Outage probability analysis of power domain ordered NOMA under various channel conditions

Author:

Koteeshwari RS.ORCID,Malarkodi B.

Abstract

PurposeAmong the proposed radio access strategies for improving system execution in 5G networks, the non-orthogonal multiple access (NOMA) scheme is the prominent one.Design/methodology/approachAmong the most fundamental NOMA methods, power-domain NOMA is the one where at the transmitter, superposition coding is used, and at the receiver, successive interference cancellation (SIC) is used. The importance of power allocation (PA) in achieving appreciable SIC and high system throughput cannot be overstated.FindingsThis research focuses on an outage probability analysis of NOMA downlink system under various channel conditions like Rayleigh, Rician and Nakagami-m fading channel. The system design's objectives, techniques and constraints for NOMA-based 5G networks' PA strategies are comprehensively studied.Practical implicationsFrom the results of this study, it is found that the outage probability performance of downlink ordered NOMA under Rayleigh, Rician and Nakagami-m fading channel was good.Originality/valueOutage probability analysis of downlink ordered NOMA under various channel conditions like Rayleigh, Rician and Nakagami-m fading channels were employed. Though the performance of Nakagami-m fading channel is lesser compared to Rayleigh channel, the performance for user 1 and user 2 are good.

Publisher

Emerald

Subject

Water Science and Technology,Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics,General Biochemistry, Genetics and Molecular Biology,General Business, Management and Accounting,General Computer Science,General Medicine,General Environmental Science,Education

Reference24 articles.

1. Outage probability analysis for NOMA downlink and uplink communication systems with generalized fading channels;IEEE Access,2020

2. Dynamic user clustering and power allocation for uplink and downlink non-orthogonal multiple access (NOMA) systems;IEEE Access,2016

3. Joint user association, power allocation, and throughput maximization in 5G H-CRAN networks;IEEE Transactions on Vehicular Technology,2017

4. Non-Orthogonal multiple access (NOMA) with successive interference cancellation;IEICE Transactions on Communications,2015

5. Waterfilling-based proportional fairness scheduler for downlink non-orthogonal multiple access;IEEE Wireless Communications Letters,2017

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