High dynamic range imaging acquisition, display, and image-based lighting

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Sprache:English
Veröffentlicht: San Francisco, Calif. [u.a.] Morgan Kaufmann [u.a.] 2006
Schriftenreihe:The Morgan Kaufmann series in computer graphics
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Datensatz im Suchindex

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adam_text Contents FOREWORD XV PREFACE XVII 01 INTRODUCTION 1 02 LIGHT AND COLOR 19 19 24 28 33 36 48 50 57 69 73 76 03 HDR IMAGE ENCODINGS 85 3.1 LDR Versus HDR Encodings 85 3.2 Applications of HDR Images 87 3.3 HDR Image Formats 89 3.3.1 The HDR Format 91 2.1 Radiometry 2.2 Photometry 2.3 Colorimetry 2.4 Color Spaces 2.5 White Point and Illuminants 2.6 Color Correction 2.7 Color Opponent Spaces 2.8 Color Appearance 2.9 Display Gamma 2.10 Brightness Encoding 2.11 Standard RGB Color Spaces CONTENTS 04 3.3.2 The TIFF Float and LogLuv Formats 93 3.3.3 The OpenEXR Format 97 3.3.4 Other Encodings 98 3.3.5 Emerging Lossy HDR Formats 99 3.4 HDR Encoding Comparison 106 3.5 Conclusions 111 HDR IMAGE CAPTURE 115 4.1 Photography and light Measurement 1 15 4.2 HDR Image Capture from Multiple Exposures 117 4.3 Film Scanning 118 4.4 Image Registration and Alignment 122 4.S The Mean Threshold Bitmap Alignment Technique 123 4.5.1 Threshold Noise 128 4.5.2 Overall Algorithm 131 4.5.3 Efficiency Considerations 134 4.5.4 Results 135 4.6 Deriving the Camera Response Function 136 4.6.1 Debevec and Malik Technique 137 4.6.2 Mitsunaga and Nayar Technique 140 4.6.3 Choosing Image Samples for Response Recovery 142 4.6.4 Caveats and Calibration 143 4.7 Ghost Removal 147 4.8 Lens Flare Removal 152 4.8.1 The Point Spread Function 152 4.8.2 Estimating the PSF 155 4.8.3 Removing the PSF 159 4.9 Direct Capture of HDR Imagery 159 4.9.1 Viper FilmStream 160 4.9.2 SMaL 161 4.9.3 Pixim 162 4.9.4 SpheronVR 163 CONTENTS 4.9.5 Point Grey Research 163 4.10 Conclusions 164 05 DISPLAY DEVICES 167 5. l Hardcopy Devices 16 7 5. l. 1 The Reflection Print 1 68 5.1.2 Transparent Media 17 0 5.1.3 HDR Still Image Viewer 171 5.2 Softcopy Devices 17 6 5.2.1 Cathode-ray Tubes and Liquid Crystal Displays 176 5.2.2 Sunnybrook Technologies HDR Displays 179 5.2.3 Other Display Technologies 182 06 THE HUMAN VISUAL SYSTEM A IM D HDR TONE MAPPING 187 6.1 Tone-mapping Problem 187 6.2 Human Visual Adaptation 191 6.2. 1 The Pupil 193 6.2.2 The Rod and Cone Systems 193 6.2.3 Photo-pigment Depletion and Regeneration 19 6 6.2.4 Photoreceptor Mechanisms 197 6.3 Visual Adaptation Models for HDR Tone Mapping 206 6.3. l Photoreceptor Adaptation Model for Tone Mapping 207 6.3.2 Threshold Versus Intensity Model for Tone Mapping 2 1 0 6.4 Background Intensity in Complex Images 2 11 6.4. 1 Image Average As /ь 2 11 6.4.2 Local Average As /ь 2 1 2 6.4.3 Multiscale Adaptation 215 6.5 Dynamics of Visual Adaptation 219 6.6 Summary 221 07 SPATIAL TONE REPRODUCTION 223 7.1 Preliminaries 224 CONTENTS 7.1.1 Calibration 225 7.1.2 Color Images 228 7.1.3 Homomorphic Filtering 231 7.1.4 Gaussian Blur 233 7.1.5 Validation 235 7.2 Global Operators 237 7.2.1 Miller Brightness-ratio-preserving Operator 237 7.2.2 Tumblin-Rushmeier Brightness-preserving Operator 242 7.2.3 Ward Contrast-based Scale Factor 246 7.2.4 Ferwerda Model of Visual Adaptation 247 7.2.5 Logarithmic and Exponential Mappings 252 7.2.6 Drago Logarithmic Mapping 255 7.2.7 Reinhard and Devlin Photoreceptor Model 258 7.2.8 Ward Histogram Adjustment 266 7.2.9 Schlick Uniform Rational Quantization 273 7.3 Local Operators 277 7.3.1 Chiu Spatially Variant Operator 278 7.3.2 Rahman Retinex 281 7.3.3 Fairchild iCAM 286 7.3.4 Pattanaik Mulüscale Observer Model 292 7.3.5 Ashikhmin Spatially Variant Operator 3 01 7.3.6 Reinhard et al. Photographic Tone Reproduction 305 7.3.7 Pattanaik Adaptive Gain Control 313 7.3.8 Yee Segmentation-based Approach 316 7.4 Summary 323 08 FREQUENCY DOMAIN AND GRADIENT