Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency

In millimeter-wave (mmWave)-based massive multiple-input-multiple-output (MIMO) systems, hybrid precoding is considered one of the indispensable techniques in the next generation wireless communication systems (5G) to reduce the number of radio-frequency (RF) chains. However, the existing hybrid pre...

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Main Authors: Mengqian Tian, Jianing Zhang, Yu Zhao, Lianjun Yuan, Jie Yang, Guan Gui
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8686087/
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author Mengqian Tian
Jianing Zhang
Yu Zhao
Lianjun Yuan
Jie Yang
Guan Gui
author_facet Mengqian Tian
Jianing Zhang
Yu Zhao
Lianjun Yuan
Jie Yang
Guan Gui
author_sort Mengqian Tian
collection DOAJ
description In millimeter-wave (mmWave)-based massive multiple-input-multiple-output (MIMO) systems, hybrid precoding is considered one of the indispensable techniques in the next generation wireless communication systems (5G) to reduce the number of radio-frequency (RF) chains. However, the existing hybrid precoding techniques often cause performance loss. To solve this problem, the switch and inverter (SI)-based hybrid precoding architecture has been proposed recently as an energy-efficient solution for these challenges. In this paper, a detailed performance analysis on sum-rate as well as energy-efficiency is provided through simulation on the two-stage hybrid precoding, antenna selection (AS)-based hybrid precoding, and adaptive cross-entropy (ACE)-based hybrid precoding. It is aimed to prove that the performance of the ACE-based scheme is much superior to that of the others with the limited ranges of values of all parameters. At last, the suitable parameters are determined and we prove that they can lead to the optimal performance.
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spelling doaj.art-f1a49c18805344edba6ebfc8d8856a0a2022-12-21T19:57:40ZengIEEEIEEE Access2169-35362019-01-017494484945510.1109/ACCESS.2019.29100948686087Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-EfficiencyMengqian Tian0Jianing Zhang1Yu Zhao2Lianjun Yuan3Jie Yang4Guan Gui5https://orcid.org/0000-0003-3888-2881College of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing, ChinaSchool of Computer Science, Nanjing University of Posts and Telecommunications, Nanjing, ChinaCollege of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing, ChinaCollege of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing, ChinaCollege of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing, ChinaCollege of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing, ChinaIn millimeter-wave (mmWave)-based massive multiple-input-multiple-output (MIMO) systems, hybrid precoding is considered one of the indispensable techniques in the next generation wireless communication systems (5G) to reduce the number of radio-frequency (RF) chains. However, the existing hybrid precoding techniques often cause performance loss. To solve this problem, the switch and inverter (SI)-based hybrid precoding architecture has been proposed recently as an energy-efficient solution for these challenges. In this paper, a detailed performance analysis on sum-rate as well as energy-efficiency is provided through simulation on the two-stage hybrid precoding, antenna selection (AS)-based hybrid precoding, and adaptive cross-entropy (ACE)-based hybrid precoding. It is aimed to prove that the performance of the ACE-based scheme is much superior to that of the others with the limited ranges of values of all parameters. At last, the suitable parameters are determined and we prove that they can lead to the optimal performance.https://ieeexplore.ieee.org/document/8686087/mmWave massive MIMOenergy-efficiencysum-ratehybrid precodingperformance analysis
spellingShingle Mengqian Tian
Jianing Zhang
Yu Zhao
Lianjun Yuan
Jie Yang
Guan Gui
Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
IEEE Access
mmWave massive MIMO
energy-efficiency
sum-rate
hybrid precoding
performance analysis
title Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
title_full Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
title_fullStr Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
title_full_unstemmed Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
title_short Switch and Inverter Based Hybrid Precoding Algorithm for mmWave Massive MIMO System: Analysis on Sum-Rate and Energy-Efficiency
title_sort switch and inverter based hybrid precoding algorithm for mmwave massive mimo system analysis on sum rate and energy efficiency
topic mmWave massive MIMO
energy-efficiency
sum-rate
hybrid precoding
performance analysis
url https://ieeexplore.ieee.org/document/8686087/
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AT jianingzhang switchandinverterbasedhybridprecodingalgorithmformmwavemassivemimosystemanalysisonsumrateandenergyefficiency
AT yuzhao switchandinverterbasedhybridprecodingalgorithmformmwavemassivemimosystemanalysisonsumrateandenergyefficiency
AT lianjunyuan switchandinverterbasedhybridprecodingalgorithmformmwavemassivemimosystemanalysisonsumrateandenergyefficiency
AT jieyang switchandinverterbasedhybridprecodingalgorithmformmwavemassivemimosystemanalysisonsumrateandenergyefficiency
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