A novel approach to estimate canopy height using ICESat/GLAS data: A case study in the New Forest National Park, UK

被引:23
|
作者
Iqbal, Irfan Akhtar [1 ]
Dash, Jadunandan [1 ]
Ullah, Saleem [2 ]
Ahmad, Ghayyas [3 ]
机构
[1] Univ Southampton, Sch Geog, Southampton SO17 1BJ, Hants, England
[2] Univ Twente, Fac Geoinformat Sci & Earth Observat ITC, NL-7500 AA Enschede, Netherlands
[3] Pakistan Forest Inst, Peshawar, Khyber Pakhtunk, Pakistan
关键词
Canopy height; LiDAR; Remote sensing; LIGHT TRANSMITTANCE; BIOMASS ESTIMATION; VERTICAL STRUCTURE; SPACEBORNE LIDAR; AIRBORNE; RADAR; GLAS; PARAMETERS; MODEL;
D O I
10.1016/j.jag.2012.12.009
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
The Geoscience Laser Altimeter System (GLAS) aboard Ice, Cloud and land Elevation Satellite (ICESat) is a spaceborne LiDAR sensor. It is the first LiDAR instrument which can digitize the backscattered waveform and offer near global coverage. Among others, scientific objectives of the mission include precise measurement of vegetation canopy heights. Existing approaches of waveform processing for canopy height estimation suggest Gaussian decomposition of the waveform which has the limitation to properly characterize significant peaks and results in discrepant information. Moreover, in most cases, Digital Terrain Models (DTMs) are required for canopy height estimation. This paper presents a new automated method of GLAS waveform processing for extracting vegetation canopy height in the absence of a DTM. Canopy heights retrieved from GLAS waveforms were validated with field measured heights. The newly proposed method was able to explain 79% of variation in canopy heights with an RMSE of 3.18 m, in the study area. The unexplained variation in canopy heights retrieved from GLAS data can be due to errors introduced by footprint eccentricity, decay of energy between emitted and received signals, uncertainty in the field measurements and limited number of sampled footprints. Results achieved with the newly proposed method were encouraging and demonstrated its potential of processing full-waveform LiDAR data for estimating forest canopy height. The study also had implications on future full-waveform spaceborne missions and their utility in vegetation studies. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:109 / 118
页数:10
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