A full-duplex SWIPT system with self-energy recycling to minimize energy consumption

Abstract In simultaneous wireless information and power transfer system (SWIPT), additional resource allocation for power transfer degrades system performance. Therefore, how to allocate power and time to data transmission and energy transfer is very important for the performance of time switching-b...

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Main Authors: Hyunjong Na, Chungyong Lee
Format: Article
Language:English
Published: SpringerOpen 2018-10-01
Series:EURASIP Journal on Wireless Communications and Networking
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13638-018-1249-4
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spelling doaj-2c90c4938cf043eeb2c73a6f169896862020-11-25T01:16:36ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14992018-10-012018111210.1186/s13638-018-1249-4A full-duplex SWIPT system with self-energy recycling to minimize energy consumptionHyunjong Na0Chungyong Lee1The Department of Electrical and Electronic Engineering, Yonsei UniversityThe Department of Electrical and Electronic Engineering, Yonsei UniversityAbstract In simultaneous wireless information and power transfer system (SWIPT), additional resource allocation for power transfer degrades system performance. Therefore, how to allocate power and time to data transmission and energy transfer is very important for the performance of time switching-based SWTPT system. In this paper, we propose a time switching-based full-duplex SWIPT system combined with self-energy recycling since self-interference harvesting is more efficient than simultaneous data transmission if the magnitude of self-interference is sufficiently large. Proposed system has additional self-energy recycling phases compared to the conventional time switching-based full-duplex SWIPT system. Considering the limitation of maximum transmission power, proposed system is optimized transmission time as well as power. For the validity of the proposed system, we show the bi-convexity of proposed system and propose an iterative algorithm for optimization of proposed system. In simulations, we compare proposed system with the half-duplex system without simultaneous data transmission phase and the full-duplex system without self-energy recycling phase. Simulation results show proposed system consume less energy than the conventional systems.http://link.springer.com/article/10.1186/s13638-018-1249-4SWIPTFull duplexDevice-to-device communicationSelf-energy recycling
collection DOAJ
language English
format Article
sources DOAJ
author Hyunjong Na
Chungyong Lee
spellingShingle Hyunjong Na
Chungyong Lee
A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
EURASIP Journal on Wireless Communications and Networking
SWIPT
Full duplex
Device-to-device communication
Self-energy recycling
author_facet Hyunjong Na
Chungyong Lee
author_sort Hyunjong Na
title A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
title_short A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
title_full A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
title_fullStr A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
title_full_unstemmed A full-duplex SWIPT system with self-energy recycling to minimize energy consumption
title_sort full-duplex swipt system with self-energy recycling to minimize energy consumption
publisher SpringerOpen
series EURASIP Journal on Wireless Communications and Networking
issn 1687-1499
publishDate 2018-10-01
description Abstract In simultaneous wireless information and power transfer system (SWIPT), additional resource allocation for power transfer degrades system performance. Therefore, how to allocate power and time to data transmission and energy transfer is very important for the performance of time switching-based SWTPT system. In this paper, we propose a time switching-based full-duplex SWIPT system combined with self-energy recycling since self-interference harvesting is more efficient than simultaneous data transmission if the magnitude of self-interference is sufficiently large. Proposed system has additional self-energy recycling phases compared to the conventional time switching-based full-duplex SWIPT system. Considering the limitation of maximum transmission power, proposed system is optimized transmission time as well as power. For the validity of the proposed system, we show the bi-convexity of proposed system and propose an iterative algorithm for optimization of proposed system. In simulations, we compare proposed system with the half-duplex system without simultaneous data transmission phase and the full-duplex system without self-energy recycling phase. Simulation results show proposed system consume less energy than the conventional systems.
topic SWIPT
Full duplex
Device-to-device communication
Self-energy recycling
url http://link.springer.com/article/10.1186/s13638-018-1249-4
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