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Digital Watermarking Techniques in Curvelet and Ridgelet Domain 1st ed. 2016 [Pehme köide]

  • Formaat: Paperback / softback, 92 pages, kõrgus x laius: 235x155 mm, kaal: 1825 g, 32 Illustrations, color; 47 Illustrations, black and white; XVIII, 92 p. 79 illus., 32 illus. in color., 1 Paperback / softback
  • Sari: SpringerBriefs in Computer Science
  • Ilmumisaeg: 27-May-2016
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319329502
  • ISBN-13: 9783319329505
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  • Formaat: Paperback / softback, 92 pages, kõrgus x laius: 235x155 mm, kaal: 1825 g, 32 Illustrations, color; 47 Illustrations, black and white; XVIII, 92 p. 79 illus., 32 illus. in color., 1 Paperback / softback
  • Sari: SpringerBriefs in Computer Science
  • Ilmumisaeg: 27-May-2016
  • Kirjastus: Springer International Publishing AG
  • ISBN-10: 3319329502
  • ISBN-13: 9783319329505
This book describes the design, development, and testing of a novel digital watermarking technique for color images using Magic Square and Ridgelet transforms. The novel feature of the method is that it generates and uses multiple copies of the digital watermark. The book describes how the method was tested for embedding digital watermarks into color cover images, resulting in very high PSNR value and yielding comparable results with existing watermarking techniques. To reach this new method, eight different techniques are designed, developed and tested. First, the authors test two digital watermarking techniques based on encryption: Image Watermark Using Complete Complementary Code Technique (CCCT) and Image Watermarking Using CCC-Fast Walsh Hadamard Transform Technique (CCC-FWHTT). Next, four digital watermarking techniques based on curvelet transforms are discussed: Image Watermarking Using Curvelet Transform (WCT), Watermark Wavelets in Curvelets of Cover Image (WWCT), Resized

Watermark into Curvelets of Cover Image (RWCT), and Resized Watermark Wavelets into Curvelets of Cover Image (RWWCT). Then, two final techniques are presented: Image Watermarking Based on Magic Square (MST) and Image watermarking based on Magic Square and Ridgelet Transform (MSRTT). Future research directions are explored in the final chapter. Designed for professionals and researchers in computer graphics and imaging, Digital Watermarking Techniques in Curvelet and Ridgelet Domain is also a useful tool for advanced-level students. 

Introduction.- Color Image Watermarking Using Magic Square and Curvelet Based Technique.- Color Still Image Watermarking Using Magic Square and Ridgelet Based Technique.- Color Image Watermarking Using Fractals and Curvelets.- Conclusions and Future Scope.
1 Introduction
1(26)
1.1 Introduction
1(1)
1.2 Background
2(1)
1.2.1 Paper Watermark
2(1)
1.2.2 Digital Watermark: Definition
3(1)
1.2.3 Digital Watermarking
3(1)
1.3 Digital Watermarking Process Life Cycle
3(3)
1.3.1 Watermark Embedding
4(1)
1.3.2 Watermark Extraction
4(1)
1.3.3 Watermark Attacks
5(1)
1.4 Digital Watermarking Properties
6(1)
1.5 Digital Watermarking Applications
7(1)
1.6 Classification of Digital Watermarking Techniques
7(10)
1.6.1 Based on Working Domain
7(9)
1.6.2 Based on Type of Document
16(1)
1.6.3 Based on Human Perception
16(1)
1.6.4 Based on Application Areas
17(1)
1.7 Contemporary Problems in Digital Watermarking
17(1)
1.8 Benchmarking in Digital Watermarking and Performance Evaluation
17(2)
1.8.1 Pixel Based Metrics
18(1)
1.8.2 Perceptual Quality Metrics
19(1)
1.8.3 Structure Based Metrics
19(1)
1.9 Constitutions of Digital Rights Management
19(1)
1.10 Summary
19(8)
References
19(8)
2 Color Image Watermarking Techniques Based on Magic Square and Curvelets
27(32)
2.1 Introduction
27(2)
2.1.1 Magic Square Technique
28(1)
2.2 Image Watermarking Using Curvelet Transform
29(12)
2.2.1 Technique to Insert Watermark in Curvelets of Cover Image (WCT)
29(3)
2.2.2 Technique to Insert Watermark Wavelets in Curvelets of Cover Image (WWCT)
32(9)
2.3 Image Watermarking Using Magic Square and Curvelet Transform
41(15)
2.3.1 Magic Square
41(1)
2.3.2 Technique to Insert Resized Watermark into Curvelets of Cover Image (RWCT)
42(7)
2.3.3 Technique to Insert Resized Watermark Wavelets into Curvelets of Cover Image (RWWCT)
49(7)
2.4 Summary
56(3)
References
57(2)
3 Color Image Watermarking Techniques Based on Magic Square and Ridgelets
59(16)
3.1 Introduction
59(1)
3.2 Image Watermarking Based on Magic Square (MST)
60(6)
3.2.1 Digital Watermark Embedding Procedure
60(1)
3.2.2 Digital Watermark Extraction Procedure
61(1)
3.2.3 Experimental Results
61(5)
3.3 Image Watermarking Based on the Magic Square and Ridgelet Transform (MSRTT)
66(7)
3.3.1 Digital Watermark Embedding Procedure
67(1)
3.3.2 Digital Watermark Extraction Procedure
68(1)
3.3.3 Experimental Results
68(5)
3.4 Summary
73(2)
References
74(1)
4 Digital Watermarking Using Fractals
75(16)
4.1 Introduction
75(2)
4.2 Digital Image Watermarking Using Fractals
77(5)
4.2.1 Digital Watermark Embedding Procedure
77(2)
4.2.2 Digital Watermark Extraction Procedure
79(1)
4.2.3 Experimental Results
80(2)
4.3 Digital Image Watermarking Based on Fractals and Curvelets
82(5)
4.3.1 Digital Watermark Embedding Procedure
82(1)
4.3.2 Digital Watermark Extraction Procedure
83(1)
4.3.3 Experimental Results
83(4)
4.4 Summary
87(4)
References
87(4)
5 Conclusions and Future Scope
91
5.1 Conclusions and Limitations
91(1)
5.2 Future Scope
92