Unoccupied aerial system (UAS) Structure-from-Motion canopy fuel parameters: Multisite area-based modelling across forests in California, USA

Author:

Reilly Sean,Clark Matthew L.,Loechler Lika,Spillane Jack,Kozanitas Melina,Krause Paris,Ackerly David,Bentley Lisa Patrick,Menor Imma Oliveras

Publisher

Elsevier BV

Reference117 articles.

1. Quantitative remote sensing at ultra-high resolution with UAV spectroscopy: a review of sensor technology, measurement procedures, and data correction workflows;Aasen;Remote Sens.,2018

2. Tree species classification and health status assessment for a mixed broadleaf-conifer forest with UAS multispectral imaging;Abdollahnejad;Remote Sens.,2020

3. Establishment of Woodland Vegetation Research Plots at Pepperwood Preserve (Technical Report for the Gordon and Betty Moore Foundation);Ackerly,2013

4. Topoclimates, refugia, and biotic responses to climate change;Ackerly;Front. Ecol. Environ.,2020

5. Assessing the accuracy of unmanned aerial vehicles photogrammetric survey;Adjidjonu;Int. J. Constr. Educ. Res.,2021

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