Remote sensing for natural resource management and environmental monitoring:
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2004
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Ausgabe: | 3. ed. |
Schriftenreihe: | Manual of remote sensing
4 |
Schlagworte: | |
Online-Zugang: | Contributor biographical information Publisher description Table of contents Inhaltsverzeichnis |
Beschreibung: | "Published in cooperation with the American Society for Photogrammetry and Remote Sensing." -- Accompanying CD-ROM includes color figures, references, and Internet sources. Includes bibliographical references and index |
Beschreibung: | XXXII, 736 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) |
Format: | System requirements for accompanying CD-ROM: PC; CD-ROM drive; Adobe Acrobat (included). |
ISBN: | 0471317934 |
Internformat
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245 | 1 | 0 | |a Remote sensing for natural resource management and environmental monitoring |c ed. by Susan L. Ustin |
250 | |a 3. ed. | ||
264 | 1 | |a Hoboken, NJ |b Wiley |c 2004 | |
300 | |a XXXII, 736 S. |b Ill., graph. Darst., Kt. |e 1 CD-ROM (12 cm) | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Manual of remote sensing |v 4 | |
500 | |a "Published in cooperation with the American Society for Photogrammetry and Remote Sensing." -- Accompanying CD-ROM includes color figures, references, and Internet sources. | ||
500 | |a Includes bibliographical references and index | ||
538 | |a System requirements for accompanying CD-ROM: PC; CD-ROM drive; Adobe Acrobat (included). | ||
650 | 7 | |a Gestion des ressources naturelles |2 rasuqam | |
650 | 7 | |a Surveillance environnementale |2 rasuqam | |
650 | 7 | |a Télédétection |2 rasuqam | |
650 | 7 | |a Écosystème |2 rasuqam | |
650 | 4 | |a Environmental monitoring |x Remote sensing | |
650 | 4 | |a Natural resources |x Management |x Remote sensing | |
650 | 0 | 7 | |a Überwachung |0 (DE-588)4134175-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Umwelt |0 (DE-588)4061616-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Fernerkundung |0 (DE-588)4016796-3 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Mineralischer Rohstoff |0 (DE-588)4039441-4 |2 gnd |9 rswk-swf |
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689 | 0 | 1 | |a Mineralischer Rohstoff |0 (DE-588)4039441-4 |D s |
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689 | 0 | 3 | |a Überwachung |0 (DE-588)4134175-2 |D s |
689 | 0 | |5 DE-188 | |
700 | 1 | |a Ustin, Susan L. |e Sonstige |4 oth | |
830 | 0 | |a Manual of remote sensing |v 4 |w (DE-604)BV012287329 |9 4 | |
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856 | 4 | |u http://www.loc.gov/catdir/enhancements/fy0620/2004295308-d.html |3 Publisher description | |
856 | 4 | |u http://www.loc.gov/catdir/enhancements/fy0620/2004295308-t.html |3 Table of contents | |
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Datensatz im Suchindex
_version_ | 1804135346073501696 |
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adam_text | PREFACE CONTRIBUTORS P A R T I : REMOTE SENSING OF TERRESTRIAL
ECOSYSTEMR C W A P T E R 1 : REMOTE SENSING OF SOILS AND SOIL PROCESSES
ALFREDO HUETE INTRODUCTION PROPERTIES CONTROLLING SOIL REFLECTANCE 1.2.1
BIOGEOCHEMICAL PROPERTIES 1.2.2 OPTICAL-GEO M ETRIC INTERACTIONS 1.2.3
SOIL MOISTURE DERIVING SOIL PROPERTIES AT THE LANDSCAPE SCALE 1.3.1
DIRECT MEASUREMENTS 1.3.2 LANDSCAPE MIXTURES 1.3.3 INFERRING SOIL
PROPERTIES THROUGH VEGETATION 1.3.4 OPTICAL-GEOMETRIC VARIATIONS
MONITORING SOIL PROCESSES 1.4.1 LAND COVER AND LAND USE CHANGE 1.4.2
SOIL BIOGEOCHEMISTRY 1.4.3 SOIL MOISTURE AND DROUGHT 1.4.4 SOIL
DEGRADATION PROCESSES 1.4.5 SOIL EROSION PROCESSES SOIL RESOURCE
DATABASES CONCLUSIONS REFERENCES (SEE CD-ROM) C H A P T E R 2 :
BIOPHYSICAL REMOTE SENRING SIGNATURES OF ARID UND SEMIARID ECOSYSTEMS
GREGORY P. ASNER 2.1 INTRODUCTION 2.1.1 LAND USE AND COVER CHANGE IN
ARID AND SEMIARID REGIONS XVII XIX 1 3 3 5 5 7 8 9 11 14 19 22 24 25 27
3 1 3 7 42 50 5 1 53 5 3 53 V VI CONTENTS 2.1.2 REMOTE SENSING OF
VEGETATION COVER AND CONDITION 2.1.3 FOUR OPTICAL REMOTE SENSING
SIGNATURE DOMAINS SPATIAL SIGNATURES 2.2.1 SPATIAL RESOLUTION 2.2.2
LANDSCAPE HETEROGENEITY AND SPATIAL SCALE 2.2.3 LANDSCAPE TEXTURE 2.2.4
CATEGORICAL AND CONTINUOUS FIELDS OF LAND COVER 2.2.5 LIGHT DETECTION
AND RANGING SPECTRAL SIGNATURES IECTRAL VARIABILITY OF EARTH SURFACES
CONCEPTUAL MODEL OF LANDSCAPE REFLECTANCE VARIABILITY BACKGROUND
REFLECTANCE: ROCKS, SOILS, AND CRYPTOBIOTIC CRUSTS VARIABILITY OF PLANT
TISSUE OPTICAL PROPERTIES VARIABILITY OF CANOPY TISSUE CONTENT
VARIABILITY OF CANOPY TISSUE ORIENTATION NPV VARIABILITY AT CANOPY
SCALES RELATIVE IMPORTANCE OF TISSUE, CANOPY, AND LANDSCAPE
CHARACTERISTICS SPECTRAL OBSERVATIONS OF DRYLAND REGIONS ANGULAR
SIGNATURES 2.4.1 INTRODUCTION AND TERMINOLOGY 2.4.2 MEASUREMENTS OF
ANGULAR REFLECTANCE SIGNATURES 2.4.3 ANGULAR SIGNATURES AS NOISE OR