DOMAIN TONE REPRODUCTION 325 8.1 Frequency Domain Operators 325 8.1.1 Oppenheim Frequency-based Operator 326 8.1.2 Durand Bilateral Filtering 333 CONTENTS 8.1.3 Choudhury Trilateral Filtering 340 8.2 Gradient Domain Operators 345 8.2.1 Horn Lightness Computation 346 8.2.2 Fattal Gradient Domain Compression 352 8.3 Performance 357 8.3.1 Local and Global Operators 359 8.3.2 Gradient and Frequency Domain Operators 360 8.4 Discussion 362 09 IMAGE-BASED LIGHTING 367 9.1 Introduction 367 9.2 Basic Image-based Lighting 370 9.2.1 Acquire and Assemble the light Probe Image 370 9.2.2 Model the Geometry and Reflectance of the Scene 372 9.2.3 Map the light Probe to an Emissive Surface Surrounding the Scene 373 9.2.4 Render the Scene as Illuminated by the IBL Environment 374 9.2.5 Postprocess the Renderings 376 9.3 Capturing light Probe Images 381 9.3.1 Photographing a Mirrored Sphere 382 9.3.2 Tiled Photographs 387 9.3.3 Fish-eye Lenses 389 9.3.4 Scanning Panoramic Cameras 390 9.3.5 Capturing Environments with Very Bright Sources 392 9.4 Omnidirectional Image Mappings 401 9.4.1 Ideal Mirrored Sphere 402 9.4.2 Angular Map 404 9.4.3 Latitude-Longitude 405 9.4.4 Cube Map 407 9.5 How a Global Illumination Renderer Computes IBL Images 409 9.5.1 Sampling Other Surface Reflectance Types 414 CONTENTS 9.6 Sampling Incident Illumination Efficiently 416 9.6.1 Identifying light Sources 420 9.6.2 Converting a light Probe into a Constellation of light Sources 428 9.6.3 Importance Sampling 436 9.7 Simulating Shadows and Scene-Object Interreflection 439 9.7.1 Differential Rendering 444 9.7.2 Rendering into a Nondiffuse Local Scene 445 9.8 Useful IBL Approximations 446 9.8.1 Environment Mapping 447 9.8.2 Ambient Occlusion 452 9.9 Image-based lighting for Real Objects and People 454 9.9.1 A Technique for lighting Real Subjects 454 9.9.2 Relighting from Compressed Image Data Sets 456 9.10 Conclusions 461 LIST OF SYMBOLS 463 REFERENCES 467 INDEX 48S ABOUT THE DVD-ROM 497
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discipline Informatik
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indexdate 2024-12-23T19:16:11Z
institution BVB
isbn 0125852630
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language English
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publishDate 2006
publishDateSearch 2006
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publisher Morgan Kaufmann [u.a.]
record_format marc
series2 The Morgan Kaufmann series in computer graphics
spellingShingle High dynamic range imaging acquisition, display, and image-based lighting
Computer vision
Image processing
Optical pattern recognition
Computervision (DE-588)4207417-4 gnd
Mustererkennung (DE-588)4040936-3 gnd
subject_GND (DE-588)4207417-4
(DE-588)4040936-3
title High dynamic range imaging acquisition, display, and image-based lighting
title_auth High dynamic range imaging acquisition, display, and image-based lighting
title_exact_search High dynamic range imaging acquisition, display, and image-based lighting
title_full High dynamic range imaging acquisition, display, and image-based lighting Erik Reinhard ...
title_fullStr High dynamic range imaging acquisition, display, and image-based lighting Erik Reinhard ...
title_full_unstemmed High dynamic range imaging acquisition, display, and image-based lighting Erik Reinhard ...
title_short High dynamic range imaging
title_sort high dynamic range imaging acquisition display and image based lighting
title_sub acquisition, display, and image-based lighting
topic Computer vision
Image processing
Optical pattern recognition
Computervision (DE-588)4207417-4 gnd
Mustererkennung (DE-588)4040936-3 gnd
topic_facet Computer vision
Image processing
Optical pattern recognition
Computervision
Mustererkennung
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014731883&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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