Small-footprint Lidar Estimations of Sagebrush Canopy Characteristics

被引:47
|
作者
Mitchell, Jessica J. [1 ]
Glenn, Nancy F. [2 ]
Sankey, Temuulen T. [2 ]
Derryberry, DeWayne R. [3 ]
Anderson, Matthew O. [4 ]
Hruska, Ryan C. [4 ]
机构
[1] Idaho State Univ, Dept Geosci, Boise Ctr Aerosp Lab, Idaho Falls, ID 83402 USA
[2] Idaho State Univ, Dept Geosci, Boise Ctr Aerosp Lab, Idaho Falls, ID 83702 USA
[3] Idaho State Univ, Dept Math, Pocatello, ID 83209 USA
[4] Idaho Natl Lab, Idaho Falls, ID 83415 USA
来源
PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING | 2011年 / 77卷 / 05期
关键词
AIRBORNE SCANNING LASER; WYOMING BIG SAGEBRUSH; LEAF-AREA INDEX; TREE HEIGHT; BIOMASS ESTIMATION; VEGETATION; COMMUNITIES; RECOVERY; STEPPE; BITTERBRUSH;
D O I
10.14358/PERS.77.5.521
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
The height and shape of shrub canopies are critical measurements for characterizing shrub steppe rangelands. Remote sensing technologies might provide an efficient method to acquire these measurements across large areas. This study compared point-cloud and rasterized lidar data to field-measured sagebrush height and shape to quantify the correlation between field-based and lidar-derived estimates. The results demonstrated that discrete return, small-footprint lidar with high point density (9.46 points/m(2)) can provide strong predictions of true sagebrush height (R-2 of 0.84 to 0.86), but with a consistent underestimation of approximately 30 percent. Our results provided the first successful lidar-based descriptors of sagebrush shape with R-2 values of 0.65, 0.74, and 0.78 for respective predictions of shortest canopy diameter, longest canopy diameter, and canopy area. Future studies can extend lidar-derived shrub height and shape measurements to canopy volume, cover, and biomass estimates.
引用
收藏
页码:521 / 530
页数:10
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