KNOWLEDGE 2.4.4 EMPLOYING ANGULAR SIGNATURES IN ARID AND SEMIARID
REGIONS TEMPORAL SIGNATURES 2.5.1 BIOPHYSICAL CHANGE DETECTION 2.5.2
CONTINUOUS TIME SERIES 2.5.3 TEMPORAL MIXTURE ANALYSIS 2.5.4 PITFALLS
AND CAVEATS THERMAL-INFRARED SIGNATURES 2.6.1 BACKGROUND 2.6.2
TEMPERATURE APPLICATIONS 2.6.3 EMISSIVITY APPLICATIONS FUSION OF
SIGNATURE DOMAINS ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) CONTENTS
GREGORY S. OKIN AND DAR A. ROBERTS 3.1. INTRODUCTION 3.2. REMOTE SENSING
APPLICATIONS IN DESERT AREAS 3.2.1 REMOTE SENSING OF THE EXTENT OF THE
SAHARA DESERT 3.2.2 LAND USE, LAND COVER, AND LAND DEGRADATION 3.2.3
APPLICATIONS OF REMOTE SENSING TO DESERT GEOMORPHOLOGY 3.2.4 ATMOSPHERIC
REMOTE SENSING IN ARID REGIONS 3.3. REMOTE SENSING TECHNIQUES IN DESERTS
3.3.1 HIGH-RESOLUTION REMOTE SENSING 3.3.2 MULTISPECTRAL AND
HYPERSPECTRAL REMOTE SENSING 3.3.3 MULTITEMPORAL REMOTE SENSING 3.3.4
RADAR AND MICROWAVE REMOTE SENSING 3.4. REMOTE SENSING IN ARID REGIONS:
CHALLENGES AND LIMITATIONS 3.4.1 SUMMARY 3.5. CASE STUDY: MANIX BASIN,
SAN BERNARDINO COUNTY, CALIFORNIA 3.5.1 RETRIEVAL OF VEGETATION
INFORMATION FROM REMOTE SENSING IMAGERY 3.5.2 SUMMARY: LAND DEGRADATION
IN THE MANIX BASIN 3.6. CONCLUSIONS REFERENCES (SEE CD-ROM) C H A P T E
R 4 : TEMPERATE AND BOREAL FORESTS ERIC S. KASISCHKE, SCOTT GOETZ,
MATTHEW C. HANSEN, MUTLU OZDOGAN, JOHN ROGAN, SUSAN L. USTIN, AND CURTIS
E. WOODCOCK 4.1. INTRODUCTION 4.1.1 TEMPORAL AND SPATIAL RESOLUTION AND
SENSOR CHOICE 4.2. COARSE-RESOLUTION OPTICAL SYSTEMS 4.2.1 HISTORY OF
AVHRR AND NDVI MONITORING 4.2.2 CALIBRATION AND VALIDATION ISSUES FOR
AVHRR 4.2.3 MAPPING OF VEGETATION COVER AND CHARACTERISTICS 4.2.4
CONTINUOUS FIELDS OF VEGETATION 4.2.5 MONITORING AND MAPPING OF FIRES
VIII CONTENTS 4.2.6 MONITORING AND MAPPING OTHER LARGE-SCALE
DISTURBANCES HIGH-RESOLUTION OPTICAL SYSTEMS 4.3.1 COMMON METHODS FOR
ANALYSIS OF HIGH-RESOLUTION DATA 4.3.2 FOREST COMPOSITION 4.3.3 FOREST
STRUCTURE 4.3.4 FOREST BIOPHYSICS 4.3.5 FOREST BIOCHEMISTRY 4.3.6 FOREST
HEALTH 4.3.7 MONITORING FOREST CHANGE MICROWAVE REMOTE SENSING SYSTEMS
4.4.1 ORIGINS OF MICROWAVE SIGNATURES FROM FORESTED LANDSCAPES 4.4.2
CHARACTERISTICS OF MICROWAVE SYSTEMS 4.4.3 LAND COVER MAPPING 4.4.4
ESTIMATION OF ABOVEGROUND BIOMASS 4.4.5 MONITORING SOIL AND VEGETATION
MOISTURE CHARACTERISTICS 4.4.6 MONITORING TEMPERATURE-RELATED EFFECTS
NEW AND EMERGING TECHNOLOGIES 4.5.1 VERY HIGH SPATIAL RESOLUTION DATA
4.5.2 LIDAR REFERENCES (SEE CD-ROM) C H A P T E R 5 : TROPICAL FORESTS
RICHARD M. LUCAS, ALEXANDER A. HELD, STUART R. PHINN, AND SASSAN SAATCHI
INTRODUCTION 5.1.1 TROPICAL FORESTS: PAST AND PRESENT 5.1.2 REMOTE
SENSING OF TROPICAL FORESTS 5.1.3 CHAPTER OUTLINE CHARACTERISTICS OF
TROPICAL FORESTS 5.2.1 DEFINITIONS OF TROPICAL FORESTS 5.2.2 IMPORTANCE
OF TROPICAL FORESTS REMOTE SENSING INSTRUMENTS: PAST AND PRESENT 5.3.1
IMPORTANCE OF SPATIAL RESOLUTION 5.3.2 TEMPORAL RESOLUTION 5.3.3
EXPLOITING THE ELECTROMAGNETIC SPECTRUM: PASSIVE SENSORS 5.3.4
EXPLOITING THE ELECTROMAGNETIC SPECTRUM: ACTIVE SENSORS FACTORS
COMPLICATING REMOTE SENSING OF TROPICAL FORESTS 5.4.1 CLOUD COVER,
ATMOSPHERIC CONDITIONS, AND RAINFALL EVENTS 255 CONTENTS IX 5.4.2 FOREST
BOUNDARY DEFINITION 25 9 5.4.3 SUBPIXEL FOREST COVER 260 BIOPHYSICAL
PROPERTIES 263 5.5.1 CANOPY COVER, COMPOSITION, AND DYNAMICS 263 5.5.2
THREE-DIMENSIONAL STRUCTURE OF FORESTS 265 5.5.3 BIOMASS OF TROPICAL
FORESTS 266 5.5.4 LEAF CHARACTERISTICS 274 5 3.5 FIELD MEASUREMENTS 274
FORESTS CONDITION 276 5.6.1 UNDISTURBED FORESTS 276 5.6.2 DISTURBED
FORESTS 284 FOREST DEGRADATION 294 5.7.1 POSITIVE FEEDBACKS LEADING TO
DEGRADATION 294 5.7.2 INDICATORS OF FOREST DEGRADATION 295 FOREST
REGENERATION 296 5.8.1 REFLECTANCE CHARACTERISTICS OF REGENERATING
FORESTS 297 5.8.2 TIME-SERIES DATA SETS FOR DISCRIMINATING AND MAPPING
REGENERATION AGE AND PATHWAY 29 8 5.8.3 LAND USE IMPACTS ON TROPICAL
FOREST REGENERATION 3 05 5.8.4 CHARACTERIZING REGENERATION STAGE USING
SAR DATA 3 05 MAJOR INITIATIVES IN TROPICAL FOREST REMOTE SENSING 306
5.9.1 TROPICAL ECOSYSTEM ENVIRONMENT OBSERVATIONS BY SATELLITE PROJECT 3
06 5.9.2 GLOBAL RAIN FOREST MAPPING AND CENTRAL AFRICAN MOSAIC PROJECTS
3 07 5.9.3 NASA LANDSAT PATHFINDER HUMID TROICAL FOREST INVENTORY
PROJECT 310 5.9.4 ESTIMATE OF ARNAZON GROSS DEFORESTATION PROJECT 310
5.9.5 STATE OF THE WET TROPICS REGION, AUSTRALIA 310 FUTURE SENSORS 3 11
5.10.1 FOREST COVER CHARACTERIZATION AND CHANGE 311 5.10.2 ECOSYSTEM
FUNCTIONING AND BIOPHYSICAL PARAMETER RETRIEVAL 3 12 5.10.3 FOREST FIRE
MONITORING AND MAPPING 313 CONCLUSIONS 3 13 ACKNOWLEDGMENTS 3 15
REFERENCES (SEE CD-ROM) X CONTENTS P A R T I I : REMOTE SENSING OF
AQUATIC ECOSYSTEMS 3 17 C H A P T E R 6 : TROPICAL FRESHWATER WETLANDS
JOHN M. MELACK 6.1. INTRODUCTION 6.2. INTRODUCTION TO SYNTHETIC APERTURE
RADAR 6.3. APPLICATIONS OF REMOTE SENSING SYSTEMS TO TROPICAL WETLANDS
6.3 .I MULTISPECTRAL OPTICAL SENSORS 6.3.2 MICROWAVE SENSORS 6.4.
