JOURNAL ARTICLE

Random Pilot and Data Access for Massive MIMO Spatially Correlated Rayleigh Fading Channels

Abstract

Random access is necessary in crowded scenarios due to the limitation of pilot sequences and the intermittent pattern of device activity. Nowadays, most of the related works are based on independent and identically distributed (i.i.d.) channels. However, massive multiple-input multiple-output (MIMO) channels are not always i.i.d. in realistic outdoor wireless propagation environments. In this paper, a device grouping and pilot set allocation algorithm is proposed for the uplink massive MIMO systems over spatially correlated Rayleigh fading channels. Firstly, devices are divided into multiple groups, and the channel covariance matrixes of devices within the same group are approximately orthogonal. In each group, a dedicated pilot set is assigned. Then active devices perform random pilot and data access process. The mean square error of channel estimation (MSE-CE) and the spectral efficiency of this scheme are derived, and the MSE-CE can be minimized when collision devices have non- overlapping angle of arrival (AoA) intervals. Simulation results indicate that the MSE-CE and spectral efficiency of this protocol are improved compared with the traditional scheme. The MSE-CE of the proposed scheme is close to the theoretical lower bound over a wide signal-to-noise ratio (SNR) region especially for long pilot sequence. Furthermore, the MSE-CE performance gains are significant in high SNR and strongly correlated scenarios.

Keywords:
MIMO Rayleigh fading Fading Computer science Telecommunications link Independent and identically distributed random variables Algorithm Mean squared error Random access Channel (broadcasting) Spectral efficiency Covariance Signal-to-noise ratio (imaging) Electronic engineering Mathematics Statistics Random variable Computer network Telecommunications Engineering

Metrics

5
Cited By
0.57
FWCI (Field Weighted Citation Impact)
14
Refs
0.70
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Energy Harvesting in Wireless Networks
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Wireless Communication Security Techniques
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

Related Documents

JOURNAL ARTICLE

Pilot Reuse for Massive MIMO Transmission over Spatially Correlated Rayleigh Fading Channels

Li YouXiqi GaoXiang-Gen XiaNi MaYan Peng

Journal:   IEEE Transactions on Wireless Communications Year: 2015 Vol: 14 (6)Pages: 3352-3366
JOURNAL ARTICLE

Massive MIMO With Spatially Correlated Rician Fading Channels

Özgecan ÖzdoğanEmil BjörnsonErik G. Larsson

Journal:   IEEE Transactions on Communications Year: 2019 Vol: 67 (5)Pages: 3234-3250
JOURNAL ARTICLE

Spatially Correlated Rayleigh Fading for Cell-Free Massive MIMO Systems

Meng ZhouYao ZhangXu QiaoLongxiang Yang

Journal:   IEEE Access Year: 2020 Vol: 8 Pages: 42154-42168
JOURNAL ARTICLE

On the capacity of spatially correlated mimo rayleigh-fading channels

Marco ChianiMoe Z. WinAlberto Zanella

Journal:   IEEE Transactions on Information Theory Year: 2003 Vol: 49 (10)Pages: 2363-2371
© 2026 ScienceGate Book Chapters — All rights reserved.