Remote sensing and GIS:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New Delhi [u.a.]
Oxford Univ. Press
2008
|
Ausgabe: | 1. publ. |
Schriftenreihe: | Oxford higher education
Advances in geographic information science |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVIII, 685 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) |
ISBN: | 019569239X 9780195692396 |
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Datensatz im Suchindex
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adam_text | Contents
V
Preface v¿¿¿
Acknowledgements ^a
List of Colour Plates
Parti
Remote Sensing and Image Analysis
3
1. Concept of Remote Sensing
1.1 Introduction 3
1.2 Distance of Remote Sensing 3
1.3 Definition of Remote Sensing 4
1.4 Remote Sensing: Art and/or Science 5
1.5 Data 5
1.6 Remote Sensing Process 7
1.7 Source of Energy 8
1.8 Interaction with Atmosphere 18
1.9 Interaction with Target 22
1.10 Interaction with the Atmosphere Again 26
1.11 Recording of Energy by Sensor 27
1.12 Transmission, Reception, and Processing 28
1.13 Interpretation and Analysis 29
1.14 Applications of Remote Sensing 34
1.15 Advantages of Remote Sensing 35
1.16 Limitations of Remote Sensing 35
1.17 Ideal Remote Sensing System 36
Exercises 37
2. Remote Sensing Platforms and Sensor Characteristics * o
2.1 Introduction 38
2.2 Characteristics of Images 38
2.3 Remote Sensing Platforms 40
2.4 Passive and Active Remote Sensing 42
Contents xi
2.7 Image Referencing System 56
Exercises 63
3. History of Remote Sensing and Indian Space Program 64
3.1 Introduction 64
3.2 The Early Age 65
3.3 The Middle Age 67
3.4 The Modern Age or Space Age 68
3.5 Indian Space Program 73
Exercises 97
4. Photographic Imaging 98
4.1 Introduction 98
4.2 Camera Systems 99
4.3 Filter 104
4.4 Film 107
4.5 Vantage Point 113
4.6 Ideal Time and Atmosphere for Aerial Remote Sensing 116
Exercises 117
5. Digital Imaging 118
5.1 Introduction 118
5.2 Digital Image 119
5.3 Sensor 121
5.4 PAN/Multispectral Imaging 127
5.5 Hyper-spectral Imaging 147
5.6 Imaging by Digital Aerial Cameras 150
5.7 Thermal Imaging 151
5.8 Other Sensors 156
Exercises 163
6. Microwave Remote Sensing 164
6.1 Introduction 164
6.2 Passive Microwave Remote Sensing 164
6.3 Active Microwave Remote Sensing 165
6.4 Radar Imaging 766
6.5 Airborne Versus Space-Borne Radars 178
6.6 Radar Systems 179
6.7 Passive Microwave Radiometer 180
Exercises 182
1. Ground-truth Data and Global Positioning System 183
7.1 Introduction 183
7.2 Requirements of Ground-Truth Data 184
7.3 Instruments for Ground Truthing 185
7.4 Parameters of Ground Truthing 188
xil Contents
7.5 Factors of Spectral Measurement 190
7.6 Global Navigation Satellite System 192
Exercises 212
8. Photogrammetry 214
8.1 Introduction 214
8.2 Development of Photogrammetry 215
8.3 Classification of Photogrammetry 218
8.4 Photogrammetric Process 219
8.5 Acquisition of Imagery and its Support Data 219
8.6 Orientation and Triangulation 233
8.7 Stereo Model Compilation 241
8.8 Sterepscopic 3D Viewing 241
8.9 Stereoscopic Measurement 244
8.10 DTM/DEM Generation 248
8.11 Contour Map Generation 249
8.12 Orthorectification 249
8.13 3D Feature Extraction 251
8.14 3D Scene Modelling 252
8.15 Photogrammetry and LID AR 252
8.16 Radargrammetry 255
8.17 Limitations of Photogrammetry 256
Exercises 256
9. Visual Image Interpretation 258
9.1 Introduction 258
9.2 Information Extraction by Human and Computer 258
9.3 Remote Sensing Data Products 264
9.4 Metadata of Photographic products 265
9.5 Image Interpretation 267
9.6 Elements of Visual Image Interpretation 268
9.7 Interpretation Keys 277