VALIDATION 6.5. CASE STUDY: CENTRAL AMAZON BASIN 6.5.1 BIOGEOCHEMICAL
APPLICATIONS OF REMOTELY SENSED DATA 6.6. ACKNOWLEDGMENTS REFERENCES
(SEE CD-ROM) C H A P T E R 7 : RIVERS AND LAKES 345 LEAL A. K. MERTES,
ARNOLD G. DEKKER, G. ROBERT BRAKENRIDGE, CHARON M. BIRKETT, AND GUY
LETOURNEAU 7.1. INTRODUCTION 7.1.1 RIVERS 7.1.2 LAKES 7.2. REMOTE
SENSING CHARACTERISTICS 7.2.1 WATER QUALITY FROM OPTICAL AND NEAR-
INFRARED DATA 7.2.2 RIPARIAN VEGETATION 7.2.3 HYDROLOGIC WATER
PROPERTIES 7.3. REMOTE SENSING APPLICATIONS 7.3.1 WATER QUALITY FROM
OPTICAL AND NEAR- INFRARED DATA 7.3.2 RIPARIAN VEGETATION 7.3.3 WATER
PROPERTIES 7.3.4 TOPOGRAPHIC MAPPING 7.4. CASE STUDIES 7.4.1 WETLAND
MONITORING PROGRAM, ST. LAWRENCE CENTRE, ENVIRONMENT CANADA 7.4.2
INUNDATION AND SEDIMENT CONCENTRATION MAPS, SOUTHEASTERN UNITED STATES
7.4.3 CHLOROPHYLL CONCENTRATION MAPS, NETHERLANDS LAKES 7.5.
ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) CONTENTS XI ARGINS AND ESTUWIES
40 1 CURTISS 0. DAVIS, GIA M. LAMELA, TIMOTHY F. DONATO, AND CHARLES M.
BACHMANN INTRODUCTION 8.1.1 OVERVIEW OF OCEAN REMOTE SENSING 8.1.2
APPLICATIONS OF REMOTE SENSING TO THE COASTAL ENVIRONMENT COASTAL
WETLANDS 8.2.1 DEFINITION AND IMPORTANCE 8.2.2 IDENTIFICATION AND
CLASSIFICATION 8.2.3 CHANGE DETECTION 8.2.4 PRODUCTIVITY, BIOGEOCHEMICAL
CYCLING, AND GLOBAL CLIMATE CHANGE COASTAL GEOMORPHOLOGY 8.3.1
CLASSIFICATION AND MAPPING 8.3.2 SHORELINES 8.3.3 RIVER DELTAS 8.3.4
TIDAL INLETS COASTAL OCEAN 8.4.1 FISHERIES AND AQUACULTURE 8.4.2 WATER
QUALITY ASSESSMENT 8.4.3 HARMFUL ALGAL BLOOMS 8.4.4 BOTTOM
CHARACTERISTICS AND BATHYMETRY 8.4.5 SUBMERGED AQUATIC VEGETATION AND
CORAL REEFS SAR OBSERVATIONS OF COASTAL AND ESTUARINE WATEN MAPPING
SURFACE SALINITY COASTAL OCEAN DYNAMICS CASE STUDIES 8.8.1 MAPPING
COASTAL ECOSYSTEMS OVER A STEEP DEVELOPMENT GRADIENT USING CCAP
PROTOCOLS 8.8.2 USE OF LANDSAT THEMATIC MAPPER, RADARSAT SAR, AND
HIGH-RESOLUTION HYMAP IMAGERY 8.8.3 MAPPING OF THE NILE DELTA 8.8.4
LEO-15 OCEAN OBSERVATORY SUMMARY AND FUTURE DIRECTIONS REFERENCES (SEE
CD-ROM) P A R T I I I : REMOTE SENSING OF AGRICULTURE ECOSYSTEMS 447 C H
A P T E R 9 : GRAZING AGRICULTURE: MANAGED PASTURE, GRASSLAND, AND
RANGELAND 449 MICHAEL J. HILL XII CONTENTS INTRODUCTION 449 9.1.1
DEFINITION OF MANAGED GRASSLAND 45 0 9.1.2 DISTRIBUTION 45 0 9.1.3
PHYSICAL CHARACTERISTICS 45 5 9.1.4 ANIMAL POPULATIONS AND PRODUCTION
457 ISSUES FOR LIVESTOCK AND GRASSLAND MANAGEMENT 462 9.2.1 MANAGED
GRASSLANDS AS ECOSYSTEMS 462 9.2.2 PRODUCTION 462 9.2.3 SUSTAINABILITY
463 9.2.4 GREENHOUSE IMPACTS 463 9.2.5 INTENSIFICATION AND
OVERPRODUCTION 465 9.2.6 ECONOMIC FEASIBILITY OF LIVESTOCK ENTERPRISES
466 9.2.7 BENCHMARKING: PADDOCK-TO-PRODUCT SYSTEMS 466 9.2.8 PRECISION
OR SITE-SPECIFIC MANAGEMENT 467 CRITICAL CHARACTERISTICS OF MANAGED
GRASSLAND SYSTEMS IN RELATION TO REMOTE SENSING 467 9.3.1 SCALE 468
9.3.2 SPATIAL VARIATION 469 9.3.3 MOBILITY OF THE PRODUCTION UNIT (THE
ANIMAL) 471 9.3.4 TEMPORAL VARIATION, SEASONALITY, AND PHENOLOGY 471
9.3.5 IMPORTANCE OF CHEMICAL COMPOSITION 471 9.3.6 METHODS TO ADDRESS
THESE ISSUES 473 REMOTE SENSING TECHNOLOGY AND METHODOLOGY FOR MANAGED
GRASSLANDS 473 9.4.1 IMAGING RESOLUTION 473 9.4.2 MULTIANGLE IMAGING 474
9.4.3 IMAGING SPECTROMETRY 475 9.4.4 SPECTRAL REFLECTANCE MODELS 479
9.4.5 SYNTHETIC APERTURE RADAR 48 0 9.4.6 LASER ALTIMETRY OR LIDAR 484
9.4.7 MULTITEMPORAL MULTISPECTRAL IMAGING 484 9.4.8 RED-EDGE ANALYSIS
488 9.4.9 FLUORESCENCE 489 CRITICAL TARGETS FOR REMOTE SENSING OF
MANAGED GRASSLANDS 490 9.5.1 LAND COVER, CONDITION, AND CHANGE 490 9.5.2
LEAF AREA INDEX 49 1 9.5.3 CANOPY STRUCTURE AND BIDIRECTIONAL
REFLECTANCE DISTRIBUTION FUNCTION 493 9.5.4 BIOMASS 496 9.5.5 PLANT
LITTER AND SENESCENT VEGETATION 507 9.5.6 CANOPY TEMPERATURE-WATER
STATUS 508 9.5.7 BOTANICAL CORNPOSITION 508 CONTENTS XIFI 9.5.8 GROWTH
AND NET PRIMARY PRODUCTION 9.5.9 GRAZING IMPACTS AND ANIMA1 PRODUCTION
9.5.10 EROSION AND LAND DEGRADATION 9.5.11 CHEMICAL CONSTITUENTS 9.5.12
NUTRIENT STATUS 9.5.13 INSECTS 9.5.14 WEEDS, PESTS, AND DISEASES 9.6.
