Accuracy of small footprint airborne LiDAR in its predictions of tropical moist forest stand structure (original) (raw)

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Remote Sensing, 2016

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A practical application of airborne LiDAR for forestry management in Scotland

Barry Gardiner

2008

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Influence of footprint size and geolocation error on the precision of forest biomass estimates from space-borne waveform LiDAR

Markus Hollaus

Remote Sensing of Environment, 2017

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Studying canopy structure through 3-D reconstruction of point clouds from full-waveform terrestrial lidar

David Jupp

2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013

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Palma Blonda

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Improved methods for measuring forest landscape structure: LiDAR complements field-based habitat assessment

Kurt Bollmann

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Quality assurance and quality control procedures of airborne scanning LiDAR for a nation-wide carbon inventory of planted forests

David Loubser

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Article Analysis of the Influence of Plot Size and LiDAR Density on Forest Structure Attribute Estimates

Miguel Godino

2014

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Fuzzy Analysis of Airborne LiDAR Data for Rainforest Boundary Determination

Zhenyu Zhang

Proceedings of the 6th International Conference on Telecommunications and Remote Sensing, 2017

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Current Research in Lidar Technology Used for the Remote Sensing of Atmospheric Aerosols

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Using classification trees to predict forest structure types from LiDAR data

Piermaria Corona

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Measuring forest structure and biomass in New England forest stands using Echidna ground-based lidar

Wenge Ni-Meister

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Evaluation of NASA’s GEDI Lidar Observations for Estimating Biomass in Temperate and Tropical Forests

Kaiguang Zhao

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Measuring effective leaf area index, foliage profile, and stand height in New England forest stands using a full-waveform ground-based lidar

Wenge Ni-Meister

2011

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How Much Commercial Timber in Your Plot , How Much Carbon Sequestrated in the Trees , How Much Light Available for Undercrops ? Terrestrial Lidar is the Right Technology for Addressing These Questions

Rosa Mosquera-Losada

2016

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Deciphering the Precision of Stereo IKONOS Canopy Height Models for US Forests with G-LiHT Airborne LiDAR

Christopher Neigh

Remote Sensing, 2014

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Application of LiDAR data to maximise the efficiency of inventory plots in softwood plantations

Christine Stone

New Zealand Journal of Forestry Science, 2015

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Ground-based lidar for atmospheric boundary layer ozone measurements

M. Newchurch

Applied Optics, 2013

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Inventory of Close-to-Nature Forests Based on the Combination of Airborne LiDAR Data and Aerial Multispectral Images Using a Single-Tree Approach

Tomáš Bucha

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Comparing canopy metrics derived from terrestrial and airborne laser scanning in a Douglas-fir dominated forest stand

David Jupp

2010

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Influence of micro-topography and crown characteristics on tree height estimations in tropical forests based on LiDAR canopy height models

Amanda H . Korstjens

International Journal of Applied Earth Observation and Geoinformation, 2018

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Lidar in Mediterranean agricultural landscapes

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Interpreting Archaeological Topography

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The Design and Construction of an Airborne High Spectral Resolution Lidar

I. Razenkov

2008 IEEE Aerospace Conference, 2008

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Hendav Berwari

Journal of Forestry, 2000

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LiDAR remote sensing of forest structure

kevin lima

2016

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Assessing the structural differences between tropical forest types using Terrestrial Laser Scanning

Kalkidan Mulatu

Forest Ecology and Management, 2018

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Three-Dimensional Forest Reconstruction and Structural Parameter Retrievals Using a Ground-Based Full-Waveform Lidar Instrument (Echidna®)

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Three-dimensional forest reconstruction and structural parameter retrievals using a terrestrial full-waveform lidar instrument (Echidna®)

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Remote Sensing of Environment, 2013

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Processing full-waveform lidar data in an alpine coniferous forest: Assessing terrain and tree height quality

marc pierrot deseilligny

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FORESTMEASUREMENTAND MONITORING USING HIGH-RESOLUTION AIRBORNE LIDAR

Stephen Reutebuch

2000

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