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Enhanced Random Access and Beam Training for Millimeter Wave Wireless Local Networks With High User Density

机译:具有高用户密度的毫米波无线局域网的增强型随机接入和波束训练

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As the low frequency band has become more and more crowded, millimeter-wave (mmWave) has attracted significant attention. The IEEE has released the 802.11ad standard to satisfy the demand of ultra-high-speed communication. It adopts beamforming technology that can generate directional beams to compensate for high path loss. In the association beamforming training (A-BFT) phase of BF training, a station (STA) randomly selects an A-BFT slot to contend for training opportunity. Due to the limited number of A-BFT slots, the A-BFT phase suffers high probability of collisions in dense user scenarios, resulting in inefficient training performance. Based on the evaluation of the IEEE 802.11ad standard and 802.11ay draft in dense user scenarios of mmWave wireless networks, we propose an enhanced A-BFT beam training and random access mechanism, including the separated A-BFT (SA-BFT) and secondary backoff A-BFT (SBA-BFT). The SA-BFT can provide more A-BFT slots and divide the A-BFT slots into two regions by defining a new E-A-BFT Length field compared with the legacy 802.11ad A-BFT, thereby maintaining compatibility when 802.11ay devices are mixed with 802.11ad devices. It can also greatly reduce the collision probability in dense user scenarios. The SBA-BFT performs secondary backoff with very small overhead of transmission opportunities within one A-BFT slot, which not only further reduces collision probability, but also improves the A-BFT slots utilization. Furthermore, we propose a 3-D Markov model to analyze the performance of the SBA-BFT. The analytical and simulation results show that both the SA-BFT and the SBA-BFT can significantly improve BF training efficiency, which is beneficial to the optimization design of dense user wireless networks based on the IEEE 802.11ay standard and mmWave technology.
机译:随着低频带变得越来越拥挤,毫米波(mmWave)引起了极大的关注。 IEEE已发布802.11ad标准,以满足超高速通信的需求。它采用波束成形技术,可以产生定向波束以补偿高路径损耗。在BF训练的关联波束成形训练(A-BFT)阶段中,站点(STA)随机选择一个A-BFT时隙以竞争训练机会。由于A-BFT时隙的数量有限,因此A-BFT阶段在密集用户场景中遭受冲突的可能性很高,从而导致无效的训练性能。基于在mmWave无线网络的密集用户场景中对IEEE 802.11ad标准和802.11ay草案的评估,我们提出了一种增强的A-BFT波束训练和随机接入机制,包括分离的A-BFT(SA-BFT)和辅助后退A-BFT(SBA-BFT)。与传统的802.11ad A-BFT相比,SA-BFT可以通过定义新的EA-BFT长度字段来提供更多的A-BFT插槽并将A-BFT插槽分为两个区域,从而在与802.11ay设备混合使用时保持兼容性802.11ad设备。它也可以大大降低在密集用户场景下的碰撞概率。 SBA-BFT以一个A-BFT时隙内的传输机会的非常小的开销执行二次退避,这不仅进一步降低了冲突概率,而且提高了A-BFT时隙的利用率。此外,我们提出了一个3-D马尔可夫模型来分析SBA-BFT的性能。分析和仿真结果表明,SA-BFT和SBA-BFT均可显着提高BF训练效率,这有利于基于IEEE 802.11ay标准和mmWave技术的密集用户无线网络的优化设计。

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