REMOTE SENSING AND SYSTEMS MODELS FOR MANAGED GRASSLANDS 9.7. REMOTE
SENSING OF ANIMALS 9.7.1 IDENTIFICATION 9.7.2 TRACKING LOCATION AND
WELFARE 9.7.3 MONITORING 9.8. CONCLUSIONS 9.9. ACKNOWLEDGMENTS
REFERENCES (SEE CD-ROM) SUGGESTED READING (SEE CD-ROM) C H A P T E R 1 0
: REMOTE SENSING OF DRYLAND CROPS JERRY L. HATFIELD, JOHN H. PRUEGER,
AND WILLIAM P. KUSTAS 10.1. INTRODUCTION 10.2. VEGETATIVE AND
REPRODUCTIVE GROWTH 10.2.1 VEGETATIVE INDEXES 10.2.2 COMPARISONS OF
VEGETATIVE INDEXES 10.2.3 LEAF AREA INDEX 10.2.4 CROP BIOMASS 10.2.5
INTERCEPTED RADIATION 10.2.6 CROP GROUND COVER 10.2.7 CROP YIELD 10.2.8
CONFOUNDING FACTORS 10.3. APPLICATION OF REMOTE SENSING TO DRYLAND
CROPPING SYSTEMS 10.4. ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) C H A P T
E R 1 1 : WETLAND AGRICULTURE SUSHMA PANIGRAHY AND K. R. MANJUNATH 11.1.
INTRODUCTION 11.2. RICE-GROWING SYSTEMS 11.2.1 LOWLAND RICE 11.2.2
DEEPWATER RICE 11.2.3 FLOATING RICE 11.2.4 COMPONENTS OF WETLAND RICE
PRODUCTION 11.3. RICE CROP XIV CONTENTS 11.3.1 MORPHOLOGY AND GROWTH
STAGES 11.3.2 GROWING SEASON AND CROP CALENDAR REMOTE SENSING STUDIES:
OPTICAL REGION 11.4.1 GROUND-BASED OBSERVATIONS 11.4.2 SMDIES USING
AIRBORNE SENSORS 11.4.3 SMDIES FROM SPACEBORNE DATA 11.4.4 CONSTRAINTS
OF OPTICAL REMOTE SENSING REMOTE SENSING STUDIES: MICROWAVE REGION
11.5.1 SIGNATURES IN THE MICROWAVE REGION 11.5.2 CLASSIFICATION RICE
CROP MONITORING USING SAR DATA 11.6.1 PROGRESS OF PLANTING AND CROP
CALENDAR 11.6.2 FLOOD AND DROUGHT BIOPHYSICAL PARAMETER RETRIEVAL
OPERATIONAL RICE MONITORING EXPERIENCE 11.8.1 SAR-BASED RICE FORECASTING
PROGRAM OTHER WETLAND CROPS 11.9.1 TARO 11.9.2 JUTE WETLAND SYSTEMS AND
GLOBAL WARMING EMERGING TRENDS 11.11.1 INTEGRATED APPROACH TOWARD BEST
PRACTICE IN CROP MONITORING 11.11.2 CROPPING SYSTEMS ANALYSIS 11.11.3
PRECISION CROP MANAGEMENT REFERENCES (SEE CD-ROM) C H A P T E R 1 2 :
APPLICATION OF IMAGE-BAAED ENIOTE SENSING TO IRRIGATED AGRICULTURE M.
SUSAN MORAN, STEPHEN J. MAAS, VERN C. VANDERBILT, EDWARD M. BARNES,
SCOTT N. MILLER, AND THOMAS R. CLARKE 12.1. INTRODUCTION 12.2.
BACKGROUND 12.2.1 CROP WATER STRESS AND TTR WAVELENGTHS 12.2.2 CROP
WATER STRESS AND VISIBLE, NIR, SWIR, AND SAR WAVELENGTHS 12.2.3 OPTICAL
PROPERTIES OF PLANT LEAVES 12.2.4 OPTICAL PROPERTIES OF PLANT CANOPIES
12.3. REMOTELY SENSED INFORMATION FOR MANAGEMENT OF IRRIGATED
AGRICULTURE 12.3.1 IRRIGATION AND WATER INFORMATION 12.3.2 NUTRIENT
APPLICATION CONTENTS 12.3.3 WEED SCOUTING AND HERBICIDE APPLICATION
12.3.4 INSECT SCOUTING AND INSECTICIDE APPLICATION 12.3.5 CROP YIELD
12.3.6 SOIL CHARACTERIZATION 12.3.7 NEXT-SEASON PREPARATION 12.4.
CONCLUSIONS 12.5. ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) C H A P T E R
1 3 : REMOTE SENSING OF THE ENVIRONMENT: STATE OF THE SCIENCE UND EW
DIRECTIONS SUSAN L. USTIN, STEPHANE JACQUEMOUD, PABLO J. ZARCO-TEJADA,
AND GREGORY P. ASNER 13.1. INTRODUCTION 13.2. GLOBAL BIOGEOCHEMICAL
CYCLES 13.2.1 MEASURING AND MONITORING FEEDBACK BETWEEN THE BIOSPHERE
AND THE ATMOSPHERE 13.2.2 LAND COVER CHARACTERIZATION 13.2.3 LAND USE
CONVERSION AND CHANGE 13 .2.4 SUMMARY 13.3. ESTIMATION OF CANOPY
BIOCHEMISTRY 13.3.1 METHODS FOR LEAF BIOCHEMICAL ESTIMATES 13.3.2
SCALING-UP METHODS FOR CANOPY BIOCHEMICAL ESTIMATES 13.3.3 SUMMARY 13.4.
