Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal

With the rapid development of information technology, facing the problems and new challenges brought by mobile Internet and Internet of things technology, as one of the key technologies of 5G, millimeter-wave mobile communication (28/38/60/70 GHz) which can realize gigabit (GB/s, or even higher) dat...

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Main Author: Shengli Yan
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Journal of Sensors
Online Access:http://dx.doi.org/10.1155/2021/2716475
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spelling doaj-66b9cffa2efc4bc79f2e295b6968ff8d2021-10-04T01:57:38ZengHindawi LimitedJournal of Sensors1687-72682021-01-01202110.1155/2021/2716475Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing TerminalShengli Yan0School of Automobile and Mechatronics EngineeringWith the rapid development of information technology, facing the problems and new challenges brought by mobile Internet and Internet of things technology, as one of the key technologies of 5G, millimeter-wave mobile communication (28/38/60/70 GHz) which can realize gigabit (GB/s, or even higher) data transmission rate has also attracted extensive attention of wireless researchers all over the world, it has quickly become a research hotspot in the field of wireless communication. In the millimeter-wave massive MIMO downlink wireless sensor system, a block diagonal beamforming algorithm based on the approximate inverse of Neumann series is improved to obtain complete digital beamforming. Then, when designing hybrid beamforming, channel estimation and high-dimensional singular value decomposition are required for traditional analog and digital hybrid beamforming. A low complexity hybrid beamforming scheme is designed. An improved gradient projection algorithm is proposed in the design of analog beamforming, which can solve the problem of high computational complexity and less damage to guarantee and rate. Simulation results show that the hybrid beam terminal of the sensor reduces the number of RF links required for full digital beamforming and is as close to the spectral efficiency performance of full digital beamforming as possible. The results show that the performance of the designed hybrid beamforming scheme can still be close to that of the pure digital beamforming scheme without involving channel estimation and SVD decomposition.http://dx.doi.org/10.1155/2021/2716475
collection DOAJ
language English
format Article
sources DOAJ
author Shengli Yan
spellingShingle Shengli Yan
Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
Journal of Sensors
author_facet Shengli Yan
author_sort Shengli Yan
title Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
title_short Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
title_full Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
title_fullStr Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
title_full_unstemmed Research on 5G-Oriented Wireless Sensor Array of Millimeter Hybrid Beam Sensing Terminal
title_sort research on 5g-oriented wireless sensor array of millimeter hybrid beam sensing terminal
publisher Hindawi Limited
series Journal of Sensors
issn 1687-7268
publishDate 2021-01-01
description With the rapid development of information technology, facing the problems and new challenges brought by mobile Internet and Internet of things technology, as one of the key technologies of 5G, millimeter-wave mobile communication (28/38/60/70 GHz) which can realize gigabit (GB/s, or even higher) data transmission rate has also attracted extensive attention of wireless researchers all over the world, it has quickly become a research hotspot in the field of wireless communication. In the millimeter-wave massive MIMO downlink wireless sensor system, a block diagonal beamforming algorithm based on the approximate inverse of Neumann series is improved to obtain complete digital beamforming. Then, when designing hybrid beamforming, channel estimation and high-dimensional singular value decomposition are required for traditional analog and digital hybrid beamforming. A low complexity hybrid beamforming scheme is designed. An improved gradient projection algorithm is proposed in the design of analog beamforming, which can solve the problem of high computational complexity and less damage to guarantee and rate. Simulation results show that the hybrid beam terminal of the sensor reduces the number of RF links required for full digital beamforming and is as close to the spectral efficiency performance of full digital beamforming as possible. The results show that the performance of the designed hybrid beamforming scheme can still be close to that of the pure digital beamforming scheme without involving channel estimation and SVD decomposition.
url http://dx.doi.org/10.1155/2021/2716475
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