ImpDAR: an open-source impulse radar processor

Abstract Despite widespread use of radio-echo sounding (RES) in glaciology and broad distribution of processed radar products, the glaciological community has no standard software for processing impulse RES data. Dependable, fast and collection-system/platform-independent processing flows could faci...

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Published in:Annals of Glaciology
Main Authors: Lilien, David A., Hills, Benjamin H., Driscol, Joshua, Jacobel, Robert, Christianson, Knut
Format: Article in Journal/Newspaper
Language:English
Published: Cambridge University Press (CUP) 2020
Subjects:
Online Access:http://dx.doi.org/10.1017/aog.2020.44
https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S0260305520000440
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spelling crcambridgeupr:10.1017/aog.2020.44 2024-10-06T13:42:13+00:00 ImpDAR: an open-source impulse radar processor Lilien, David A. Hills, Benjamin H. Driscol, Joshua Jacobel, Robert Christianson, Knut 2020 http://dx.doi.org/10.1017/aog.2020.44 https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S0260305520000440 en eng Cambridge University Press (CUP) http://creativecommons.org/licenses/by/4.0/ Annals of Glaciology volume 61, issue 81, page 114-123 ISSN 0260-3055 1727-5644 journal-article 2020 crcambridgeupr https://doi.org/10.1017/aog.2020.44 2024-09-11T04:03:57Z Abstract Despite widespread use of radio-echo sounding (RES) in glaciology and broad distribution of processed radar products, the glaciological community has no standard software for processing impulse RES data. Dependable, fast and collection-system/platform-independent processing flows could facilitate comparison between datasets and allow full utilization of large impulse RES data archives and new data. Here, we present ImpDAR, an open-source, cross-platform, impulse radar processor and interpreter, written primarily in Python. The utility of this software lies in its collection of established tools into a single, open-source framework. ImpDAR aims to provide a versatile standard that is accessible to radar-processing novices and useful to specialists. It can read data from common commercial ground-penetrating radars (GPRs) and some custom-built RES systems. It performs all the standard processing steps, including bandpass and horizontal filtering, time correction for antenna spacing, geolocation and migration. After processing data, ImpDAR's interpreter includes several plotting functions, digitization of reflecting horizons, calculation of reflector strength and export of interpreted layers. We demonstrate these capabilities on two datasets: deep (~3000 m depth) data collected with a custom (3 MHz) system in northeast Greenland and shallow (<100 m depth, 500 MHz) data collected with a commercial GPR on South Cascade Glacier in Washington. Article in Journal/Newspaper Annals of Glaciology glacier Greenland Cambridge University Press Cascade Glacier ENVELOPE(-140.504,-140.504,60.249,60.249) Greenland Annals of Glaciology 61 81 114 123
institution Open Polar
collection Cambridge University Press
op_collection_id crcambridgeupr
language English
description Abstract Despite widespread use of radio-echo sounding (RES) in glaciology and broad distribution of processed radar products, the glaciological community has no standard software for processing impulse RES data. Dependable, fast and collection-system/platform-independent processing flows could facilitate comparison between datasets and allow full utilization of large impulse RES data archives and new data. Here, we present ImpDAR, an open-source, cross-platform, impulse radar processor and interpreter, written primarily in Python. The utility of this software lies in its collection of established tools into a single, open-source framework. ImpDAR aims to provide a versatile standard that is accessible to radar-processing novices and useful to specialists. It can read data from common commercial ground-penetrating radars (GPRs) and some custom-built RES systems. It performs all the standard processing steps, including bandpass and horizontal filtering, time correction for antenna spacing, geolocation and migration. After processing data, ImpDAR's interpreter includes several plotting functions, digitization of reflecting horizons, calculation of reflector strength and export of interpreted layers. We demonstrate these capabilities on two datasets: deep (~3000 m depth) data collected with a custom (3 MHz) system in northeast Greenland and shallow (<100 m depth, 500 MHz) data collected with a commercial GPR on South Cascade Glacier in Washington.
format Article in Journal/Newspaper
author Lilien, David A.
Hills, Benjamin H.
Driscol, Joshua
Jacobel, Robert
Christianson, Knut
spellingShingle Lilien, David A.
Hills, Benjamin H.
Driscol, Joshua
Jacobel, Robert
Christianson, Knut
ImpDAR: an open-source impulse radar processor
author_facet Lilien, David A.
Hills, Benjamin H.
Driscol, Joshua
Jacobel, Robert
Christianson, Knut
author_sort Lilien, David A.
title ImpDAR: an open-source impulse radar processor
title_short ImpDAR: an open-source impulse radar processor
title_full ImpDAR: an open-source impulse radar processor
title_fullStr ImpDAR: an open-source impulse radar processor
title_full_unstemmed ImpDAR: an open-source impulse radar processor
title_sort impdar: an open-source impulse radar processor
publisher Cambridge University Press (CUP)
publishDate 2020
url http://dx.doi.org/10.1017/aog.2020.44
https://www.cambridge.org/core/services/aop-cambridge-core/content/view/S0260305520000440
long_lat ENVELOPE(-140.504,-140.504,60.249,60.249)
geographic Cascade Glacier
Greenland
geographic_facet Cascade Glacier
Greenland
genre Annals of Glaciology
glacier
Greenland
genre_facet Annals of Glaciology
glacier
Greenland
op_source Annals of Glaciology
volume 61, issue 81, page 114-123
ISSN 0260-3055 1727-5644
op_rights http://creativecommons.org/licenses/by/4.0/
op_doi https://doi.org/10.1017/aog.2020.44
container_title Annals of Glaciology
container_volume 61
container_issue 81
container_start_page 114
op_container_end_page 123
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