Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network

Abstract In this paper, we consider a wireless-powered dual-relay network consisting of one multi-antenna source, two single-antenna energy-constrained relays and one single-antenna destination without direct source to destination link. In order to establish the communication flow, the energy-constr...

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Main Authors: Guojie Hu, Yueming Cai, Liang Ao, Xiangdong Wang
Format: Article
Language:English
Published: SpringerOpen 2019-11-01
Series:EURASIP Journal on Wireless Communications and Networking
Subjects:
TSR
PSR
HR
Online Access:http://link.springer.com/article/10.1186/s13638-019-1580-4
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spelling doaj-a6988899017244f980f85a87898de8fb2020-11-25T04:05:57ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14992019-11-012019111610.1186/s13638-019-1580-4Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay networkGuojie HuYueming CaiLiang AoXiangdong WangAbstract In this paper, we consider a wireless-powered dual-relay network consisting of one multi-antenna source, two single-antenna energy-constrained relays and one single-antenna destination without direct source to destination link. In order to establish the communication flow, the energy-constrained relays harvest energy from the radio frequency transmitted by the source firstly, then exploit the harvested energy to forward the source information to the destination based on distributed space time coding (DSTC). Under this network architecture, three decode-and-forward (DF) technique-based relaying protocols, i.e., time switching-based relaying (TSR) protocol, power splitting-based relaying (PSR) protocol, and hybrid relaying (HR) protocol, are considered to drive the energy transfer and information transmission. To maximize the network throughput, the joint design for the optimal energy and information beamforming vectors employed at the source, the optimal time switching, and power splitting ratios under these three protocols are investigated and solved efficiently by employing simple sequential optimization approach or alternating optimization approach. Simulations are conducted to show the superior performance achieved by our proposed scheme. Moreover, we find that the TSR protocol outperforms the PSR protocol in the low signal-to-noise ratio (SNR) region, while the latter outperforms the former in the high SNR region. And the HR protocol achieves the best performance in any SNR region. At the same time, the effect of the relays’ locations on the throughput performance of these three protocols is also investigated.http://link.springer.com/article/10.1186/s13638-019-1580-4Wireless powered communication networkBeamforming vector designTSRPSRHR
collection DOAJ
language English
format Article
sources DOAJ
author Guojie Hu
Yueming Cai
Liang Ao
Xiangdong Wang
spellingShingle Guojie Hu
Yueming Cai
Liang Ao
Xiangdong Wang
Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
EURASIP Journal on Wireless Communications and Networking
Wireless powered communication network
Beamforming vector design
TSR
PSR
HR
author_facet Guojie Hu
Yueming Cai
Liang Ao
Xiangdong Wang
author_sort Guojie Hu
title Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
title_short Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
title_full Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
title_fullStr Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
title_full_unstemmed Joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
title_sort joint design of beamforming and time switching/power splitting for wireless-powered multi-antenna dual-relay network
publisher SpringerOpen
series EURASIP Journal on Wireless Communications and Networking
issn 1687-1499
publishDate 2019-11-01
description Abstract In this paper, we consider a wireless-powered dual-relay network consisting of one multi-antenna source, two single-antenna energy-constrained relays and one single-antenna destination without direct source to destination link. In order to establish the communication flow, the energy-constrained relays harvest energy from the radio frequency transmitted by the source firstly, then exploit the harvested energy to forward the source information to the destination based on distributed space time coding (DSTC). Under this network architecture, three decode-and-forward (DF) technique-based relaying protocols, i.e., time switching-based relaying (TSR) protocol, power splitting-based relaying (PSR) protocol, and hybrid relaying (HR) protocol, are considered to drive the energy transfer and information transmission. To maximize the network throughput, the joint design for the optimal energy and information beamforming vectors employed at the source, the optimal time switching, and power splitting ratios under these three protocols are investigated and solved efficiently by employing simple sequential optimization approach or alternating optimization approach. Simulations are conducted to show the superior performance achieved by our proposed scheme. Moreover, we find that the TSR protocol outperforms the PSR protocol in the low signal-to-noise ratio (SNR) region, while the latter outperforms the former in the high SNR region. And the HR protocol achieves the best performance in any SNR region. At the same time, the effect of the relays’ locations on the throughput performance of these three protocols is also investigated.
topic Wireless powered communication network
Beamforming vector design
TSR
PSR
HR
url http://link.springer.com/article/10.1186/s13638-019-1580-4
work_keys_str_mv AT guojiehu jointdesignofbeamformingandtimeswitchingpowersplittingforwirelesspoweredmultiantennadualrelaynetwork
AT yuemingcai jointdesignofbeamformingandtimeswitchingpowersplittingforwirelesspoweredmultiantennadualrelaynetwork
AT liangao jointdesignofbeamformingandtimeswitchingpowersplittingforwirelesspoweredmultiantennadualrelaynetwork
AT xiangdongwang jointdesignofbeamformingandtimeswitchingpowersplittingforwirelesspoweredmultiantennadualrelaynetwork
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