Design And Experiment Of Surface Deformation Monitoring Radar

Ground-based Synthetic Aperture Radar (GBSAR) is a tremendous example of the extended applications of Synthetic Aperture Radar (SAR). It is well-known for its capability of producing highly-detailed images. A set of SAR images taken from the same scene can be further processed and analysed to measur...

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Main Author: Lim, Chee Siong
Format: Thesis
Published: 2019
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id my-mmu-ep.7768
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spelling my-mmu-ep.77682020-09-22T17:53:50Z Design And Experiment Of Surface Deformation Monitoring Radar 2019-11 Lim, Chee Siong TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television Ground-based Synthetic Aperture Radar (GBSAR) is a tremendous example of the extended applications of Synthetic Aperture Radar (SAR). It is well-known for its capability of producing highly-detailed images. A set of SAR images taken from the same scene can be further processed and analysed to measure the displacement or deformation that took place in the scene if any. This technique is extremely useful in surface deformation monitoring for human-made structures, landslides, avalanches and many more. The process of designing and developing the GBSAR system is rather costly and time-consuming. It would be a great advantage for the system designer to have a realistic simulation and designing tool to anticipate the result before the implementation of the final design. In this work, the integrated system simulation and signal processing tool (iSIM) has been developed for the GBSAR system. The program is developed in MATLAB equipped with various tools to assist the system designer at different stages in GBSAR design, development, system simulation, data processing, and interferometric SAR (InSAR) analysis. 2019-11 Thesis http://shdl.mmu.edu.my/7768/ http://library.mmu.edu.my/library2/diglib/mmuetd/ phd doctoral Multimedia University Faculty of Engineering & Technology
institution Multimedia University
collection MMU Institutional Repository
topic TK5101-6720 Telecommunication
Including telegraphy, telephone, radio, radar, television
spellingShingle TK5101-6720 Telecommunication
Including telegraphy, telephone, radio, radar, television
Lim, Chee Siong
Design And Experiment Of Surface Deformation Monitoring Radar
description Ground-based Synthetic Aperture Radar (GBSAR) is a tremendous example of the extended applications of Synthetic Aperture Radar (SAR). It is well-known for its capability of producing highly-detailed images. A set of SAR images taken from the same scene can be further processed and analysed to measure the displacement or deformation that took place in the scene if any. This technique is extremely useful in surface deformation monitoring for human-made structures, landslides, avalanches and many more. The process of designing and developing the GBSAR system is rather costly and time-consuming. It would be a great advantage for the system designer to have a realistic simulation and designing tool to anticipate the result before the implementation of the final design. In this work, the integrated system simulation and signal processing tool (iSIM) has been developed for the GBSAR system. The program is developed in MATLAB equipped with various tools to assist the system designer at different stages in GBSAR design, development, system simulation, data processing, and interferometric SAR (InSAR) analysis.
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Lim, Chee Siong
author_facet Lim, Chee Siong
author_sort Lim, Chee Siong
title Design And Experiment Of Surface Deformation Monitoring Radar
title_short Design And Experiment Of Surface Deformation Monitoring Radar
title_full Design And Experiment Of Surface Deformation Monitoring Radar
title_fullStr Design And Experiment Of Surface Deformation Monitoring Radar
title_full_unstemmed Design And Experiment Of Surface Deformation Monitoring Radar
title_sort design and experiment of surface deformation monitoring radar
granting_institution Multimedia University
granting_department Faculty of Engineering & Technology
publishDate 2019
_version_ 1747829677965180928