ESTIMATION OF CANOPY BIOPHYSICAL PROPERTIES 13.4.1 ESTIMATING LEAF AREA
INDEX AND NET PRIMARY PRODUCTIVITY 13.4.2 IMPROVEMENT OF LAI AND @AR
ESTIMATIONS BY USING MULTIANGULAR DATA 13.4.3 DERIVATION OF NEW
PARAMETERS 13.4.4 IMAGE VALIDATION 13.4.5 SUMMARY 13 5. CONCLUSIONS
REFERENCES (SEE CD-ROM) INDEX
|
adam_txt |
PREFACE CONTRIBUTORS P A R T I : REMOTE SENSING OF TERRESTRIAL
ECOSYSTEMR C W A P T E R 1 : REMOTE SENSING OF SOILS AND SOIL PROCESSES
ALFREDO HUETE INTRODUCTION PROPERTIES CONTROLLING SOIL REFLECTANCE 1.2.1
BIOGEOCHEMICAL PROPERTIES 1.2.2 OPTICAL-GEO M ETRIC INTERACTIONS 1.2.3
SOIL MOISTURE DERIVING SOIL PROPERTIES AT THE LANDSCAPE SCALE 1.3.1
DIRECT MEASUREMENTS 1.3.2 LANDSCAPE MIXTURES 1.3.3 INFERRING SOIL
PROPERTIES THROUGH VEGETATION 1.3.4 OPTICAL-GEOMETRIC VARIATIONS
MONITORING SOIL PROCESSES 1.4.1 LAND COVER AND LAND USE CHANGE 1.4.2
SOIL BIOGEOCHEMISTRY 1.4.3 SOIL MOISTURE AND DROUGHT 1.4.4 SOIL
DEGRADATION PROCESSES 1.4.5 SOIL EROSION PROCESSES SOIL RESOURCE
DATABASES CONCLUSIONS REFERENCES (SEE CD-ROM) C H A P T E R 2 :
BIOPHYSICAL REMOTE SENRING SIGNATURES OF ARID UND SEMIARID ECOSYSTEMS
GREGORY P. ASNER 2.1 INTRODUCTION 2.1.1 LAND USE AND COVER CHANGE IN
ARID AND SEMIARID REGIONS XVII XIX 1 3 3 5 5 7 8 9 11 14 19 22 24 25 27
3 1 3 7 42 50 5 1 53 5 3 53 V VI CONTENTS 2.1.2 REMOTE SENSING OF
VEGETATION COVER AND CONDITION 2.1.3 FOUR OPTICAL REMOTE SENSING
SIGNATURE DOMAINS SPATIAL SIGNATURES 2.2.1 SPATIAL RESOLUTION 2.2.2
LANDSCAPE HETEROGENEITY AND SPATIAL SCALE 2.2.3 LANDSCAPE TEXTURE 2.2.4
CATEGORICAL AND CONTINUOUS FIELDS OF LAND COVER 2.2.5 LIGHT DETECTION
AND RANGING SPECTRAL SIGNATURES IECTRAL VARIABILITY OF EARTH SURFACES
CONCEPTUAL MODEL OF LANDSCAPE REFLECTANCE VARIABILITY BACKGROUND
REFLECTANCE: ROCKS, SOILS, AND CRYPTOBIOTIC CRUSTS VARIABILITY OF PLANT
TISSUE OPTICAL PROPERTIES VARIABILITY OF CANOPY TISSUE CONTENT
VARIABILITY OF CANOPY TISSUE ORIENTATION NPV VARIABILITY AT CANOPY
SCALES RELATIVE IMPORTANCE OF TISSUE, CANOPY, AND LANDSCAPE
CHARACTERISTICS SPECTRAL OBSERVATIONS OF DRYLAND REGIONS ANGULAR
SIGNATURES 2.4.1 INTRODUCTION AND TERMINOLOGY 2.4.2 MEASUREMENTS OF
ANGULAR REFLECTANCE SIGNATURES 2.4.3 ANGULAR SIGNATURES AS NOISE OR
KNOWLEDGE 2.4.4 EMPLOYING ANGULAR SIGNATURES IN ARID AND SEMIARID
REGIONS TEMPORAL SIGNATURES 2.5.1 BIOPHYSICAL CHANGE DETECTION 2.5.2
CONTINUOUS TIME SERIES 2.5.3 TEMPORAL MIXTURE ANALYSIS 2.5.4 PITFALLS
AND CAVEATS THERMAL-INFRARED SIGNATURES 2.6.1 BACKGROUND 2.6.2
TEMPERATURE APPLICATIONS 2.6.3 EMISSIVITY APPLICATIONS FUSION OF
SIGNATURE DOMAINS ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) CONTENTS
GREGORY S. OKIN AND DAR A. ROBERTS 3.1. INTRODUCTION 3.2. REMOTE SENSING
APPLICATIONS IN DESERT AREAS 3.2.1 REMOTE SENSING OF THE EXTENT OF THE
SAHARA DESERT 3.2.2 LAND USE, LAND COVER, AND LAND DEGRADATION 3.2.3
APPLICATIONS OF REMOTE SENSING TO DESERT GEOMORPHOLOGY 3.2.4 ATMOSPHERIC
REMOTE SENSING IN ARID REGIONS 3.3. REMOTE SENSING TECHNIQUES IN DESERTS
3.3.1 HIGH-RESOLUTION REMOTE SENSING 3.3.2 MULTISPECTRAL AND
HYPERSPECTRAL REMOTE SENSING 3.3.3 MULTITEMPORAL REMOTE SENSING 3.3.4
RADAR AND MICROWAVE REMOTE SENSING 3.4. REMOTE SENSING IN ARID REGIONS:
CHALLENGES AND LIMITATIONS 3.4.1 SUMMARY 3.5. CASE STUDY: MANIX BASIN,
SAN BERNARDINO COUNTY, CALIFORNIA 3.5.1 RETRIEVAL OF VEGETATION
INFORMATION FROM REMOTE SENSING IMAGERY 3.5.2 SUMMARY: LAND DEGRADATION
IN THE MANIX BASIN 3.6. CONCLUSIONS REFERENCES (SEE CD-ROM) C H A P T E
R 4 : TEMPERATE AND BOREAL FORESTS ERIC S. KASISCHKE, SCOTT GOETZ,
MATTHEW C. HANSEN, MUTLU OZDOGAN, JOHN ROGAN, SUSAN L. USTIN, AND CURTIS
E. WOODCOCK 4.1. INTRODUCTION 4.1.1 TEMPORAL AND SPATIAL RESOLUTION AND
SENSOR CHOICE 4.2. COARSE-RESOLUTION OPTICAL SYSTEMS 4.2.1 HISTORY OF
AVHRR AND NDVI MONITORING 4.2.2 CALIBRATION AND VALIDATION ISSUES FOR
AVHRR 4.2.3 MAPPING OF VEGETATION COVER AND CHARACTERISTICS 4.2.4
CONTINUOUS FIELDS OF VEGETATION 4.2.5 MONITORING AND MAPPING OF FIRES
VIII CONTENTS 4.2.6 MONITORING AND MAPPING OTHER LARGE-SCALE
DISTURBANCES HIGH-RESOLUTION OPTICAL SYSTEMS 4.3.1 COMMON METHODS FOR
