Traceable peak envelope power measurement for mobile communications

Traceable peak envelope power (PEP) measurement and calibration for mobile communications have been done in this project. The report discusses the background concepts and the calibration model using peak power sensor analyzing in the frequency domain. Firstly, definitions for double sideband large...

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Bibliographic Details
Main Author: Luo, Jiawen
Other Authors: Lee Yee Hui
Format: Final Year Project (FYP)
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/10356/67687
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author Luo, Jiawen
author2 Lee Yee Hui
author_facet Lee Yee Hui
Luo, Jiawen
author_sort Luo, Jiawen
collection NTU
description Traceable peak envelope power (PEP) measurement and calibration for mobile communications have been done in this project. The report discusses the background concepts and the calibration model using peak power sensor analyzing in the frequency domain. Firstly, definitions for double sideband large carrier (DSB-LC) amplitude modulation (AM), peak envelope power (PEP), and it correction factor (CFP) are introduced. Then, the theoretical model and detailed experiment procedures are explained followed by the discussion of the uncertainty of CFP using Monte Carlo method (MCM) and Guide to the Expression of Uncertainty in Measurement (GUM) method. Lastly, the method for remote controlling is also mentioned.
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format Final Year Project (FYP)
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spelling ntu-10356/676872023-07-07T16:40:51Z Traceable peak envelope power measurement for mobile communications Luo, Jiawen Lee Yee Hui Lu Yilong School of Electrical and Electronic Engineering DRNTU::Engineering Traceable peak envelope power (PEP) measurement and calibration for mobile communications have been done in this project. The report discusses the background concepts and the calibration model using peak power sensor analyzing in the frequency domain. Firstly, definitions for double sideband large carrier (DSB-LC) amplitude modulation (AM), peak envelope power (PEP), and it correction factor (CFP) are introduced. Then, the theoretical model and detailed experiment procedures are explained followed by the discussion of the uncertainty of CFP using Monte Carlo method (MCM) and Guide to the Expression of Uncertainty in Measurement (GUM) method. Lastly, the method for remote controlling is also mentioned. Bachelor of Engineering 2016-05-19T04:32:08Z 2016-05-19T04:32:08Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/67687 en Nanyang Technological University 47 p. application/pdf
spellingShingle DRNTU::Engineering
Luo, Jiawen
Traceable peak envelope power measurement for mobile communications
title Traceable peak envelope power measurement for mobile communications
title_full Traceable peak envelope power measurement for mobile communications
title_fullStr Traceable peak envelope power measurement for mobile communications
title_full_unstemmed Traceable peak envelope power measurement for mobile communications
title_short Traceable peak envelope power measurement for mobile communications
title_sort traceable peak envelope power measurement for mobile communications
topic DRNTU::Engineering
url http://hdl.handle.net/10356/67687
work_keys_str_mv AT luojiawen traceablepeakenvelopepowermeasurementformobilecommunications