JOURNAL ARTICLE

Clustered Millimeter-Wave Networks With Non-Orthogonal Multiple Access

Wenqiang YiYuanwei LiuArumugam NallanathanMaged Elkashlan

Year: 2019 Journal:   IEEE Transactions on Communications Vol: 67 (6)Pages: 4350-4364   Publisher: IEEE Communications Society

Abstract

We introduce clustered millimeter-wave (mmWave) networks with invoking non-orthogonal multiple access (NOMA) techniques, where the NOMA users are modeled as Poisson cluster processes and each cluster contains a base station (BS) located at the center. To provide realistic directional beamforming, an actual antenna array pattern is deployed at all BSs. We propose three distance-dependent user selection strategies to appraise the path loss impact on the performance of our considered networks. With the aid of such strategies, we derive tractable analytical expressions for the coverage probability and system throughput. Specifically, closed-form expressions are deduced under a sparse network assumption to improve the calculation efficiency. It theoretically demonstrates that the large antenna scale benefits the near user, while such influence for the far user is fluctuant due to the randomness of the beamforming. Moreover, the numerical results illustrate that: 1) the proposed system outperforms traditional orthogonal multiple access techniques and the commonly considered NOMA-mmWave scenarios with the random beamforming; 2) the coverage probability has a negative correlation with the variance of intra-cluster receivers; 3) 73 GHz is the best carrier frequency for the near user, and 28 GHz is the best choice for the far user; and 4) an optimal number of the antenna elements exists for maximizing the system throughput.

Keywords:
Beamforming Computer science Base station Noma Antenna (radio) Throughput Stochastic geometry Coverage probability Cluster analysis Cellular network Randomness Antenna array MIMO Topology (electrical circuits) Algorithm Electronic engineering Computer network Telecommunications Mathematics Telecommunications link Engineering Statistics Wireless Electrical engineering Artificial intelligence

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Citation History

Topics

Millimeter-Wave Propagation and Modeling
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Wireless Communication Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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