Estimating aboveground biomass changes in tropical mountains is difficult due to the small-scale anthropogenic land use activities such as selective logging. This study examined how multitemporal airborne LiDAR data could estimate AGB changes in Borneo’s tropical montane forest. Using airborne LiDAR data acquired in 2012 and 2017, we compared direct and indirect approaches to estimating the AGB changes. The direct method predicts the AGB change directly based on differences in LiDAR variables between the two time points whereas, the indirect method first constructs a model for predicting the AGB for each time point and then estimates the changes. The direct approach produced a model with an adjusted R2 of 0.321 and a relatively high RMSE (6...
Estimates of aboveground biomass (AGB) in forests are critically required by many actors including f...
Accurate estimation of above ground biomass (AGB) is required to better understand the variability a...
Parameters of individual trees can be measured from LiDAR data provided that the laser points are de...
Estimating aboveground biomass changes in tropical mountains is difficult due to the small-scale ant...
Monitoring anthropogenic disturbances on aboveground biomass (AGB) of tropical montane forests is cr...
Quantification of tropical forest above-ground biomass (AGB) over large areas as input for Reduced E...
Airborne lidar is a technology well-suited for mapping many forest attributes, including aboveground...
Unprecedented deforestation and forest degradation in recent decades have severely depleted the carb...
Forest degradation through logging is pervasive throughout the world's tropical forests, leading to ...
Tropical peat swamp forests in Indonesia store huge amounts of carbon and are responsible for enormo...
Tropical forests play a crucial component of the terrestrial carbon pool and estimate of above-groun...
Developing a robust and cost-effective method for accurately estimating tropical forest’s carbon poo...
International audienceIn recent years, LiDAR technology has provided accurate forest aboveground bio...
This study aimed to develop a method of assessing the AGB/carbon stock of a tropical lowland rainfor...
Estimates of aboveground biomass (AGB) in forests are critically required by many actors including f...
Accurate estimation of above ground biomass (AGB) is required to better understand the variability a...
Parameters of individual trees can be measured from LiDAR data provided that the laser points are de...
Estimating aboveground biomass changes in tropical mountains is difficult due to the small-scale ant...
Monitoring anthropogenic disturbances on aboveground biomass (AGB) of tropical montane forests is cr...
Quantification of tropical forest above-ground biomass (AGB) over large areas as input for Reduced E...
Airborne lidar is a technology well-suited for mapping many forest attributes, including aboveground...
Unprecedented deforestation and forest degradation in recent decades have severely depleted the carb...
Forest degradation through logging is pervasive throughout the world's tropical forests, leading to ...
Tropical peat swamp forests in Indonesia store huge amounts of carbon and are responsible for enormo...
Tropical forests play a crucial component of the terrestrial carbon pool and estimate of above-groun...
Developing a robust and cost-effective method for accurately estimating tropical forest’s carbon poo...
International audienceIn recent years, LiDAR technology has provided accurate forest aboveground bio...
This study aimed to develop a method of assessing the AGB/carbon stock of a tropical lowland rainfor...
Estimates of aboveground biomass (AGB) in forests are critically required by many actors including f...
Accurate estimation of above ground biomass (AGB) is required to better understand the variability a...
Parameters of individual trees can be measured from LiDAR data provided that the laser points are de...