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Subsequently, heights at ten percentiles (0th, 10th,…,90th) of these height distributions were computed to represent canopy height distribution and labeled PF0, PF10,…, PF90 (first echoes) and PL0, PL10,…, PL90 (last echoes), respectively.
Then, heights at nine percentiles (10th, 20th, …, 90th) of both the first- and last echo distributions were computed to represent canopy height and labeled H10.F, H20.F, …, H90.F (first echoes) and H10.L, H20.L, …, H90.L (last echoes), respectively.
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They were carefully selected in order to be useful for all DSM corrections, and should represent locations without forests (zero canopy height) and without any temporal changes.
In the present study the height, H, is not representing tree height, but rather canopy height.
In each the interferogram was processed into a differential interferogram, being the part of the phase differences in the Tandem-X image pair which represented either the 11 year changes in canopy height (from SRTM) or the canopy height (from DTM).
In each the interferogram was processed into a differential interferogram, being the part of the phase differences in the Tandem-X image pair which represented either the 11 year changes in canopy height (from SRTM) or the canopy height (from DTM).
That could be used to develop canopy height models.
The character of the SLICER backscatter signal is described and a method is developed that accounts for occlusion of the laser energy by canopy surfaces, transforming the backscatter signal to a canopy height profile (CHP) that quantitatively represents the relative vertical distribution of canopy surface area.
Forest carbon changes are derived from changes in the forest canopy height obtained from InSAR, i.e. decreases represent carbon loss from logging and increases represent carbon sequestration through forest growth.
As expected, maximum canopy height showed significant differences since this metric represents a single measurement for a given plot.
The emission factor, EF H, is a fixed value (t/ha/m) representing the ratio between a given AGB change and its corresponding forest canopy height change.
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