ANALYSIS OF HIGH-RESOLUTION DATA 4.3.2 FOREST COMPOSITION 4.3.3 FOREST
STRUCTURE 4.3.4 FOREST BIOPHYSICS 4.3.5 FOREST BIOCHEMISTRY 4.3.6 FOREST
HEALTH 4.3.7 MONITORING FOREST CHANGE MICROWAVE REMOTE SENSING SYSTEMS
4.4.1 ORIGINS OF MICROWAVE SIGNATURES FROM FORESTED LANDSCAPES 4.4.2
CHARACTERISTICS OF MICROWAVE SYSTEMS 4.4.3 LAND COVER MAPPING 4.4.4
ESTIMATION OF ABOVEGROUND BIOMASS 4.4.5 MONITORING SOIL AND VEGETATION
MOISTURE CHARACTERISTICS 4.4.6 MONITORING TEMPERATURE-RELATED EFFECTS
NEW AND EMERGING TECHNOLOGIES 4.5.1 VERY HIGH SPATIAL RESOLUTION DATA
4.5.2 LIDAR REFERENCES (SEE CD-ROM) C H A P T E R 5 : TROPICAL FORESTS
RICHARD M. LUCAS, ALEXANDER A. HELD, STUART R. PHINN, AND SASSAN SAATCHI
INTRODUCTION 5.1.1 TROPICAL FORESTS: PAST AND PRESENT 5.1.2 REMOTE
SENSING OF TROPICAL FORESTS 5.1.3 CHAPTER OUTLINE CHARACTERISTICS OF
TROPICAL FORESTS 5.2.1 DEFINITIONS OF TROPICAL FORESTS 5.2.2 IMPORTANCE
OF TROPICAL FORESTS REMOTE SENSING INSTRUMENTS: PAST AND PRESENT 5.3.1
IMPORTANCE OF SPATIAL RESOLUTION 5.3.2 TEMPORAL RESOLUTION 5.3.3
EXPLOITING THE ELECTROMAGNETIC SPECTRUM: PASSIVE SENSORS 5.3.4
EXPLOITING THE ELECTROMAGNETIC SPECTRUM: ACTIVE SENSORS FACTORS
COMPLICATING REMOTE SENSING OF TROPICAL FORESTS 5.4.1 CLOUD COVER,
ATMOSPHERIC CONDITIONS, AND RAINFALL EVENTS 255 CONTENTS IX 5.4.2 FOREST
BOUNDARY DEFINITION 25 9 5.4.3 SUBPIXEL FOREST COVER 260 BIOPHYSICAL
PROPERTIES 263 5.5.1 CANOPY COVER, COMPOSITION, AND DYNAMICS 263 5.5.2
THREE-DIMENSIONAL STRUCTURE OF FORESTS 265 5.5.3 BIOMASS OF TROPICAL
FORESTS 266 5.5.4 LEAF CHARACTERISTICS 274 5 3.5 FIELD MEASUREMENTS 274
FORESTS CONDITION 276 5.6.1 UNDISTURBED FORESTS 276 5.6.2 DISTURBED
FORESTS 284 FOREST DEGRADATION 294 5.7.1 POSITIVE FEEDBACKS LEADING TO
DEGRADATION 294 5.7.2 INDICATORS OF FOREST DEGRADATION 295 FOREST
REGENERATION 296 5.8.1 REFLECTANCE CHARACTERISTICS OF REGENERATING
FORESTS 297 5.8.2 TIME-SERIES DATA SETS FOR DISCRIMINATING AND MAPPING
REGENERATION AGE AND PATHWAY 29 8 5.8.3 LAND USE IMPACTS ON TROPICAL
FOREST REGENERATION 3 05 5.8.4 CHARACTERIZING REGENERATION STAGE USING
SAR DATA 3 05 MAJOR INITIATIVES IN TROPICAL FOREST REMOTE SENSING 306
5.9.1 TROPICAL ECOSYSTEM ENVIRONMENT OBSERVATIONS BY SATELLITE PROJECT 3
06 5.9.2 GLOBAL RAIN FOREST MAPPING AND CENTRAL AFRICAN MOSAIC PROJECTS
3 07 5.9.3 NASA LANDSAT PATHFINDER HUMID TROICAL FOREST INVENTORY
PROJECT 310 5.9.4 ESTIMATE OF ARNAZON GROSS DEFORESTATION PROJECT 310
5.9.5 STATE OF THE WET TROPICS REGION, AUSTRALIA 310 FUTURE SENSORS 3 11
5.10.1 FOREST COVER CHARACTERIZATION AND CHANGE 311 5.10.2 ECOSYSTEM
FUNCTIONING AND BIOPHYSICAL PARAMETER RETRIEVAL 3 12 5.10.3 FOREST FIRE
MONITORING AND MAPPING 313 CONCLUSIONS 3 13 ACKNOWLEDGMENTS 3 15
REFERENCES (SEE CD-ROM) X CONTENTS P A R T I I : REMOTE SENSING OF
AQUATIC ECOSYSTEMS 3 17 C H A P T E R 6 : TROPICAL FRESHWATER WETLANDS
JOHN M. MELACK 6.1. INTRODUCTION 6.2. INTRODUCTION TO SYNTHETIC APERTURE
RADAR 6.3. APPLICATIONS OF REMOTE SENSING SYSTEMS TO TROPICAL WETLANDS
6.3 .I MULTISPECTRAL OPTICAL SENSORS 6.3.2 MICROWAVE SENSORS 6.4.
VALIDATION 6.5. CASE STUDY: CENTRAL AMAZON BASIN 6.5.1 BIOGEOCHEMICAL
APPLICATIONS OF REMOTELY SENSED DATA 6.6. ACKNOWLEDGMENTS REFERENCES
(SEE CD-ROM) C H A P T E R 7 : RIVERS AND LAKES 345 LEAL A. K. MERTES,
ARNOLD G. DEKKER, G. ROBERT BRAKENRIDGE, CHARON M. BIRKETT, AND GUY
LETOURNEAU 7.1. INTRODUCTION 7.1.1 RIVERS 7.1.2 LAKES 7.2. REMOTE
SENSING CHARACTERISTICS 7.2.1 WATER QUALITY FROM OPTICAL AND NEAR-
INFRARED DATA 7.2.2 RIPARIAN VEGETATION 7.2.3 HYDROLOGIC WATER
PROPERTIES 7.3. REMOTE SENSING APPLICATIONS 7.3.1 WATER QUALITY FROM
OPTICAL AND NEAR- INFRARED DATA 7.3.2 RIPARIAN VEGETATION 7.3.3 WATER
PROPERTIES 7.3.4 TOPOGRAPHIC MAPPING 7.4. CASE STUDIES 7.4.1 WETLAND
MONITORING PROGRAM, ST. LAWRENCE CENTRE, ENVIRONMENT CANADA 7.4.2
INUNDATION AND SEDIMENT CONCENTRATION MAPS, SOUTHEASTERN UNITED STATES
7.4.3 CHLOROPHYLL CONCENTRATION MAPS, NETHERLANDS LAKES 7.5.
ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) CONTENTS XI ARGINS AND ESTUWIES
40 1 CURTISS 0. DAVIS, GIA M. LAMELA, TIMOTHY F. DONATO, AND CHARLES M.
