Implementation of platform for long‐term evolution cell perspective resource utilization analysis

AbstractAs wireless communication continues to develop in limited frequency resource environments, it is becoming important to identify the state of spectrum utilization and predict the amount needed in future. It is essential to collect reliable information for data analysis. This paper introduces...

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Main Authors: Jungsun Um, Igor Kim, Seungkeun Park
Format: Article
Language:English
Published: Electronics and Telecommunications Research Institute (ETRI) 2020-12-01
Series:ETRI Journal
Subjects:
Online Access:https://doi.org/10.4218/etrij.2019-0475
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spelling doaj-b3cd9feffb0940489407dc6cbfdf62352021-04-19T06:00:46ZengElectronics and Telecommunications Research Institute (ETRI)ETRI Journal1225-64632020-12-0143223224510.4218/etrij.2019-047510.4218/etrij.2019-0475Implementation of platform for long‐term evolution cell perspective resource utilization analysisJungsun UmIgor KimSeungkeun ParkAbstractAs wireless communication continues to develop in limited frequency resource environments, it is becoming important to identify the state of spectrum utilization and predict the amount needed in future. It is essential to collect reliable information for data analysis. This paper introduces a platform that enables the gathering of the scheduling information of a long‐term evolution (LTE) cellular system without connecting to the network. A typical LTE terminal can confirm its assigned resource information using the configuration parameters delivered from a network. However, our platform receives and captures only the LTE signal over the air and then enables the estimation of the data relevant to scheduling for all terminals within an LTE cell. After extracting the control channel signal without loss from all LTE subframes, it detects valid downlink control information using the proposed algorithm, which is based on the error vector magnitude of depatterned symbols. We verify the reliability of the developed platform by comparing it with real data from mobile phones and service operators. The average difference in resource block utilization is only 0.28%.https://doi.org/10.4218/etrij.2019-0475analyzerdownlink control informationimplementationlong‐term evolutionresource blocks
collection DOAJ
language English
format Article
sources DOAJ
author Jungsun Um
Igor Kim
Seungkeun Park
spellingShingle Jungsun Um
Igor Kim
Seungkeun Park
Implementation of platform for long‐term evolution cell perspective resource utilization analysis
ETRI Journal
analyzer
downlink control information
implementation
long‐term evolution
resource blocks
author_facet Jungsun Um
Igor Kim
Seungkeun Park
author_sort Jungsun Um
title Implementation of platform for long‐term evolution cell perspective resource utilization analysis
title_short Implementation of platform for long‐term evolution cell perspective resource utilization analysis
title_full Implementation of platform for long‐term evolution cell perspective resource utilization analysis
title_fullStr Implementation of platform for long‐term evolution cell perspective resource utilization analysis
title_full_unstemmed Implementation of platform for long‐term evolution cell perspective resource utilization analysis
title_sort implementation of platform for long‐term evolution cell perspective resource utilization analysis
publisher Electronics and Telecommunications Research Institute (ETRI)
series ETRI Journal
issn 1225-6463
publishDate 2020-12-01
description AbstractAs wireless communication continues to develop in limited frequency resource environments, it is becoming important to identify the state of spectrum utilization and predict the amount needed in future. It is essential to collect reliable information for data analysis. This paper introduces a platform that enables the gathering of the scheduling information of a long‐term evolution (LTE) cellular system without connecting to the network. A typical LTE terminal can confirm its assigned resource information using the configuration parameters delivered from a network. However, our platform receives and captures only the LTE signal over the air and then enables the estimation of the data relevant to scheduling for all terminals within an LTE cell. After extracting the control channel signal without loss from all LTE subframes, it detects valid downlink control information using the proposed algorithm, which is based on the error vector magnitude of depatterned symbols. We verify the reliability of the developed platform by comparing it with real data from mobile phones and service operators. The average difference in resource block utilization is only 0.28%.
topic analyzer
downlink control information
implementation
long‐term evolution
resource blocks
url https://doi.org/10.4218/etrij.2019-0475
work_keys_str_mv AT jungsunum implementationofplatformforlongtermevolutioncellperspectiveresourceutilizationanalysis
AT igorkim implementationofplatformforlongtermevolutioncellperspectiveresourceutilizationanalysis
AT seungkeunpark implementationofplatformforlongtermevolutioncellperspectiveresourceutilizationanalysis
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