Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis

In this time, energy efficiency (EE), measured in bits per Watt, has been considered as an important emerging metric in energy-constrained wireless communication networks because of their energy shortage. In this paper, we investigate power beacon assisted (PB) energy harvesting (EH) in half-duplex...

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Main Authors: Van-Duc Phan, Tan N. Nguyen, Minh Tran, Tran Thanh Trang, Miroslav Voznak, Duy-Hung Ha, Thanh-Long Nguyen
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/13/2579
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author Van-Duc Phan
Tan N. Nguyen
Minh Tran
Tran Thanh Trang
Miroslav Voznak
Duy-Hung Ha
Thanh-Long Nguyen
author_facet Van-Duc Phan
Tan N. Nguyen
Minh Tran
Tran Thanh Trang
Miroslav Voznak
Duy-Hung Ha
Thanh-Long Nguyen
author_sort Van-Duc Phan
collection DOAJ
description In this time, energy efficiency (EE), measured in bits per Watt, has been considered as an important emerging metric in energy-constrained wireless communication networks because of their energy shortage. In this paper, we investigate power beacon assisted (PB) energy harvesting (EH) in half-duplex (HD) communication network under co-channel Interferer over Rayleigh fading environment. In this work, we investigate the model system with the time switching (TS) protocol. Firstly, the exact and asymptotic form expressions of the outage probability (OP) are analyzed and derived. Then the system EE is investigated and the influence of the primary system parameters on the system performance. Finally, we verify the correctness of the analytical expressions using Monte Carlo simulation. Finally, we can state that the simulation and analytical results are the same.
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spelling doaj.art-12697eb95dfe4a7fba0bfee463dd322f2022-12-22T04:20:17ZengMDPI AGEnergies1996-10732019-07-011213257910.3390/en12132579en12132579Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability AnalysisVan-Duc Phan0Tan N. Nguyen1Minh Tran2Tran Thanh Trang3Miroslav Voznak4Duy-Hung Ha5Thanh-Long Nguyen6Center of Excellence for Automation and Precision Mechanical Engineering, Nguyen Tat Thanh University, Ho Chi Minh City 70000, VietnamWireless Communications Research Group, Faculty of Electrical & Electronics Engineering, Ton Duc Thang University, 19 Nguyen Huu Tho Street, Ho Chi Minh City 70000, VietnamOptoelectronics Research Group, Faculty of Electrical and Electronics Engineering, Ton Duc Thang University, Ho Chi Minh City 70000, VietnamNational Key Laboratory of Digital Control and System Engineering, Ho Chi Minh City 70000, VietnamFaculty of Electrical Engineering and Computer Science, Technical University of Ostrava, Ostrava 70833, Czech RepublicWireless Communications Research Group, Faculty of Electrical & Electronics Engineering, Ton Duc Thang University, 19 Nguyen Huu Tho Street, Ho Chi Minh City 70000, VietnamCenter for Information Technology, Ho Chi Minh City University of Food Industry, Ho Chi Minh City 70000, VietnamIn this time, energy efficiency (EE), measured in bits per Watt, has been considered as an important emerging metric in energy-constrained wireless communication networks because of their energy shortage. In this paper, we investigate power beacon assisted (PB) energy harvesting (EH) in half-duplex (HD) communication network under co-channel Interferer over Rayleigh fading environment. In this work, we investigate the model system with the time switching (TS) protocol. Firstly, the exact and asymptotic form expressions of the outage probability (OP) are analyzed and derived. Then the system EE is investigated and the influence of the primary system parameters on the system performance. Finally, we verify the correctness of the analytical expressions using Monte Carlo simulation. Finally, we can state that the simulation and analytical results are the same.https://www.mdpi.com/1996-1073/12/13/2579power beacon (PB)energy efficiency (EE)outage probability (OP)energy harvesting (EH)co-channel interference (CCI)
spellingShingle Van-Duc Phan
Tan N. Nguyen
Minh Tran
Tran Thanh Trang
Miroslav Voznak
Duy-Hung Ha
Thanh-Long Nguyen
Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
Energies
power beacon (PB)
energy efficiency (EE)
outage probability (OP)
energy harvesting (EH)
co-channel interference (CCI)
title Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
title_full Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
title_fullStr Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
title_full_unstemmed Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
title_short Power Beacon-Assisted Energy Harvesting in a Half-Duplex Communication Network under Co-Channel Interference over a Rayleigh Fading Environment: Energy Efficiency and Outage Probability Analysis
title_sort power beacon assisted energy harvesting in a half duplex communication network under co channel interference over a rayleigh fading environment energy efficiency and outage probability analysis
topic power beacon (PB)
energy efficiency (EE)
outage probability (OP)
energy harvesting (EH)
co-channel interference (CCI)
url https://www.mdpi.com/1996-1073/12/13/2579
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