Level 2 Help for TES
WAVE
The centroid wavelength value for each channel in micrometers. This can be
calculated for a TIMS image using TIMSRESP (The central wavelength values are
dumped to the screen after the program runs).
TES
TES uses an empirical calibration curve to calculate the emissivity minimum
from the temperature independant MMD ratio. This calibration curve was derived
by convolving ASTER library spectra to the ASTER or MASTER channels and
plotting the MMD against the emissivity minimum. The empirical formula has the
form:
a-b*MMD^c
where the coefficients (a, b and c) are determined for either ASTER or MASTER.
In the caseof MASTER they are provided for the case where you have all 10
MASTER thermal channels and also the case where you have the inner 8 MASTER
channels. This latter case is provided since the shortest and longest
wavelength MASTER channels are strongly influenced by the atmosphere and often
a better result is obtained by excluding these channels from TES since they
typically contain residual atmospheric effects which will negatively influence
the result.
ASTER 6 band
a = 0.994
b = 0.687
c = 0.737
MASTER 10 band
a = 1.001
b = 0.761
c = 0.812
MASTER 8 band
a = 0.990
b = 0.757
c = 0.834
where MMD is the maximum difference of the beta ratio and ^ = raise to power.
For more information about this algorithm see
1) Temperature/Emissivity Separation (TES) Algorithm Theoretical Basis Document.
Version 2.0 by Gillespie, Rokugawa, Hook, Matsunaga and Kahle.
2) Gillespie, A., Rokugawa, S. Matsunaga, T., Cothern, S, Hook, S. and A.
Kahle, 1998. A Temperature and Emissivity Separation Algorithm for Advanced
Spaceborne Thermal Emission and Reflectance Radiometer (ASTER) Images. IEEE
Transactions on Geoscience and Remote Sensing, vol. 36 pp. 1113-1126.
3) Hook, S. J., Dmochowski, J. E., Howard, K. A., and Rowan, L. C. and K. E.
Karlstrom, 2002. Mapping Weight Percent Silica Variation from Remotely
Acquired Multispectral Thermal Infrared Data with Examples from the Hiller
Mountains, Nevada, USA and Tres Virgenes-La Reforma, Baja California Sur,
Mexico. In prep.