JAPRS & SIS, Vol.34, Part 7, “Resource and Environmental Monitoring”, Hyderabad, India, 2002
pres
South
Sister
Broken
Top
20
cost qe
ce
0 28.3 mm
0 Range Change ?p
Figure 11. Differential INSAR from satellite SAR data (passes in 1996, 2000) of the Three
Sisters volcano region, Oregon. A broad uplift of the ground surface over an area of about
15-20-km diameter, with maximum uplift of about 10 cm at its centre, is detected. (After
USGS; interferogram by C. Wicks; http://vulcan.wr.usgs.gov/volcanoes/sisters/)
7. REFERENCES
Buergmann, R., et al. 2000. Earthquake potential along the
northern Hayward fault, California. Science, 18 Aug., 2000,
289(5482), pp. 1178-1182.
Gens, R., 1998. Quality Assessment of SAR Interferometric
Data. ITC Publication No 61, pp 141.
Joughin, et al, 1998. Interferometric estimation of three-
dimensional ice-flow using ascending and descending passes.
IEEE Trans Geosci Remote Sens, 36(1), pp. 25-35.
Lu, Z., et al, 2002. Interferometric synthetic aparture radar
studies of Alaska volcanoes. Proceed. IGARSS — IEEE.
Massonnet, D., Rossi, M., Carmona, C., Adranga, F., Peltzer,
G., Feigl, K., Rabaute, T., 1993. The displacement field of the
Landers earthquake mapped by radar interferometry. Nature,
364, pp. 138-142.
Gupta, R. P., 2002. Remote Sensing Geology, 2" ed, Springer
Verlag, Heidelberg, 655p.
Markham, B. L., Barker, J. L., 1986. Landsat MSS and TM post
calibration dynamic ranges, exoatmospheric reflectances and at-
satellite temperatures. EOSAT Landsat Technical Notes 1,
August 1986, pp 3-8.
Matson, M., Dozier, J., 1981. Identification of subresolution
high temperature sources using a thermal infrared sensor.
Photogramm Eng Remote Sens, 47(9), pp. 1311-1318.
Mouelic, S. Le, Raucoules, D., Carule, C., King, C., 2002.
Grand uplift in the city of Paris (France) revealed by satellite
radar interferometry. Proceed. IGARSS — IEEE.
Mustard, J. F., Sunshine, J. M., 1999. Spectral analysis for earth
science: Investigations using remote sensing data. In: Rencz, AN
(ed) Remote Sensing for the Earth Sciences, Manual of Remote
Sensing, 3(3), Am Soc Photogramm Remote Sens, Wiley, New
York, pp 251-306.
Nagler, T., Rott H., Kamelger, A., 2002. Analysis of landslides
in Alpine areas by means of SAR interferometry. Proceed.
IGARSS -IEEE
Oppenheimer, C., 1991. Lava flow cooling estimated from
Landsat Thematic Mapper infrared data: the Lonquimay
eruption, Chile, 1989. J. Geophys. Res., 96, pp. 21865-21878.
Prakash, A., Gupta, R, P., 1999. Surface fires in the Jharia
coalfield, India- their distribution and estimation of area and
temperature from TM data. Int. J. Remote Sens., 20(10), pp.
1935-1946.
Reinhackel, G., Kruger, G., 1998. Combined use of laboratory
and airborne spectrometry from the reflective to Thermal
wavelength range for a quantitative analysis of lignite
overburden dumps. Proc. 27" RSE Int Symp, Tromsoe, Norway,
pp 507-512.
Rothery, D, A., Francis, P, W., Wood, C, A., 1988. Volcano
monitoring using short wavelength IR data from satellites. J.
Geophys. Res., 93(B7), pp. 7993-8008.
Sabine, C., Realmuto, V. J., Taranik, J. V., 1994. Quantitative
estimation of granitoid composition from thermal infrared
multispectral scanner (TIMS) data, Desolation Wilderness,
northern Sierra Nevada, California. J. Geophys. Res., 99(B3),
pp. 4261-4271.
Shang, J., Staenz, K., Levesque, J., Howarth, P., Morris, B.,
Lanteigne, L., 2002. Mine tailings characterization using
PROBE data (preliminary results). Proceed. IGARSS — IEEE.
Tesauro, M., Berardino, P., Lauri, R., Sansisti, E., Farauro G.,
Franceschetti, G., 2000. Urban subsidence inside the city of
Napoli (Italy) observed by satellite radar interferometry.
Geophy. Res. Lett., 27, pp. 1961-1964.
van der Meer, F., 1999. Imaging spectrometry for geologic
remote sensing. Geologie en Mijnbouw, 77, pp. 137-151.
476
Rubi Msb - umm — uci nu
PEt fm ee T —P- 0L "o ^