Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning

High density airborne laser scanning (HDALS) data has revolutionized the characterization of tree growth anomalies and complex vegetation attributes including forest canopy gaps (FCG). They pose significant impact to forest eco-logical and monitoring activities. This paper presents a new approach ba...

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Main Authors: Gode, Ameya, Razak, Khamarrul Azahari
Format: Conference or Workshop Item
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/37499/
http://www.voronoi.com/isg2013/Programme%20schedule.html
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spelling my.utm.374992017-08-24T05:56:38Z http://eprints.utm.my/id/eprint/37499/ Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning Gode, Ameya Razak, Khamarrul Azahari T Technology High density airborne laser scanning (HDALS) data has revolutionized the characterization of tree growth anomalies and complex vegetation attributes including forest canopy gaps (FCG). They pose significant impact to forest eco-logical and monitoring activities. This paper presents a new approach based on object oriented technique to extract FCG characteristics caused by complex landslides in the French Alps. With a substantial point density across the forested landslides (170 points m-2), the method had an overall detection rate of 81% and over-predicted the reference FCG. The statistical tests revealed significant differences of FCG in landslide and non-landslide zones at the 95% confidence level and supported the field evidences. The results are promising given the complex interaction between landslide processes and forest ecosystem in the area. This study highlights the potential contribution of HDALS data to a regional ecological hazard assessment and can be alternative tool to analyze disrupted vegetation induced by geomorphic processes in a complex environment. 2013-09 Conference or Workshop Item PeerReviewed Gode, Ameya and Razak, Khamarrul Azahari (2013) Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning. In: International Symposium & Exhibition on Geoinformation (ISG 2013), 24-25 September 2013, Universiti Teknologi Malaysia Kuala Lumpur, Malaysia. http://www.voronoi.com/isg2013/Programme%20schedule.html
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology
spellingShingle T Technology
Gode, Ameya
Razak, Khamarrul Azahari
Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
description High density airborne laser scanning (HDALS) data has revolutionized the characterization of tree growth anomalies and complex vegetation attributes including forest canopy gaps (FCG). They pose significant impact to forest eco-logical and monitoring activities. This paper presents a new approach based on object oriented technique to extract FCG characteristics caused by complex landslides in the French Alps. With a substantial point density across the forested landslides (170 points m-2), the method had an overall detection rate of 81% and over-predicted the reference FCG. The statistical tests revealed significant differences of FCG in landslide and non-landslide zones at the 95% confidence level and supported the field evidences. The results are promising given the complex interaction between landslide processes and forest ecosystem in the area. This study highlights the potential contribution of HDALS data to a regional ecological hazard assessment and can be alternative tool to analyze disrupted vegetation induced by geomorphic processes in a complex environment.
format Conference or Workshop Item
author Gode, Ameya
Razak, Khamarrul Azahari
author_facet Gode, Ameya
Razak, Khamarrul Azahari
author_sort Gode, Ameya
title Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
title_short Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
title_full Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
title_fullStr Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
title_full_unstemmed Characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
title_sort characterization of forest canopy gaps caused by landslides using high density airborne laser scanning
publishDate 2013
url http://eprints.utm.my/id/eprint/37499/
http://www.voronoi.com/isg2013/Programme%20schedule.html
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score 13.211869