Tuell GH, Park JY, Aitken J, Ramnath V, Feygels VI, Guenther GC, Kopilevich YI (2005)
SHOALS-enabled 3-D benthic mapping. In: Chen S, Lewis P, (eds) Algorithms and
technologies for multispectral, hyperspectral, and ultraspectral imagery 11, Proceedings of
SPIE 5806:816–826
Wozencraft JM, Macon CL, Lillycrop WJ (2008) High resolution coastal data for Hawaii.
Proceedings of sessions of the conference: solutions to coastal disasters, Am Soc Civ Eng,
pp 422–431
References
Abidi M, Gonzalez R (1992) Data fusion in robotics and machine intelligence. Academic, San
Diego
Bogler PL (1987) Shafer-dempster reasoning with applications to multisensor target identification
systems. IEEE Trans Syst Man Cybern SMC 17(6):968–977
Bissett WP, DeBra S, Kadiwala M, Kohler DDR, Mobley CD, Steward RG, Weidemann AD,
Davis CO, Lillycrop J, Pope RL (2005) Development, validation, and fusion of highresolution active and passive optical imagery. In: Kadar I (ed) Signal processing, sensor
fusion, and target recognition XIV. Proceedings of SPIE, vol 5809. SPIE, Bellingham, WA,
pp 341–349
Hall D (1992) Mathematical techniques in multisensor data fusion. Artech House, Boston
Kim M, Park JY, Tuell G (2010) A constrained optimization technique for estimating
environmental parameters from CZMIL Hyperspectral and Lidar Data. In: Shen SS, Lewis PE
(eds) Proceedings SPIE, 7695, algorithms and technologies for multispectral, hyperspectral,
and ultraspectral imagery XVI
Kopilevich Y, Feygels V, Tuell G, Surkov A (2005) Measurement of ocean water optical
properties and seafloor reflectance with scanning hydrographic operational airborne lidar
survey (SHOALS): I Theoretical background. In: Proceedings remote sensing of the coastal
oceanic environment, SPIE, vol 5885, pp 106–114
Lowrance JD, Garvey TD (1982) Evidential reasoning: a developing concept. Proceedings of
IEEE International conference on cyberbetics society, pp 6–9
Lee M (2003) Benthic mapping of coastal waters using data fusion of hyperspectral imagery and
airborne laser bathymetry. Ph.D. dissertation, University of Florida. Gainsville, Florida, p 119
Lee M, Tuell G (2003) A technique for generating bottom reflectance images from SHOALS
data, presented at U.S. Hydro 2003 hydrographic conference, Biloxi, Mississippi, pp 24–27
Lillycrop WJ, Estep LL (1995) Generational advancements in coastal surveying. Mapping Sea
Technol 36(6):10–16
Park JY (2002) Data fusion techniques for object space classification using airborne laser data
and airborne digital photographs. Ph.D. dissertation, University of Florida, Department of
civil and coastal engineering, Gainesville, Florida
Park JY, Ramnath V, Feygels V, Kim M, Mathur A, Aitken J, Tuell GH (2010) Active-passive
data fusion algorithms for seafloor imaging and classification from CZMIL Data. In: Shen SS,
Lewis PE (eds) Proceedings SPIE, 7695, algorithms and technologies for multispectral,
hyperspectral, and ultraspectral imagery XVI
Reif M, Macon CL, Wozencraft JM (2011) Post-katrina land-cover, elevation, and volume
change assessment along the south shore of Lake Pontchartrain, Louisiana, J Coast Res.
Special issue, applied lidar techniques [Pe’eri, Long], vol 62, pp 30–39
Shafer G (1976) A mathematical theory of evidence. Princeton University Press, Princeton
Tuell G, Park JY (2004) Use of SHOALS bottom reflectance images to constrain the inversion of
a hyperspectral radiative transfer model. In: Kammerman G (ed) Proceedigs SPIE vol 5412,
laser radar and technology applications IX. pp 185–193
Tuell G, Lohrenz S (2006) High level data fusion for SHOALS-100th, Annual Report for FY
2006, National ocean partnership program
190
J. M. Wozencraft and J. Y. Park
SHOALS-enabled 3-D benthic mapping. In: Chen S, Lewis P, (eds) Algorithms and
technologies for multispectral, hyperspectral, and ultraspectral imagery 11, Proceedings of
SPIE 5806:816–826
Wozencraft JM, Macon CL, Lillycrop WJ (2008) High resolution coastal data for Hawaii.
