Enhanced Random Access and Beam Training for mmWave Wireless Local Networks with High User Density
Pei Zhou, Xuming Fang, Yuguang Fang, Yan Long, Rong He, Xiao Han

TL;DR
This paper proposes enhanced beam training mechanisms for mmWave WLANs to reduce collisions and improve efficiency in high user density scenarios, leveraging new slot division and secondary backoff techniques.
Contribution
It introduces the Separated A-BFT and Secondary Backoff A-BFT mechanisms, improving collision avoidance and slot utilization while maintaining compatibility with existing standards.
Findings
Significant collision reduction in dense scenarios
Improved beam training efficiency demonstrated by analysis and simulations
Enhanced compatibility with IEEE 802.11ay devices
Abstract
As low frequency band becomes more and more crowded, millimeter-wave (mmWave) has attracted significant attention recently. 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 beamforming (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, 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…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Microwave Engineering and Waveguides · Antenna Design and Analysis
