HR: 0800h
AN: B21A-0021 [Abstracts]
TI: Using Multiple Endmember Spectral Mixture Analysis of MODIS Data for Computing the Fire Potential Index in Southern California
AU: * Schneider, P
EM: phil@geog.ucsb.edu
AF: University of California, Santa Barbara, 1832 Ellison Hall, Santa Barbara, CA 93106, United
States
AU: Roberts, D A
EM: dar@geog.ucsb.edu
AF: University of California, Santa Barbara, 1832 Ellison Hall, Santa Barbara, CA 93106, United
States
AB:
The Fire Potential Index (FPI) is currently the only operationally used wildfire susceptibility index in the United
States that incorporates remote sensing data in addition to meteorological information. Its remote sensing
component utilizes relative greenness derived from a NDVI time series as a proxy for computing the ratio of live to
dead vegetation. This study investigates the potential of Multiple Endmember Spectral Mixture Analysis (MESMA)
as a more direct and physically reasonable way of computing the live ratio and applying it for the computation of
the FPI. A time series of 16-day reflectance composites of Moderate Resolution Imaging Spectroradiometer
(MODIS) data was used to perform the analysis. Endmember selection for green vegetation (GV), non-
photosynthetic vegetation (NPV) and soil was performed in two stages. First, a subset of suitable endmembers
was selected from an extensive library of reference and image spectra for each class using Endmember Average
Root Mean Square Error (EAR), Minimum Average Spectral Angle (MASA) and a count-based technique. Second,
the most appropriate endmembers for the specific data set were selected from the subset by running a series of
2-endmember models on representative images and choosing the ones that modeled the majority of pixels. The
final set of endmembers was used for running MESMA on southern California MODIS composites from 2000 to
2006. 3- and 4-endmember models were considered. The best model was chosen on a per-pixel basis
according to the minimum root mean square error of the models at each level of complexity. Endmember
fractions were normalized by the shade endmember to generate realistic fractions of GV and NPV. In order to
validate the MESMA-derived GV fractions they were compared against live ratio estimates from RG. A significant
spatial and temporal relationship between both measures was found, indicating that GV fraction has the potential
to substitute RG in computing the FPI. To further test this hypothesis the live ratio estimates obtained from
MESMA were used to compute daily FPI maps for southern California from 2001 to 2006. A validation with
historical wildfire data from the MODIS Active Fire product was carried out over the same time period using
logistic regression. Initial results show that MESMA-derived GV fraction can be used successfully for generating
FPI maps of southern California.
DE: 0468 Natural hazards
DE: 0480 Remote sensing
SC: Biogeosciences [B]
MN: 2007 Fall Meeting