Proceedings of sessions of the conference: solutions to coastal disasters, Am Soc Civ Eng,
pp 422–431
References
Abidi M, Gonzalez R (1992) Data fusion in robotics and machine intelligence. Academic, San
Diego
Bogler PL (1987) Shafer-dempster reasoning with applications to multisensor target identification
systems. IEEE Trans Syst Man Cybern SMC 17(6):968–977
Bissett WP, DeBra S, Kadiwala M, Kohler DDR, Mobley CD, Steward RG, Weidemann AD,
Davis CO, Lillycrop J, Pope RL (2005) Development, validation, and fusion of highresolution active and passive optical imagery. In: Kadar I (ed) Signal processing, sensor
fusion, and target recognition XIV. Proceedings of SPIE, vol 5809. SPIE, Bellingham, WA,
pp 341–349
Hall D (1992) Mathematical techniques in multisensor data fusion. Artech House, Boston
Kim M, Park JY, Tuell G (2010) A constrained optimization technique for estimating
environmental parameters from CZMIL Hyperspectral and Lidar Data. In: Shen SS, Lewis PE
(eds) Proceedings SPIE, 7695, algorithms and technologies for multispectral, hyperspectral,
and ultraspectral imagery XVI
Kopilevich Y, Feygels V, Tuell G, Surkov A (2005) Measurement of ocean water optical
properties and seafloor reflectance with scanning hydrographic operational airborne lidar
survey (SHOALS): I Theoretical background. In: Proceedings remote sensing of the coastal
oceanic environment, SPIE, vol 5885, pp 106–114
Lowrance JD, Garvey TD (1982) Evidential reasoning: a developing concept. Proceedings of
IEEE International conference on cyberbetics society, pp 6–9
Lee M (2003) Benthic mapping of coastal waters using data fusion of hyperspectral imagery and
airborne laser bathymetry. Ph.D. dissertation, University of Florida. Gainsville, Florida, p 119
Lee M, Tuell G (2003) A technique for generating bottom reflectance images from SHOALS
data, presented at U.S. Hydro 2003 hydrographic conference, Biloxi, Mississippi, pp 24–27
Lillycrop WJ, Estep LL (1995) Generational advancements in coastal surveying. Mapping Sea
Technol 36(6):10–16
Park JY (2002) Data fusion techniques for object space classification using airborne laser data
and airborne digital photographs. Ph.D. dissertation, University of Florida, Department of
civil and coastal engineering, Gainesville, Florida
Park JY, Ramnath V, Feygels V, Kim M, Mathur A, Aitken J, Tuell GH (2010) Active-passive
data fusion algorithms for seafloor imaging and classification from CZMIL Data. In: Shen SS,
Lewis PE (eds) Proceedings SPIE, 7695, algorithms and technologies for multispectral,
hyperspectral, and ultraspectral imagery XVI
Reif M, Macon CL, Wozencraft JM (2011) Post-katrina land-cover, elevation, and volume
change assessment along the south shore of Lake Pontchartrain, Louisiana, J Coast Res.
Special issue, applied lidar techniques [Pe’eri, Long], vol 62, pp 30–39
Shafer G (1976) A mathematical theory of evidence. Princeton University Press, Princeton
Tuell G, Park JY (2004) Use of SHOALS bottom reflectance images to constrain the inversion of
a hyperspectral radiative transfer model. In: Kammerman G (ed) Proceedigs SPIE vol 5412,
laser radar and technology applications IX. pp 185–193
Tuell G, Lohrenz S (2006) High level data fusion for SHOALS-100th, Annual Report for FY
2006, National ocean partnership program
190
J. M. Wozencraft and J. Y. Park
