Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems

This paper investigates the joint beamforming and power splitting factor optimization in distributed multiple input single output systems with power-splitting simultaneous wireless information and power transfer (SWIPT). We assume that all the user equipment (UEs) perform data transmission, whereas...

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Main Authors: Huanhuan Mao, Bingqian Xu, Pengcheng Zhu, Jiamin Li, Xiaohu You
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8466867/
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spelling doaj-12ddf9a4f9e44c5fb7a13c248e4fa5aa2021-03-29T21:02:56ZengIEEEIEEE Access2169-35362018-01-016529975300510.1109/ACCESS.2018.28707178466867Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO SystemsHuanhuan Mao0Bingqian Xu1Pengcheng Zhu2https://orcid.org/0000-0001-9867-7041Jiamin Li3https://orcid.org/0000-0002-4527-3147Xiaohu You4National Mobile Communications Research Laboratory, Southeast University, Nanjing, ChinaNational Mobile Communications Research Laboratory, Southeast University, Nanjing, ChinaNational Mobile Communications Research Laboratory, Southeast University, Nanjing, ChinaNational Mobile Communications Research Laboratory, Southeast University, Nanjing, ChinaNational Mobile Communications Research Laboratory, Southeast University, Nanjing, ChinaThis paper investigates the joint beamforming and power splitting factor optimization in distributed multiple input single output systems with power-splitting simultaneous wireless information and power transfer (SWIPT). We assume that all the user equipment (UEs) perform data transmission, whereas only UEs with sufficient large scale fading, defined as SWIPT UEs, also conduct energy harvesting. System total power consumption minimization problem is formulated with per-UE quality of service (QoS) constraints and minimal harvesting power constraints for SWIPT UEs with the consideration of RAU selection. First, we classify the UEs into two groups according to the large scale fading criterion. Then for perfect channel state information (CSI), the optimal problem is formulated and approximated by transforming RAU mode indicator function into reweighted &#x2113;<sub>0</sub>-norm. Semi-definite relaxed method is used and an iterative algorithm is proposed. Furthermore, we consider the optimization with imperfect CSI and change the constraints to the worst case. To guarantee the rank-one constraint, an iterative function based on penalty function is proposed. Simulations show that the proposed algorithms with RAU selection can significantly reduce system total power consumption and also reveal that the RAU closest to SWIPT UEs tends to be active.https://ieeexplore.ieee.org/document/8466867/Beamformingdistributed MISORAU selectionrobust optimizationsimultaneous wireless information and power transfer (SWIPT)
collection DOAJ
language English
format Article
sources DOAJ
author Huanhuan Mao
Bingqian Xu
Pengcheng Zhu
Jiamin Li
Xiaohu You
spellingShingle Huanhuan Mao
Bingqian Xu
Pengcheng Zhu
Jiamin Li
Xiaohu You
Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
IEEE Access
Beamforming
distributed MISO
RAU selection
robust optimization
simultaneous wireless information and power transfer (SWIPT)
author_facet Huanhuan Mao
Bingqian Xu
Pengcheng Zhu
Jiamin Li
Xiaohu You
author_sort Huanhuan Mao
title Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
title_short Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
title_full Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
title_fullStr Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
title_full_unstemmed Downlink Transmission Strategies in Power-Splitting SWIPT Distributed MISO Systems
title_sort downlink transmission strategies in power-splitting swipt distributed miso systems
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description This paper investigates the joint beamforming and power splitting factor optimization in distributed multiple input single output systems with power-splitting simultaneous wireless information and power transfer (SWIPT). We assume that all the user equipment (UEs) perform data transmission, whereas only UEs with sufficient large scale fading, defined as SWIPT UEs, also conduct energy harvesting. System total power consumption minimization problem is formulated with per-UE quality of service (QoS) constraints and minimal harvesting power constraints for SWIPT UEs with the consideration of RAU selection. First, we classify the UEs into two groups according to the large scale fading criterion. Then for perfect channel state information (CSI), the optimal problem is formulated and approximated by transforming RAU mode indicator function into reweighted &#x2113;<sub>0</sub>-norm. Semi-definite relaxed method is used and an iterative algorithm is proposed. Furthermore, we consider the optimization with imperfect CSI and change the constraints to the worst case. To guarantee the rank-one constraint, an iterative function based on penalty function is proposed. Simulations show that the proposed algorithms with RAU selection can significantly reduce system total power consumption and also reveal that the RAU closest to SWIPT UEs tends to be active.
topic Beamforming
distributed MISO
RAU selection
robust optimization
simultaneous wireless information and power transfer (SWIPT)
url https://ieeexplore.ieee.org/document/8466867/
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AT bingqianxu downlinktransmissionstrategiesinpowersplittingswiptdistributedmisosystems
AT pengchengzhu downlinktransmissionstrategiesinpowersplittingswiptdistributedmisosystems
AT jiaminli downlinktransmissionstrategiesinpowersplittingswiptdistributedmisosystems
AT xiaohuyou downlinktransmissionstrategiesinpowersplittingswiptdistributedmisosystems
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