BACHMANN INTRODUCTION 8.1.1 OVERVIEW OF OCEAN REMOTE SENSING 8.1.2
APPLICATIONS OF REMOTE SENSING TO THE COASTAL ENVIRONMENT COASTAL
WETLANDS 8.2.1 DEFINITION AND IMPORTANCE 8.2.2 IDENTIFICATION AND
CLASSIFICATION 8.2.3 CHANGE DETECTION 8.2.4 PRODUCTIVITY, BIOGEOCHEMICAL
CYCLING, AND GLOBAL CLIMATE CHANGE COASTAL GEOMORPHOLOGY 8.3.1
CLASSIFICATION AND MAPPING 8.3.2 SHORELINES 8.3.3 RIVER DELTAS 8.3.4
TIDAL INLETS COASTAL OCEAN 8.4.1 FISHERIES AND AQUACULTURE 8.4.2 WATER
QUALITY ASSESSMENT 8.4.3 HARMFUL ALGAL BLOOMS 8.4.4 BOTTOM
CHARACTERISTICS AND BATHYMETRY 8.4.5 SUBMERGED AQUATIC VEGETATION AND
CORAL REEFS SAR OBSERVATIONS OF COASTAL AND ESTUARINE WATEN MAPPING
SURFACE SALINITY COASTAL OCEAN DYNAMICS CASE STUDIES 8.8.1 MAPPING
COASTAL ECOSYSTEMS OVER A STEEP DEVELOPMENT GRADIENT USING CCAP
PROTOCOLS 8.8.2 USE OF LANDSAT THEMATIC MAPPER, RADARSAT SAR, AND
HIGH-RESOLUTION HYMAP IMAGERY 8.8.3 MAPPING OF THE NILE DELTA 8.8.4
LEO-15 OCEAN OBSERVATORY SUMMARY AND FUTURE DIRECTIONS REFERENCES (SEE
CD-ROM) P A R T I I I : REMOTE SENSING OF AGRICULTURE ECOSYSTEMS 447 C H
A P T E R 9 : GRAZING AGRICULTURE: MANAGED PASTURE, GRASSLAND, AND
RANGELAND 449 MICHAEL J. HILL XII CONTENTS INTRODUCTION 449 9.1.1
DEFINITION OF MANAGED GRASSLAND 45 0 9.1.2 DISTRIBUTION 45 0 9.1.3
PHYSICAL CHARACTERISTICS 45 5 9.1.4 ANIMAL POPULATIONS AND PRODUCTION
457 ISSUES FOR LIVESTOCK AND GRASSLAND MANAGEMENT 462 9.2.1 MANAGED
GRASSLANDS AS ECOSYSTEMS 462 9.2.2 PRODUCTION 462 9.2.3 SUSTAINABILITY
463 9.2.4 GREENHOUSE IMPACTS 463 9.2.5 INTENSIFICATION AND
OVERPRODUCTION 465 9.2.6 ECONOMIC FEASIBILITY OF LIVESTOCK ENTERPRISES
466 9.2.7 BENCHMARKING: PADDOCK-TO-PRODUCT SYSTEMS 466 9.2.8 PRECISION
OR SITE-SPECIFIC MANAGEMENT 467 CRITICAL CHARACTERISTICS OF MANAGED
GRASSLAND SYSTEMS IN RELATION TO REMOTE SENSING 467 9.3.1 SCALE 468
9.3.2 SPATIAL VARIATION 469 9.3.3 MOBILITY OF THE PRODUCTION UNIT (THE
ANIMAL) 471 9.3.4 TEMPORAL VARIATION, SEASONALITY, AND PHENOLOGY 471
9.3.5 IMPORTANCE OF CHEMICAL COMPOSITION 471 9.3.6 METHODS TO ADDRESS
THESE ISSUES 473 REMOTE SENSING TECHNOLOGY AND METHODOLOGY FOR MANAGED
GRASSLANDS 473 9.4.1 IMAGING RESOLUTION 473 9.4.2 MULTIANGLE IMAGING 474
9.4.3 IMAGING SPECTROMETRY 475 9.4.4 SPECTRAL REFLECTANCE MODELS 479
9.4.5 SYNTHETIC APERTURE RADAR 48 0 9.4.6 LASER ALTIMETRY OR LIDAR 484
9.4.7 MULTITEMPORAL MULTISPECTRAL IMAGING 484 9.4.8 RED-EDGE ANALYSIS
488 9.4.9 FLUORESCENCE 489 CRITICAL TARGETS FOR REMOTE SENSING OF
MANAGED GRASSLANDS 490 9.5.1 LAND COVER, CONDITION, AND CHANGE 490 9.5.2
LEAF AREA INDEX 49 1 9.5.3 CANOPY STRUCTURE AND BIDIRECTIONAL
REFLECTANCE DISTRIBUTION FUNCTION 493 9.5.4 BIOMASS 496 9.5.5 PLANT
LITTER AND SENESCENT VEGETATION 507 9.5.6 CANOPY TEMPERATURE-WATER
STATUS 508 9.5.7 BOTANICAL CORNPOSITION 508 CONTENTS XIFI 9.5.8 GROWTH
AND NET PRIMARY PRODUCTION 9.5.9 GRAZING IMPACTS AND ANIMA1 PRODUCTION
9.5.10 EROSION AND LAND DEGRADATION 9.5.11 CHEMICAL CONSTITUENTS 9.5.12
NUTRIENT STATUS 9.5.13 INSECTS 9.5.14 WEEDS, PESTS, AND DISEASES 9.6.
REMOTE SENSING AND SYSTEMS MODELS FOR MANAGED GRASSLANDS 9.7. REMOTE
SENSING OF ANIMALS 9.7.1 IDENTIFICATION 9.7.2 TRACKING LOCATION AND
WELFARE 9.7.3 MONITORING 9.8. CONCLUSIONS 9.9. ACKNOWLEDGMENTS
REFERENCES (SEE CD-ROM) SUGGESTED READING (SEE CD-ROM) C H A P T E R 1 0
: REMOTE SENSING OF DRYLAND CROPS JERRY L. HATFIELD, JOHN H. PRUEGER,
AND WILLIAM P. KUSTAS 10.1. INTRODUCTION 10.2. VEGETATIVE AND
REPRODUCTIVE GROWTH 10.2.1 VEGETATIVE INDEXES 10.2.2 COMPARISONS OF
VEGETATIVE INDEXES 10.2.3 LEAF AREA INDEX 10.2.4 CROP BIOMASS 10.2.5
INTERCEPTED RADIATION 10.2.6 CROP GROUND COVER 10.2.7 CROP YIELD 10.2.8
CONFOUNDING FACTORS 10.3. APPLICATION OF REMOTE SENSING TO DRYLAND
CROPPING SYSTEMS 10.4. ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) C H A P T
E R 1 1 : WETLAND AGRICULTURE SUSHMA PANIGRAHY AND K. R. MANJUNATH 11.1.
INTRODUCTION 11.2. RICE-GROWING SYSTEMS 11.2.1 LOWLAND RICE 11.2.2
DEEPWATER RICE 11.2.3 FLOATING RICE 11.2.4 COMPONENTS OF WETLAND RICE
PRODUCTION 11.3. RICE CROP XIV CONTENTS 11.3.1 MORPHOLOGY AND GROWTH
STAGES 11.3.2 GROWING SEASON AND CROP CALENDAR REMOTE SENSING STUDIES:
OPTICAL REGION 11.4.1 GROUND-BASED OBSERVATIONS 11.4.2 SMDIES USING
AIRBORNE SENSORS 11.4.3 SMDIES FROM SPACEBORNE DATA 11.4.4 CONSTRAINTS
OF OPTICAL REMOTE SENSING REMOTE SENSING STUDIES: MICROWAVE REGION
11.5.1 SIGNATURES IN THE MICROWAVE REGION 11.5.2 CLASSIFICATION RICE
CROP MONITORING USING SAR DATA 11.6.1 PROGRESS OF PLANTING AND CROP
CALENDAR 11.6.2 FLOOD AND DROUGHT BIOPHYSICAL PARAMETER RETRIEVAL
OPERATIONAL RICE MONITORING EXPERIENCE 11.8.1 SAR-BASED RICE FORECASTING
PROGRAM OTHER WETLAND CROPS 11.9.1 TARO 11.9.2 JUTE WETLAND SYSTEMS AND
GLOBAL WARMING EMERGING TRENDS 11.11.1 INTEGRATED APPROACH TOWARD BEST
PRACTICE IN CROP MONITORING 11.11.2 CROPPING SYSTEMS ANALYSIS 11.11.3
PRECISION CROP MANAGEMENT REFERENCES (SEE CD-ROM) C H A P T E R 1 2 :
APPLICATION OF IMAGE-BAAED ENIOTE SENSING TO IRRIGATED AGRICULTURE M.
SUSAN MORAN, STEPHEN J. MAAS, VERN C. VANDERBILT, EDWARD M. BARNES,
SCOTT N. MILLER, AND THOMAS R. CLARKE 12.1. INTRODUCTION 12.2.