9.8 Generation of Thematic Maps 278
9.9 Thermal Image Interpretation 289
9.10 Radar Image Interpretation 293
Exercises 302
10. Digital Image Processing 303
10.1 Introduction 303
10.2 Categorization of Image Processing 304
10.3 Image Processing Systems 306
10.4 Digital Image 307
10.5 Media for Digital Data Recording, Storage, and Distribution 307
Contents xiii
10.6 Data Formats of Digital Image 308
10.7 Metadata of Digital Image 309
10.8 Display of Digital Image 310
10.9 Pre-processing 311
10.10 Image Enhancement 323
10.11 Image Transformation 340
10.12 Image Classification 353
Exercises 372
11. Data Integration, Analysis, and Presentation 373
11.1 Introduction 373
11.2 Multi-Approach to Image Analysis 374
11.3 Multisensor, Multiplatform, and Multiresolution Images 374
11.4 Multispectral Images 376
11.5 Multitemporal/Multiseasonal Images 377
11.6 Multistage, Multiplatform, Multiscale, and Multiresolution Images 378
11.7 Multisource Data 379
11.8 Integration with GIS 3S0
11.9 Presentation 381
Exercises 381
12. Applications of Remote Sensing 383
12.1 Introduction 383
12.2 Land Cover and Land Use 383
12.3 Agriculture 389
12.4 Forestry 392
12.5 Geology 59S
12.6 Geomorphology 407
12.7 Hydrology 403
12.8 Mapping 406
12.9 Oceans and Coastal Monitoring 410
12.10 Monitoring of Atmospheric Constituents 420
Exercises 421
Partn
Geographic Information Systems and Geospatial Analysis
13. Concept of Geographic Information Systems 425
13.1 Introduction 425
13.2 Definitions of GIS 427
13.3 Key Components of GIS 428
13.4 GIS—An Integration of Spatial and Attribute Information 430
13.5 GIS—Three Views of Information System 431
13.6 GIS—A Knowledge Hub 432
xlv Contents
13.7 GIS—A Set of Interrelated Subsystems 437
13.8 GIS—An Information Infrastructure 438
13.9 Origin of GIS 440
Exercises 442
14. Functions and Advantages of GIS 443
14.1 Introduction 443
A2 Functions of GIS 443
14.3 Application Areas of GIS 444
14.4 Advantages of GIS 447
14.5 Uses of GIS 452
14.6 Limitations of GIS 454
Exercises 454
15. Spatial Data Model 455
15.1 Introduction 455
15.2 Spatial, Thematic, and Temporal Dimensions of Geographic Data 455
15.3 Spatial Entity 456
15.4 Spatial Data Model 457
15.5 File Formats of Spatial Data 474
Exercises 476
16. Attribute Data Management and Metadata Concept 477
16.1 Introduction 477
16.2 Concept of Database and DBMS 477
16.3 Advantages of DBMS 481
16.4 Functions of DBMS 481
16.5 File and Data Access 482
16.6 Data Models 484
16.7 Data Models in GIS 488
16.8 Concept of SQL 490
16.9 Concept of Metadata 490
Exercises 496
17. Process of GIS 498
17.1 Introduction 498
17.2 Data Capture 498
17.3 Data Sources 499
17.4 Data Encoding Methods 501
17.5 Linking of Spatial and Attribute Data 577
17.6 Organizing Data for Analysis 518
Exercises 519
18. Geospatial Analysis 520
18.1 Introduction 520
Contents xv
18.2 Geospatial Data Analysis 520
18.3 Integration and Modelling of Spatial Data 521
18.4 Geospatial Data Analysis Methods 521
18.5 Database Query 522
18.6 Geospatial Measurements 526
18.7 Overlay Operations 528
18.8 Network Analysis 531
18.9 Surface Analysis 533
18.10 Geovisualization 538
Exercises 549
19. Planning, Implementation, and Management of GIS 551
19.1 Introduction 551
19.2 Planning of Project 551
19.3 Implementation of Project 556
19.4 Management of Project 558
19.5 Keys for Successful GIS 560
19.6 Reasons for Unsuccessful GIS 562
Exercises 562
20. Modern Trends of GIS 563
20.1 Introduction 563
20.2 Local to Global Concept in GIS 564
20.3 Increase in Dimensions in GIS 564
20 .4 Linear to Non-linear Techniques in GIS 564
