-dimensional peak finding (3DPF), to find the best beam in logarithmic time. We formulate the beam-finding process as a sparse problem and use compressive sensing to determine the minimum number of measurements needed for this process. We first study FastLink for the discovery of a single UE and then extend our analysis to a multi-user scenario. Both simulations and over-the-air experiments based on a custom mmW testbed are used to evaluate FastLink. Our results verify its efficiency, and show that it can reduce the search time by 90% compared to the scanning approach used in 802.11ad systems.
机译:5G毫米波(MMW)系统依赖于电子可转向天线阵列来支持方向通信。方向性使初始访问(IA)过程复杂化,从而宣布基站(BS)向附近的用户设备(UE)宣布,让他们有机会与此BS关联。 IA的现有方法遭受缺失UE的长期发现时间和/或不可原形的概率。在本文中,我们提出FastLink,一种用于MMW系统的有效IA协议,其中使用最窄可能的光束来发送/接收发现信标,允许高比布格的增益和低误差率,同时保持低发现时间。 FastLink执行独特的算法,称为三维峰值查找(3DPF),以找到对数时间的最佳光束。我们将光束发现过程制定为稀疏问题,并使用压缩感测来确定此过程所需的最小测量数。我们首先研究FastLink,以发现单个UE,然后将我们的分析扩展到多用户场景。基于自定义MMW测试的模拟和空中实验都用于评估FastLink。我们的结果验证了其效率,并表明它可以与802.11AD系统中使用的扫描方法相比将搜索时间降低90%。

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