Literature DB >> 33507959

FOSTER-An R package for forest structure extrapolation.

Martin Queinnec1, Piotr Tompalski1, Douglas K Bolton2, Nicholas C Coops1.   

Abstract

The uptake of technologies such as airborne laser scanning (ALS) and more recently digital aerial photogrammetry (DAP) enable the characterization of 3-dimensional (3D) forest structure. These forest structural attributes are widely applied in the development of modern enhanced forest inventories. As an alternative to extensive ALS or DAP based forest inventories, regional forest attribute maps can be built from relationships between ALS or DAP and wall-to-wall satellite data products. To date, a number of different approaches exist, with varying code implementations using different programming environments and tailored to specific needs. With the motivation for open, simple and modern software, we present FOSTER (Forest Structure Extrapolation in R), a versatile and computationally efficient framework for modeling and imputation of 3D forest attributes. FOSTER derives spectral trends in remote sensing time series, implements a structurally guided sampling approach to sample these often spatially auto correlated datasets, to then allow a modelling approach (currently k-NN imputation) to extrapolate these 3D forest structure measures. The k-NN imputation approach that FOSTER implements has a number of benefits over conventional regression based approaches including lower bias and reduced over fitting. This paper provides an overview of the general framework followed by a demonstration of the performance and outputs of FOSTER. Two ALS-derived variables, the 95th percentile of first returns height (elev_p95) and canopy cover above mean height (cover), were imputed over a research forest in British Columbia, Canada with relative RMSE of 18.5% and 11.4% and relative bias of -0.6% and 1.4% respectively. The processing sequence developed within FOSTER represents an innovative and versatile framework that should be useful to researchers and managers alike looking to make forest management decisions over entire forest estates.

Entities:  

Year:  2021        PMID: 33507959      PMCID: PMC7842971          DOI: 10.1371/journal.pone.0244846

Source DB:  PubMed          Journal:  PLoS One        ISSN: 1932-6203            Impact factor:   3.240


  3 in total

1.  Satellites: Make Earth observations open access.

Authors:  Michael A Wulder; Nicholas C Coops
Journal:  Nature       Date:  2014-09-04       Impact factor: 49.962

2.  The Ice, Cloud, and Land Elevation Satellite - 2 Mission: A Global Geolocated Photon Product Derived From the Advanced Topographic Laser Altimeter System.

Authors:  Thomas A Neumann; Anthony J Martino; Thorsten Markus; Sungkoo Bae; Megan R Bock; Anita C Brenner; Kelly M Brunt; John Cavanaugh; Stanley T Fernandes; David W Hancock; Kaitlin Harbeck; Jeffrey Lee; Nathan T Kurtz; Philip J Luers; Scott B Luthcke; Lori Magruder; Teresa A Pennington; Luis Ramos-Izquierdo; Timothy Rebold; Jonah Skoog; Taylor C Thomas
Journal:  Remote Sens Environ       Date:  2019-11-01       Impact factor: 10.164

  3 in total

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