20.5 Development in Relation between Geometry and Algebra in GIS 565
20.6 Development of Common Techniques in GIS 565
20.7 Integration of GIS and Remote Sensing 566
20.8 Integration of GIS and Multimedia 566
20.9 3D GIS 572
20.10 Integration of 3D GIS and Web GIS 575
20.11 4D GIS and Real-time GIS 577
20.12 Mobile GIS 578
20.13 Collaborative GIS (CGIS) 587
Exercises 582
Appendix A Concept of Map, Coordinate Systems, and Projection 583
Appendix B Concept on Mathematical Topics 604
Acronyms and Glossary 629
Bibliography 669
Index 676
|
adam_txt |
Contents
V
Preface v¿¿¿
Acknowledgements ^a
List of Colour Plates
Parti
Remote Sensing and Image Analysis
3
1. Concept of Remote Sensing
1.1 Introduction 3
1.2 Distance of Remote Sensing 3
1.3 Definition of Remote Sensing 4
1.4 Remote Sensing: Art and/or Science 5
1.5 Data 5
1.6 Remote Sensing Process 7
1.7 Source of Energy 8
1.8 Interaction with Atmosphere 18
1.9 Interaction with Target 22
1.10 Interaction with the Atmosphere Again 26
1.11 Recording of Energy by Sensor 27
1.12 Transmission, Reception, and Processing 28
1.13 Interpretation and Analysis 29
1.14 Applications of Remote Sensing 34
1.15 Advantages of Remote Sensing 35
1.16 Limitations of Remote Sensing 35
1.17 Ideal Remote Sensing System 36
Exercises 37
2. Remote Sensing Platforms and Sensor Characteristics * o
2.1 Introduction 38
2.2 Characteristics of Images 38
2.3 Remote Sensing Platforms 40
2.4 Passive and Active Remote Sensing 42
Contents xi
2.7 Image Referencing System 56
Exercises 63
3. History of Remote Sensing and Indian Space Program 64
3.1 Introduction 64
3.2 The Early Age 65
3.3 The Middle Age 67
3.4 The Modern Age or Space Age 68
3.5 Indian Space Program 73
Exercises 97
4. Photographic Imaging 98
4.1 Introduction 98
4.2 Camera Systems 99
4.3 Filter 104
4.4 Film 107
4.5 Vantage Point 113
4.6 Ideal Time and Atmosphere for Aerial Remote Sensing 116
Exercises 117
5. Digital Imaging 118
5.1 Introduction 118
5.2 Digital Image 119
5.3 Sensor 121
5.4 PAN/Multispectral Imaging 127
5.5 Hyper-spectral Imaging 147
5.6 Imaging by Digital Aerial Cameras 150
5.7 Thermal Imaging 151
5.8 Other Sensors 156
Exercises 163
6. Microwave Remote Sensing 164
6.1 Introduction 164
6.2 Passive Microwave Remote Sensing 164
6.3 Active Microwave Remote Sensing 165
6.4 Radar Imaging 766
6.5 Airborne Versus Space-Borne Radars 178
6.6 Radar Systems 179
6.7 Passive Microwave Radiometer 180
Exercises 182
1. Ground-truth Data and Global Positioning System 183
7.1 Introduction 183
7.2 Requirements of Ground-Truth Data 184
7.3 Instruments for Ground Truthing 185
7.4 Parameters of Ground Truthing 188
xil Contents
7.5 Factors of Spectral Measurement 190
7.6 Global Navigation Satellite System 192
Exercises 212
8. Photogrammetry 214
8.1 Introduction 214
8.2 Development of Photogrammetry 215
8.3 Classification of Photogrammetry 218
8.4 Photogrammetric Process 219
8.5 Acquisition of Imagery and its Support Data 219
8.6 Orientation and Triangulation 233
8.7 Stereo Model Compilation 241
8.8 Sterepscopic 3D Viewing 241
8.9 Stereoscopic Measurement 244
8.10 DTM/DEM Generation 248
8.11 Contour Map Generation 249
8.12 Orthorectification 249
8.13 3D Feature Extraction 251
8.14 3D Scene Modelling 252
8.15 Photogrammetry and LID AR 252
8.16 Radargrammetry 255
8.17 Limitations of Photogrammetry 256
Exercises 256
9. Visual Image Interpretation 258
9.1 Introduction 258
9.2 Information Extraction by Human and Computer 258
9.3 Remote Sensing Data Products 264
9.4 Metadata of Photographic products 265
9.5 Image Interpretation 267
9.6 Elements of Visual Image Interpretation 268
