Distributed Hybrid NOMA/OMA User Allocation for Wireless IoT Networks

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초록

This work develops a distributed approach to user allocation in hybrid internet-of-things (IoT) networks, where non-orthogonal multiple access (NOMA) and orthogonal multiple access (OMA) techniques coexist for wireless user access. This hybrid approach facilitates massive connections of IoT devices with limited resources, exploiting the best of both multiplexing strategies. The directional beamforming environment is considered for mitigating user interference and providing spatial gains. Under this configuration, it aims at determining transmission techniques for individual users with the dual consideration of resource availability and geometric adjacency. To this challenge, an efficient distributed algorithm is developed via a novel realization techniques with a message-passing framework. The developed algorithm is rigorously investigated by in-depth theoretical analysis that ensures the optimality and the convergence of the global solution. Furthermore, numerical results also approve to outperform existing schemes consistently over a variety of network configurations that happen in wireless IoT networks. IEEE

키워드

Array signal processing; beamforming; Internet of Things; Internet of Things; message-passing algorithm; Multiplexing; NOMA; non-orthogonal multiple access; Optimization; Resource management; Wireless communication; NONORTHOGONAL MULTIPLE-ACCESS; OF-THE-ART; RESOURCE-ALLOCATION; ENERGY; INTERNET; HARDWARE
제목
Distributed Hybrid NOMA/OMA User Allocation for Wireless IoT Networks
저자
Lee, Wookjin; Choi, Sung Il; Jang, Yong Hun; Lee, Sang Hyun
DOI
10.1109/JIOT.2023.3306877
발행일
2024-02-01
유형
Article
저널명
IEEE Internet of Things Journal
권
11
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3
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