Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks

In this article, we investigate the performance of a piece-wise linear model of energy harvesting-based multiuser overlay spectrum sharing system. Herein, an energy-constrained secondary node acts as a cooperative relay to assist the information transmission between a primary transmitter and multipl...

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Main Authors: Sourabh Solanki, Prabhat K. Upadhyay, Daniel Benevides Da Costa, Haiyang Ding, Jules M. Moualeu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Open Journal of the Communications Society
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9259086/
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spelling doaj-c1fefdbe4fc048f9a1b03ce9bda15ed42021-03-29T18:57:19ZengIEEEIEEE Open Journal of the Communications Society2644-125X2020-01-0111820183610.1109/OJCOMS.2020.30380129259086Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing NetworksSourabh Solanki0https://orcid.org/0000-0002-7968-7655Prabhat K. Upadhyay1https://orcid.org/0000-0001-7636-5469Daniel Benevides Da Costa2https://orcid.org/0000-0002-5439-7475Haiyang Ding3https://orcid.org/0000-0003-4446-5216Jules M. Moualeu4https://orcid.org/0000-0003-0307-1931Discipline of Electrical Engineering, Indian Institute of Technology Indore, Indore, IndiaDiscipline of Electrical Engineering, Indian Institute of Technology Indore, Indore, IndiaDepartment of Computer Engineering, Federal University of Ceará, Sobral, BrazilSchool of Information and Communications, National University of Defense Technology, Xi’an, ChinaSchool of Electrical and Information Engineering, University of the Witwatersrand at Johannesburg, Johannesburg, South AfricaIn this article, we investigate the performance of a piece-wise linear model of energy harvesting-based multiuser overlay spectrum sharing system. Herein, an energy-constrained secondary node acts as a cooperative relay to assist the information transmission between a primary transmitter and multiple primary receivers. In return for the cooperation, the secondary node enjoys access to the primary user's spectrum for its own information transfer. Specifically, by employing a time-switching based receiver, the secondary node harvests energy from the received radio-frequency signal of primary transmitter during a dedicated energy harvesting phase. In the subsequent information transfer phase, the secondary node splits the harvested power to forward the primary data as well as its own information intended for another secondary user. We analyze the impact of decoding primary's information at the secondary receiver on the performance of secondary network. Importantly, we propose an improved energy harvesting-based relaying scheme which makes an efficient use of available degrees of freedom and thereby enhances the performance of both primary and secondary networks significantly. For this analytical framework, we derive the expressions of outage probability for primary and secondary networks. Numerical and simulation results are obtained to extract various useful insights and to validate our theoretical developments.https://ieeexplore.ieee.org/document/9259086/Cooperative relayingnon-linear energy harvestingoutage probabilityperformance analysisspectrum sharingsimultaneous wireless information and power transfer (SWIPT)
collection DOAJ
language English
format Article
sources DOAJ
author Sourabh Solanki
Prabhat K. Upadhyay
Daniel Benevides Da Costa
Haiyang Ding
Jules M. Moualeu
spellingShingle Sourabh Solanki
Prabhat K. Upadhyay
Daniel Benevides Da Costa
Haiyang Ding
Jules M. Moualeu
Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
IEEE Open Journal of the Communications Society
Cooperative relaying
non-linear energy harvesting
outage probability
performance analysis
spectrum sharing
simultaneous wireless information and power transfer (SWIPT)
author_facet Sourabh Solanki
Prabhat K. Upadhyay
Daniel Benevides Da Costa
Haiyang Ding
Jules M. Moualeu
author_sort Sourabh Solanki
title Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
title_short Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
title_full Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
title_fullStr Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
title_full_unstemmed Performance Analysis of Piece-Wise Linear Model of Energy Harvesting-Based Multiuser Overlay Spectrum Sharing Networks
title_sort performance analysis of piece-wise linear model of energy harvesting-based multiuser overlay spectrum sharing networks
publisher IEEE
series IEEE Open Journal of the Communications Society
issn 2644-125X
publishDate 2020-01-01
description In this article, we investigate the performance of a piece-wise linear model of energy harvesting-based multiuser overlay spectrum sharing system. Herein, an energy-constrained secondary node acts as a cooperative relay to assist the information transmission between a primary transmitter and multiple primary receivers. In return for the cooperation, the secondary node enjoys access to the primary user's spectrum for its own information transfer. Specifically, by employing a time-switching based receiver, the secondary node harvests energy from the received radio-frequency signal of primary transmitter during a dedicated energy harvesting phase. In the subsequent information transfer phase, the secondary node splits the harvested power to forward the primary data as well as its own information intended for another secondary user. We analyze the impact of decoding primary's information at the secondary receiver on the performance of secondary network. Importantly, we propose an improved energy harvesting-based relaying scheme which makes an efficient use of available degrees of freedom and thereby enhances the performance of both primary and secondary networks significantly. For this analytical framework, we derive the expressions of outage probability for primary and secondary networks. Numerical and simulation results are obtained to extract various useful insights and to validate our theoretical developments.
topic Cooperative relaying
non-linear energy harvesting
outage probability
performance analysis
spectrum sharing
simultaneous wireless information and power transfer (SWIPT)
url https://ieeexplore.ieee.org/document/9259086/
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