9.7 Interpretation Keys 277
9.8 Generation of Thematic Maps 278
9.9 Thermal Image Interpretation 289
9.10 Radar Image Interpretation 293
Exercises 302
10. Digital Image Processing 303
10.1 Introduction 303
10.2 Categorization of Image Processing 304
10.3 Image Processing Systems 306
10.4 Digital Image 307
10.5 Media for Digital Data Recording, Storage, and Distribution 307
Contents xiii
10.6 Data Formats of Digital Image 308
10.7 Metadata of Digital Image 309
10.8 Display of Digital Image 310
10.9 Pre-processing 311
10.10 Image Enhancement 323
10.11 Image Transformation 340
10.12 Image Classification 353
Exercises 372
11. Data Integration, Analysis, and Presentation 373
11.1 Introduction 373
11.2 Multi-Approach to Image Analysis 374
11.3 Multisensor, Multiplatform, and Multiresolution Images 374
11.4 Multispectral Images 376
11.5 Multitemporal/Multiseasonal Images 377
11.6 Multistage, Multiplatform, Multiscale, and Multiresolution Images 378
11.7 Multisource Data 379
11.8 Integration with GIS 3S0
11.9 Presentation 381
Exercises 381
12. Applications of Remote Sensing 383
12.1 Introduction 383
12.2 Land Cover and Land Use 383
12.3 Agriculture 389
12.4 Forestry 392
12.5 Geology 59S
12.6 Geomorphology 407
12.7 Hydrology 403
12.8 Mapping 406
12.9 Oceans and Coastal Monitoring 410
12.10 Monitoring of Atmospheric Constituents 420
Exercises 421
Partn
Geographic Information Systems and Geospatial Analysis
13. Concept of Geographic Information Systems 425
13.1 Introduction 425
13.2 Definitions of GIS 427
13.3 Key Components of GIS 428
13.4 GIS—An Integration of Spatial and Attribute Information 430
13.5 GIS—Three Views of Information System 431
13.6 GIS—A Knowledge Hub 432
xlv Contents
13.7 GIS—A Set of Interrelated Subsystems 437
13.8 GIS—An Information Infrastructure 438
13.9 Origin of GIS 440
Exercises 442
14. Functions and Advantages of GIS 443
14.1 Introduction 443
\A2 Functions of GIS 443
14.3 Application Areas of GIS 444
14.4 Advantages of GIS 447
14.5 Uses of GIS 452
14.6 Limitations of GIS 454
Exercises 454
15. Spatial Data Model 455
15.1 Introduction 455
15.2 Spatial, Thematic, and Temporal Dimensions of Geographic Data 455
15.3 Spatial Entity 456
15.4 Spatial Data Model 457
15.5 File Formats of Spatial Data 474
Exercises 476
16. Attribute Data Management and Metadata Concept 477
16.1 Introduction 477
16.2 Concept of Database and DBMS 477
16.3 Advantages of DBMS 481
16.4 Functions of DBMS 481
16.5 File and Data Access 482
16.6 Data Models 484
16.7 Data Models in GIS 488
16.8 Concept of SQL 490
16.9 Concept of Metadata 490
Exercises 496
17. Process of GIS 498
17.1 Introduction 498
17.2 Data Capture 498
17.3 Data Sources 499
17.4 Data Encoding Methods 501
17.5 Linking of Spatial and Attribute Data 577
17.6 Organizing Data for Analysis 518
Exercises 519
18. Geospatial Analysis 520
18.1 Introduction 520
Contents xv
18.2 Geospatial Data Analysis 520
18.3 Integration and Modelling of Spatial Data 521
18.4 Geospatial Data Analysis Methods 521
18.5 Database Query 522
18.6 Geospatial Measurements 526
18.7 Overlay Operations 528
18.8 Network Analysis 531
18.9 Surface Analysis 533
18.10 Geovisualization 538
Exercises 549
19. Planning, Implementation, and Management of GIS 551
19.1 Introduction 551
19.2 Planning of Project 551
19.3 Implementation of Project 556
19.4 Management of Project 558
19.5 Keys for Successful GIS 560
19.6 Reasons for Unsuccessful GIS 562
Exercises 562
20. Modern Trends of GIS 563
20.1 Introduction 563
20.2 Local to Global Concept in GIS 564
20.3 Increase in Dimensions in GIS 564
20 .4 Linear to Non-linear Techniques in GIS 564
