Delay-aware Multiple Access Design for Intelligent Reflecting Surface Aided Uplink Transmission
Piao Zeng, Guangji Chen, Qingqing Wu, Deli Qiao, and Abbas Jamalipour

TL;DR
This paper proposes a hybrid multiple access protocol for IRS-assisted uplink transmission that jointly optimizes device scheduling, power, and IRS beamforming to minimize delay, outperforming traditional methods.
Contribution
It introduces a novel IRS-aided hybrid multiple access protocol with optimized joint scheduling and beamforming, demonstrating significant delay reduction over conventional schemes.
Findings
Proposed protocol reduces sum transmission delay significantly.
Dynamic IRS beamforming enhances spectral efficiency.
The protocol outperforms traditional TDMA and NOMA in delay metrics.
Abstract
In this paper, we develop a hybrid multiple access (MA) protocol for an intelligent reflecting surface (IRS) aided uplink transmission network by incorporating the IRS-aided time-division MA (I-TDMA) protocol and the IRS-aided non-orthogonal MA (I-NOMA) protocol as special cases. Two typical communication scenarios, namely the transmit power limited case and the transmit energy limited case are considered, where the device's rearranged order, time and power allocation, as well as dynamic IRS beamforming patterns over time are jointly optimized to minimize the sum transmission delay. To shed light on the superiority of the proposed IRS-aided hybrid MA (I-HMA) protocol over conventional protocols, the conditions under which I-HMA outperforms I-TDMA and I-NOMA are revealed by characterizing their corresponding optimal solution. Then, a computationally efficient algorithm is proposed to…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Optical Wireless Communication Technologies · Satellite Communication Systems
