3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation

碩士 === 國立中正大學 === 通訊工程研究所 === 106 === In wireless environment, the path loss is getting larger for higher carrier frequency. In order to get over high path loss in mm-wave frequency band, massive MIMO and beam-forming techniques were introduced into 3GPP 5G NR system. However, beam alignment can be...

Full description

Bibliographic Details
Main Authors: CHANG,TE-LAI, 張得來
Other Authors: SHEN,WERN-HO
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/6yg3a9
id ndltd-TW-106CCU00650058
record_format oai_dc
spelling ndltd-TW-106CCU006500582019-05-16T00:44:36Z http://ndltd.ncl.edu.tw/handle/6yg3a9 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation 3GPP 5G NR 波束恢復程序設計與效能評估 CHANG,TE-LAI 張得來 碩士 國立中正大學 通訊工程研究所 106 In wireless environment, the path loss is getting larger for higher carrier frequency. In order to get over high path loss in mm-wave frequency band, massive MIMO and beam-forming techniques were introduced into 3GPP 5G NR system. However, beam alignment can be easily destroyed by small variation in device behaviors such as displacement especially for systems with narrow beams, and that degrades significantly the link performance. Hence, beam management procedure is required to ensure the system operate the way it was designed. In this thesis, we discuss the effects of proposed beam recovery procedure under UE (user equipment) displacement in an outdoor environment in which the 3GPP 3D channel model is used to model the channel characteristics. Also, beam management resource, i.e. time structure and synchronization signal block is considered. Our results show that for beam recovery procedure design, UE location information needs to be considered so that beam recovery redundancy probability can be reduced by 21% to 26% without RSRP loss. SHEN,WERN-HO 沈文和 2018 學位論文 ; thesis 55 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中正大學 === 通訊工程研究所 === 106 === In wireless environment, the path loss is getting larger for higher carrier frequency. In order to get over high path loss in mm-wave frequency band, massive MIMO and beam-forming techniques were introduced into 3GPP 5G NR system. However, beam alignment can be easily destroyed by small variation in device behaviors such as displacement especially for systems with narrow beams, and that degrades significantly the link performance. Hence, beam management procedure is required to ensure the system operate the way it was designed. In this thesis, we discuss the effects of proposed beam recovery procedure under UE (user equipment) displacement in an outdoor environment in which the 3GPP 3D channel model is used to model the channel characteristics. Also, beam management resource, i.e. time structure and synchronization signal block is considered. Our results show that for beam recovery procedure design, UE location information needs to be considered so that beam recovery redundancy probability can be reduced by 21% to 26% without RSRP loss.
author2 SHEN,WERN-HO
author_facet SHEN,WERN-HO
CHANG,TE-LAI
張得來
author CHANG,TE-LAI
張得來
spellingShingle CHANG,TE-LAI
張得來
3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
author_sort CHANG,TE-LAI
title 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
title_short 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
title_full 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
title_fullStr 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
title_full_unstemmed 3GPP 5G NR Beam Recovery Procedures Design and Performance Evaluation
title_sort 3gpp 5g nr beam recovery procedures design and performance evaluation
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/6yg3a9
work_keys_str_mv AT changtelai 3gpp5gnrbeamrecoveryproceduresdesignandperformanceevaluation
AT zhāngdélái 3gpp5gnrbeamrecoveryproceduresdesignandperformanceevaluation
AT changtelai 3gpp5gnrbōshùhuīfùchéngxùshèjìyǔxiàonéngpínggū
AT zhāngdélái 3gpp5gnrbōshùhuīfùchéngxùshèjìyǔxiàonéngpínggū
_version_ 1719169727736053760