Forest inventories by LiDAR data: A comparison of single tree segmentation and metric-based methods for inventories of a heterogeneous temperate forest
暂无分享,去创建一个
Marco Heurich | Jörg Müller | Stefan W. Dech | Fabian Ewald Fassnacht | Hooman Latifi | Agalya Tharani | S. Dech | M. Heurich | J. Müller | F. Fassnacht | Hooman Latifi | Agalya Tharani | Jörg C Müller
[1] Kurt Hornik,et al. kernlab - An S4 Package for Kernel Methods in R , 2004 .
[2] Robert Tibshirani,et al. An Introduction to the Bootstrap , 1994 .
[3] P. Gessler,et al. Forest Service-- National AgroforestryCenter 1-1-2010 Landscape-scale parameterization of a tree-level forest growth model : a k-nearest neighbor imputation approach incorporating LiDAR data , 2013 .
[4] Andrew J. Larson,et al. Ecological Importance of Large-Diameter Trees in a Temperate Mixed-Conifer Forest , 2012, PloS one.
[5] Phillip B. Gibbons,et al. Forest and woodland stand structural complexity: Its definition and measurement , 2005 .
[6] Max Kuhn,et al. Applied Predictive Modeling , 2013 .
[7] Werner Rammer,et al. Increasing forest disturbances in Europe and their impact on carbon storage. , 2014, Nature climate change.
[8] R. McRoberts,et al. Remote sensing support for national forest inventories , 2007 .
[9] J. Reitberger,et al. 3D segmentation of single trees exploiting full waveform LIDAR data , 2009 .
[10] R. Dubayah,et al. Sensitivity of large-footprint lidar to canopy structure and biomass in a neotropical rainforest , 2002 .
[11] Nicholas C. Coops,et al. Integrating airborne LiDAR and space-borne radar via multivariate kriging to estimate above-ground biomass , 2013 .
[12] Barbara Koch,et al. Evaluation of most similar neighbour and random forest methods for imputing forest inventory variables using data from target and auxiliary stands , 2012 .
[13] P. Krzystek,et al. Tree species classification and estimation of stem volume and DBH based on single tree extraction by exploiting airborne full-waveform LiDAR data , 2012 .
[14] E. Næsset,et al. Single Tree Segmentation Using Airborne Laser Scanner Data in a Structurally Heterogeneous Spruce Forest , 2006 .
[15] M. Heurich. Automatic recognition and measurement of single trees based on data from airborne laser scanning over the richly structured natural forests of the Bavarian Forest National Park , 2008 .
[16] P. Reinartz,et al. Assessment of Cartosat-1 and WorldView-2 stereo imagery in combination with a LiDAR-DTM for timber volume estimation in a highly structured forest in Germany , 2013 .
[17] Barbara Koch,et al. Modelling stratified forest attributes using optical/LiDAR features in a central European landscape , 2012, Int. J. Digit. Earth.
[18] Peter Bartelheimer,et al. Forstliche Forschungsberichte München , 1993 .
[19] J. Hyyppä,et al. Review of methods of small‐footprint airborne laser scanning for extracting forest inventory data in boreal forests , 2008 .
[20] Florian Hartig,et al. Stratified aboveground forest biomass estimation by remote sensing data , 2015, Int. J. Appl. Earth Obs. Geoinformation.
[21] Sauli Valkonen,et al. Ingrowth, survival and height growth of small trees in uneven-aged Picea abies stands in southern Finland , 2014, Forest Ecosystems.
[22] E. Næsset. Accuracy of forest inventory using airborne laser scanning: evaluating the first nordic full-scale operational project , 2004 .
[23] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[24] J. Hyyppä,et al. Estimation of timber volume and stem density based on scanning laser altimetry and expected tree size distribution functions , 2004 .
[25] M. Heurich. Evaluierung und Entwicklung von Methoden zur automatisierten Erfassung von Waldstrukturen aus Daten flugzeuggetragener Fernerkundungssensoren , 2006 .
[26] Andrew O Finley,et al. Integrating forest inventory and analysis data into a LIDAR-based carbon monitoring system , 2014, Carbon Balance and Management.
[27] Joanne C. White,et al. A best practices guide for generating forest inventory attributes from airborne laser scanning data using an area-based approach , 2013 .
[28] A. Bončina,et al. Conceptual Approaches to Integrate Nature Conservation into Forest Management: A Central European Perspective , 2011 .
[29] Hooman Latifi,et al. Characterizing Forest Structure by Means of Remote Sensing: A Review , 2012 .
[30] Luciano Vieira Dutra,et al. Biomass estimation in a tropical wet forest using Fourier transforms of profiles from lidar or interferometric SAR , 2010 .
[31] Marco Heurich,et al. DETECTION OF SINGLE STANDING DEAD TREES FROM AERIAL COLOR INFRARED IMAGERY BY SEGMENTATION WITH SHAPE AND INTENSITY PRIORS , 2015 .
[32] Marco Heurich,et al. Sensitivity Analysis of 3D Individual Tree Detection from LiDAR Point Clouds of Temperate Forests , 2014 .
[33] Florian Hartig,et al. Importance of sample size, data type and prediction method for remote sensing-based estimations of aboveground forest biomass , 2014 .
[34] B. Peter. BOOSTING FOR HIGH-DIMENSIONAL LINEAR MODELS , 2006 .
[35] Erik Næsset,et al. Advances and emerging issues in national forest inventories , 2010 .
[36] Henning Buddenbaum,et al. Comparison of Feature Reduction Algorithms for Classifying Tree Species With Hyperspectral Data on Three Central European Test Sites , 2014, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[37] Terje Gobakken,et al. Laser-assisted selection of field plots for an area-based forest inventory , 2013 .
[38] E. Næsset,et al. Laser scanning of forest resources: the nordic experience , 2004 .
[39] Uwe Stilla,et al. Active learning approach to detecting standing dead trees from ALS point clouds combined with aerial infrared imagery , 2015, 2015 IEEE Conference on Computer Vision and Pattern Recognition Workshops (CVPRW).
[40] M. Heurich,et al. Estimation of forestry stand parameters using laser scanning data in temperate, structurally rich natural European beech (Fagus sylvatica) and Norway spruce (Picea abies) forests , 2008 .
[41] J. Höhle. ASSESSMENT OF THE THEMATIC ACCURACY OF LAND COVER MAPS , 2015 .
[42] P. Bühlmann. Boosting for high-dimensional linear models , 2006 .
[43] Marco Heurich,et al. IDENTIFYING STANDING DEAD TREES IN FOREST AREAS BASED ON 3D SINGLE TREE DETECTION FROM FULL WAVEFORM LIDAR DATA , 2012 .
[44] M. Vastaranta,et al. Status and prospects for LiDAR remote sensing of forested ecosystems , 2013 .
[45] Andrew J. Lister,et al. Utility of LiDAR for large area forest inventory applications , 2012 .
[46] E. Næsset. Practical large-scale forest stand inventory using a small-footprint airborne scanning laser , 2004 .
[47] Marco Heurich,et al. Spatio-temporal infestation patterns of Ips typographus (L.) in the Bavarian Forest National Park, Germany , 2013 .
[48] S. T. Buckland,et al. An Introduction to the Bootstrap. , 1994 .