Evaluation of terrestrial laser scanners for measuring vegetation structure

[1]  M. Pfennigbauer,et al.  Echo Digitization and Waveform Analysis in Airborne and Terrestrial Laser Scanning , 2011 .

[2]  Pete Watt,et al.  Measuring forest structure with terrestrial laser scanning , 2005 .

[3]  A. Bienert,et al.  TREE DETECTION AND DIAMETER ESTIMATIONS BY ANALYSIS OF FOREST TERRESTRIAL LASERSCANNER POINT CLOUDS , 2007 .

[4]  Peter Scarth,et al.  Prediction and validation of foliage projective cover from Landsat-5 TM and Landsat-7 ETM+ imagery , 2009 .

[5]  C. Woodcock,et al.  Measuring forest structure and biomass in New England forest stands using Echidna ground-based lidar , 2011 .

[6]  John Trinder,et al.  3D surface reconstruction of Terrestrial Laser Scanner data for forestry , 2010, 2010 IEEE International Geoscience and Remote Sensing Symposium.

[7]  X. Liang,et al.  Plot-level trunk detection and reconstruction using one-scan-mode terrestrial laser scanning data , 2008, 2008 International Workshop on Earth Observation and Remote Sensing Applications.

[8]  S. Fleck,et al.  3D-laser scanning: A non-destructive method for studying above-ground biomass and growth of juvenile trees , 2011 .

[9]  A. Antonarakis,et al.  Evaluating forest biometrics obtained from ground lidar in complex riparian forests , 2011 .

[10]  C. Woodcock,et al.  Estimating forest LAI profiles and structural parameters using a ground-based laser called 'Echidna'. , 2008, Tree physiology.

[11]  David L.B. Jupp,et al.  Measuring tree stem diameters using intensity profiles from ground-based scanning lidar from a fixed viewpoint , 2011 .

[12]  Alan H. Strahler,et al.  Assessing general relationships between aboveground biomass and vegetation structure parameters for improved carbon estimate from lidar remote sensing , 2009 .

[13]  Chengcui Zhang,et al.  A progressive morphological filter for removing nonground measurements from airborne LIDAR data , 2003, IEEE Trans. Geosci. Remote. Sens..

[14]  Hans-Gerd Maas,et al.  Automatic forest inventory parameter determination from terrestrial laser scanner data , 2008 .

[15]  Pol Coppin,et al.  The Properties of Terrestrial Laser System Intensity for Measuring Leaf Geometries: A Case Study with Conference Pear Trees (Pyrus Communis) , 2011, Sensors.

[16]  Richard A. Fournier,et al.  The structural and radiative consistency of three-dimensional tree reconstructions from terrestrial lidar , 2009 .

[17]  Masanobu Shimada,et al.  An Evaluation of the ALOS PALSAR L-Band Backscatter—Above Ground Biomass Relationship Queensland, Australia: Impacts of Surface Moisture Condition and Vegetation Structure , 2010, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.