BACKGROUND 12.2.1 CROP WATER STRESS AND TTR WAVELENGTHS 12.2.2 CROP
WATER STRESS AND VISIBLE, NIR, SWIR, AND SAR WAVELENGTHS 12.2.3 OPTICAL
PROPERTIES OF PLANT LEAVES 12.2.4 OPTICAL PROPERTIES OF PLANT CANOPIES
12.3. REMOTELY SENSED INFORMATION FOR MANAGEMENT OF IRRIGATED
AGRICULTURE 12.3.1 IRRIGATION AND WATER INFORMATION 12.3.2 NUTRIENT
APPLICATION CONTENTS 12.3.3 WEED SCOUTING AND HERBICIDE APPLICATION
12.3.4 INSECT SCOUTING AND INSECTICIDE APPLICATION 12.3.5 CROP YIELD
12.3.6 SOIL CHARACTERIZATION 12.3.7 NEXT-SEASON PREPARATION 12.4.
CONCLUSIONS 12.5. ACKNOWLEDGMENTS REFERENCES (SEE CD-ROM) C H A P T E R
1 3 : REMOTE SENSING OF THE ENVIRONMENT: STATE OF THE SCIENCE UND EW
DIRECTIONS SUSAN L. USTIN, STEPHANE JACQUEMOUD, PABLO J. ZARCO-TEJADA,
AND GREGORY P. ASNER 13.1. INTRODUCTION 13.2. GLOBAL BIOGEOCHEMICAL
CYCLES 13.2.1 MEASURING AND MONITORING FEEDBACK BETWEEN THE BIOSPHERE
AND THE ATMOSPHERE 13.2.2 LAND COVER CHARACTERIZATION 13.2.3 LAND USE
CONVERSION AND CHANGE 13 .2.4 SUMMARY 13.3. ESTIMATION OF CANOPY
BIOCHEMISTRY 13.3.1 METHODS FOR LEAF BIOCHEMICAL ESTIMATES 13.3.2
SCALING-UP METHODS FOR CANOPY BIOCHEMICAL ESTIMATES 13.3.3 SUMMARY 13.4.
ESTIMATION OF CANOPY BIOPHYSICAL PROPERTIES 13.4.1 ESTIMATING LEAF AREA
INDEX AND NET PRIMARY PRODUCTIVITY 13.4.2 IMPROVEMENT OF LAI AND @AR
ESTIMATIONS BY USING MULTIANGULAR DATA 13.4.3 DERIVATION OF NEW
PARAMETERS 13.4.4 IMAGE VALIDATION 13.4.5 SUMMARY 13 5. CONCLUSIONS
REFERENCES (SEE CD-ROM) INDEX |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
building | Verbundindex |
bvnumber | BV021576637 |
callnumber-first | G - Geography, Anthropology, Recreation |
callnumber-label | G70 |
callnumber-raw | G70.4 |
callnumber-search | G70.4 |
callnumber-sort | G 270.4 |
callnumber-subject | G - General Geography |
ctrlnum | (OCoLC)181348081 (DE-599)BVBBV021576637 |
edition | 3. ed. |
format | Book |
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id | DE-604.BV021576637 |
illustrated | Illustrated |
index_date | 2024-07-02T14:40:21Z |
indexdate | 2024-07-09T20:39:02Z |
institution | BVB |
isbn | 0471317934 |
language | English |
lccn | 2004295308 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014792371 |
oclc_num | 181348081 |
open_access_boolean | |
owner | DE-19 DE-BY-UBM DE-Eb1 |
owner_facet | DE-19 DE-BY-UBM DE-Eb1 |
physical | XXXII, 736 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) |
publishDate | 2004 |
publishDateSearch | 2004 |
publishDateSort | 2004 |
publisher | Wiley |
record_format | marc |
series | Manual of remote sensing |
series2 | Manual of remote sensing |
spelling | Remote sensing for natural resource management and environmental monitoring ed. by Susan L. Ustin 3. ed. Hoboken, NJ Wiley 2004 XXXII, 736 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier Manual of remote sensing 4 "Published in cooperation with the American Society for Photogrammetry and Remote Sensing." -- Accompanying CD-ROM includes color figures, references, and Internet sources. Includes bibliographical references and index System requirements for accompanying CD-ROM: PC; CD-ROM drive; Adobe Acrobat (included). Gestion des ressources naturelles rasuqam Surveillance environnementale rasuqam Télédétection rasuqam Écosystème rasuqam Environmental monitoring Remote sensing Natural resources Management Remote sensing Überwachung (DE-588)4134175-2 gnd rswk-swf Umwelt (DE-588)4061616-2 gnd rswk-swf Fernerkundung (DE-588)4016796-3 gnd rswk-swf Mineralischer Rohstoff (DE-588)4039441-4 gnd rswk-swf Fernerkundung (DE-588)4016796-3 s Mineralischer Rohstoff (DE-588)4039441-4 s Umwelt (DE-588)4061616-2 s Überwachung (DE-588)4134175-2 s DE-188 Ustin, Susan L. Sonstige oth Manual of remote sensing 4 (DE-604)BV012287329 4 http://www.loc.gov/catdir/enhancements/fy0620/2004295308-b.html Contributor biographical information http://www.loc.gov/catdir/enhancements/fy0620/2004295308-d.html Publisher description http://www.loc.gov/catdir/enhancements/fy0620/2004295308-t.html Table of contents OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014792371&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Remote sensing for natural resource management and environmental monitoring Manual of remote sensing Gestion des ressources naturelles rasuqam Surveillance environnementale rasuqam Télédétection rasuqam Écosystème rasuqam Environmental monitoring Remote sensing Natural resources Management Remote sensing Überwachung (DE-588)4134175-2 gnd Umwelt (DE-588)4061616-2 gnd Fernerkundung (DE-588)4016796-3 gnd Mineralischer Rohstoff (DE-588)4039441-4 gnd |
subject_GND | (DE-588)4134175-2 (DE-588)4061616-2 (DE-588)4016796-3 (DE-588)4039441-4 |
title | Remote sensing for natural resource management and environmental monitoring |
title_auth | Remote sensing for natural resource management and environmental monitoring |
title_exact_search | Remote sensing for natural resource management and environmental monitoring |
title_exact_search_txtP | Remote sensing for natural resource management and environmental monitoring |
title_full | Remote sensing for natural resource management and environmental monitoring ed. by Susan L. Ustin |
title_fullStr | Remote sensing for natural resource management and environmental monitoring ed. by Susan L. Ustin |
title_full_unstemmed | Remote sensing for natural resource management and environmental monitoring ed. by Susan L. Ustin |
title_short | Remote sensing for natural resource management and environmental monitoring |
title_sort | remote sensing for natural resource management and environmental monitoring |
topic | Gestion des ressources naturelles rasuqam Surveillance environnementale rasuqam Télédétection rasuqam Écosystème rasuqam Environmental monitoring Remote sensing Natural resources Management Remote sensing Überwachung (DE-588)4134175-2 gnd Umwelt (DE-588)4061616-2 gnd Fernerkundung (DE-588)4016796-3 gnd Mineralischer Rohstoff (DE-588)4039441-4 gnd |
topic_facet | Gestion des ressources naturelles Surveillance environnementale Télédétection Écosystème Environmental monitoring Remote sensing Natural resources Management Remote sensing Überwachung Umwelt Fernerkundung Mineralischer Rohstoff |
url | http://www.loc.gov/catdir/enhancements/fy0620/2004295308-b.html http://www.loc.gov/catdir/enhancements/fy0620/2004295308-d.html http://www.loc.gov/catdir/enhancements/fy0620/2004295308-t.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014792371&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV012287329 |
work_keys_str_mv | AT ustinsusanl remotesensingfornaturalresourcemanagementandenvironmentalmonitoring |