20.5 Development in Relation between Geometry and Algebra in GIS 565
20.6 Development of Common Techniques in GIS 565
20.7 Integration of GIS and Remote Sensing 566
20.8 Integration of GIS and Multimedia 566
20.9 3D GIS 572
20.10 Integration of 3D GIS and Web GIS 575
20.11 4D GIS and Real-time GIS 577
20.12 Mobile GIS 578
20.13 Collaborative GIS (CGIS) 587
Exercises 582
Appendix A Concept of Map, Coordinate Systems, and Projection 583
Appendix B Concept on Mathematical Topics 604
Acronyms and Glossary 629
Bibliography 669
Index 676 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Bhatta, Basudeb |
author_facet | Bhatta, Basudeb |
author_role | aut |
author_sort | Bhatta, Basudeb |
author_variant | b b bb |
building | Verbundindex |
bvnumber | BV023113268 |
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 |
classification_rvk | RB 10104 RB 10232 |
classification_tum | GEO 007f |
ctrlnum | (OCoLC)181068351 (DE-599)HBZHT015414643 |
dewey-full | 910.285 |
dewey-hundreds | 900 - History & geography |
dewey-ones | 910 - Geography and travel |
dewey-raw | 910.285 |
dewey-search | 910.285 |
dewey-sort | 3910.285 |
dewey-tens | 910 - Geography and travel |
discipline | Geowissenschaften Geographie |
discipline_str_mv | Geowissenschaften Geographie |
edition | 1. publ. |
format | Book |
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id | DE-604.BV023113268 |
illustrated | Illustrated |
index_date | 2024-07-02T19:49:03Z |
indexdate | 2024-07-09T21:11:20Z |
institution | BVB |
isbn | 019569239X 9780195692396 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016315826 |
oclc_num | 181068351 |
open_access_boolean | |
owner | DE-29 DE-M49 DE-BY-TUM DE-11 |
owner_facet | DE-29 DE-M49 DE-BY-TUM DE-11 |
physical | XVIII, 685 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Oxford Univ. Press |
record_format | marc |
series2 | Oxford higher education Advances in geographic information science |
spelling | Bhatta, Basudeb Verfasser aut Remote sensing and GIS B. Bhatta 1. publ. New Delhi [u.a.] Oxford Univ. Press 2008 XVIII, 685 S. Ill., graph. Darst., Kt. 1 CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier Oxford higher education Advances in geographic information science Remote sensing Geographic information systems Geoinformationssystem (DE-588)4261642-6 gnd rswk-swf Fernerkundung (DE-588)4016796-3 gnd rswk-swf Fernerkundung (DE-588)4016796-3 s Geoinformationssystem (DE-588)4261642-6 s DE-604 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016315826&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Bhatta, Basudeb Remote sensing and GIS Remote sensing Geographic information systems Geoinformationssystem (DE-588)4261642-6 gnd Fernerkundung (DE-588)4016796-3 gnd |
subject_GND | (DE-588)4261642-6 (DE-588)4016796-3 |
title | Remote sensing and GIS |
title_auth | Remote sensing and GIS |
title_exact_search | Remote sensing and GIS |
title_exact_search_txtP | Remote sensing and GIS |
title_full | Remote sensing and GIS B. Bhatta |
title_fullStr | Remote sensing and GIS B. Bhatta |
title_full_unstemmed | Remote sensing and GIS B. Bhatta |
title_short | Remote sensing and GIS |
title_sort | remote sensing and gis |
topic | Remote sensing Geographic information systems Geoinformationssystem (DE-588)4261642-6 gnd Fernerkundung (DE-588)4016796-3 gnd |
topic_facet | Remote sensing Geographic information systems Geoinformationssystem Fernerkundung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016315826&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT bhattabasudeb remotesensingandgis |