Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter

Detalhes bibliográficos
Ano de defesa: 2020
Autor(a) principal: Bodra, Ivan
Orientador(a): Não Informado pela instituição
Banca de defesa: Não Informado pela instituição
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: University of New Hampshire
Programa de Pós-Graduação: Não Informado pela instituição
Departamento: Não Informado pela instituição
País: Não Informado pela instituição
Link de acesso: http://www.repositorio.mar.mil.br/handle/ripcmb/844833
Resumo: Standard calibration procedures for multibeam sonars currently only address the fidelity of the bathymetric data. Equivalent effort is needed to ensure that the acquired seabed backscatter strength measurements are referenced to a similarly precise level. This thesis presents an operational method for acquiring reference seabed backscatter data utilizing multiple pre-calibrated split beam echo sounders covering a wide range (45-450 kHz) of frequencies. This is needed to cover the full range of frequencies utilized by multi-sector multibeam systems operating in continental shelf depths. The method considers both the frequency and the angle of incidence dependence of the backscatter strength of a homogenous seafloor region. By using a mechanically rotated plate, the split beam transducers, once calibrated, are able to collect the absolute angular response curve of the seafloor for any frequency within the bandwidth of interest. This thesis addresses the design, implementation and required processing to deliver the curves of selected areas. Although not part of this research, the next step would be to calibrate the desired multibeam echosounder for backscatter by comparing the results obtained by the systems over the same seafloor area. The results obtained, reveal one of the most complete pictures of the continuous variation of the seabed backscatter angular response from 45 to 400 kHz. Significantly, this extends well above the 100 kHz level that normally defines the upper end of surface scattering model fidelity. As the chosen sites cover the main range of expected marine sediment xv types (gravel to mud), trends in both frequency and grazing angle are apparent that might impact the choice of frequency used in multi-spectral backscatter imaging.
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spelling Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatterStandard calibration procedures for multibeam sonars currently only address the fidelity of the bathymetric data. Equivalent effort is needed to ensure that the acquired seabed backscatter strength measurements are referenced to a similarly precise level. This thesis presents an operational method for acquiring reference seabed backscatter data utilizing multiple pre-calibrated split beam echo sounders covering a wide range (45-450 kHz) of frequencies. This is needed to cover the full range of frequencies utilized by multi-sector multibeam systems operating in continental shelf depths. The method considers both the frequency and the angle of incidence dependence of the backscatter strength of a homogenous seafloor region. By using a mechanically rotated plate, the split beam transducers, once calibrated, are able to collect the absolute angular response curve of the seafloor for any frequency within the bandwidth of interest. This thesis addresses the design, implementation and required processing to deliver the curves of selected areas. Although not part of this research, the next step would be to calibrate the desired multibeam echosounder for backscatter by comparing the results obtained by the systems over the same seafloor area. The results obtained, reveal one of the most complete pictures of the continuous variation of the seabed backscatter angular response from 45 to 400 kHz. Significantly, this extends well above the 100 kHz level that normally defines the upper end of surface scattering model fidelity. As the chosen sites cover the main range of expected marine sediment xv types (gravel to mud), trends in both frequency and grazing angle are apparent that might impact the choice of frequency used in multi-spectral backscatter imaging.University of New HampshireClarke, JohnBodra, Ivan2022-07-05T18:13:50Z2022-07-05T18:13:50Z2020info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisapplication/pdfhttp://www.repositorio.mar.mil.br/handle/ripcmb/844833porinfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da Produção Científica da Marinha do Brasil (RI-MB)instname:Marinha do Brasil (MB)instacron:MB2022-09-21T18:29:11Zoai:www.repositorio.mar.mil.br:ripcmb/844833Repositório InstitucionalPUBhttps://www.repositorio.mar.mil.br/oai/requestdphdm.repositorio@marinha.mil.bropendoar:2022-09-21T18:29:11Repositório Institucional da Produção Científica da Marinha do Brasil (RI-MB) - Marinha do Brasil (MB)false
dc.title.none.fl_str_mv Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
title Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
spellingShingle Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
Bodra, Ivan
title_short Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
title_full Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
title_fullStr Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
title_full_unstemmed Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
title_sort Obtaining a reference for calibrating broadband multibeam seabed backscatter multibeam seabed backscatter
author Bodra, Ivan
author_facet Bodra, Ivan
author_role author
dc.contributor.none.fl_str_mv Clarke, John
dc.contributor.author.fl_str_mv Bodra, Ivan
description Standard calibration procedures for multibeam sonars currently only address the fidelity of the bathymetric data. Equivalent effort is needed to ensure that the acquired seabed backscatter strength measurements are referenced to a similarly precise level. This thesis presents an operational method for acquiring reference seabed backscatter data utilizing multiple pre-calibrated split beam echo sounders covering a wide range (45-450 kHz) of frequencies. This is needed to cover the full range of frequencies utilized by multi-sector multibeam systems operating in continental shelf depths. The method considers both the frequency and the angle of incidence dependence of the backscatter strength of a homogenous seafloor region. By using a mechanically rotated plate, the split beam transducers, once calibrated, are able to collect the absolute angular response curve of the seafloor for any frequency within the bandwidth of interest. This thesis addresses the design, implementation and required processing to deliver the curves of selected areas. Although not part of this research, the next step would be to calibrate the desired multibeam echosounder for backscatter by comparing the results obtained by the systems over the same seafloor area. The results obtained, reveal one of the most complete pictures of the continuous variation of the seabed backscatter angular response from 45 to 400 kHz. Significantly, this extends well above the 100 kHz level that normally defines the upper end of surface scattering model fidelity. As the chosen sites cover the main range of expected marine sediment xv types (gravel to mud), trends in both frequency and grazing angle are apparent that might impact the choice of frequency used in multi-spectral backscatter imaging.
publishDate 2020
dc.date.none.fl_str_mv 2020
2022-07-05T18:13:50Z
2022-07-05T18:13:50Z
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dc.publisher.none.fl_str_mv University of New Hampshire
publisher.none.fl_str_mv University of New Hampshire
dc.source.none.fl_str_mv reponame:Repositório Institucional da Produção Científica da Marinha do Brasil (RI-MB)
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