Digital Image Watermarking

but.committeeprof. Ing. Jaromír Brzobohatý, CSc. (předseda) prof. Ing. Miloslav Filka, CSc. (člen) doc. Ing. Vladislav Škorpil, CSc. (člen) doc. Ing. Vít Novotný, Ph.D. (člen)cs
but.defence1) Make clear the format and content of an 8x8 block of DCT coefficients for the example in Fig.18 bottom left.cs
but.jazykangličtina (English)
but.programElectrical, Electronic, Communication and Control Technologycs
but.resultpráce byla úspěšně obhájenacs
dc.contributor.advisorČíka, Petren
dc.contributor.authorAl Zaid, Abdullah Salehen
dc.contributor.refereeŘíha, Kamilen
dc.date.created2009cs
dc.description.abstractThis is the Final Project Report as being composed of an extensive summary of activities and results made by the student Abdullah S. A. Alzaid while undertaking the Watermark Project. This project acquaints an algorithm of digital watermarking which is based on Discrete Cosine Transform(DCT) and Discrete Wavelet Transform(DWT). In accord with the characters of human vision, the main objective of the project is to be focused on developing an image watermarking algorithm by taking advantage of both the DCT and DWT transforms and analysis of the algorithm on the basis of invisibility, distortion and robustness to attacks. The simulation results show that this algorithm is invisible and has good robustness for some common image processing operations. By the use of Matlab software, the two structures have been coded and then implemented.en
dc.description.abstractThis is the Final Project Report as being composed of an extensive summary of activities and results made by the student Abdullah S. A. Alzaid while undertaking the Watermark Project. This project acquaints an algorithm of digital watermarking which is based on Discrete Cosine Transform(DCT) and Discrete Wavelet Transform(DWT). In accord with the characters of human vision, the main objective of the project is to be focused on developing an image watermarking algorithm by taking advantage of both the DCT and DWT transforms and analysis of the algorithm on the basis of invisibility, distortion and robustness to attacks. The simulation results show that this algorithm is invisible and has good robustness for some common image processing operations. By the use of Matlab software, the two structures have been coded and then implemented.cs
dc.description.markAcs
dc.identifier.citationAL ZAID, A. Digital Image Watermarking [online]. Brno: Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií. 2009.cs
dc.identifier.other28327cs
dc.identifier.urihttp://hdl.handle.net/11012/15001
dc.language.isoencs
dc.publisherVysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologiícs
dc.rightsStandardní licenční smlouva - přístup k plnému textu bez omezenícs
dc.subjectwatermarkingen
dc.subjectdiscrete wavelet transformen
dc.subjectdiscrete cosine transformen
dc.subjectwatermarkingcs
dc.subjectdiscrete wavelet transformcs
dc.subjectdiscrete cosine transformcs
dc.titleDigital Image Watermarkingen
dc.title.alternativeDigital Image Watermarkingcs
dc.typeTextcs
dc.type.driverbachelorThesisen
dc.type.evskpbakalářská prácecs
dcterms.dateAccepted2009-12-18cs
dcterms.modified2009-12-23-09:29:22cs
eprints.affiliatedInstitution.facultyFakulta elektrotechniky a komunikačních technologiícs
sync.item.dbid28327en
sync.item.dbtypeZPen
sync.item.insts2025.03.16 13:11:00en
sync.item.modts2025.01.15 22:13:07en
thesis.disciplineTeleinformaticscs
thesis.grantorVysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií. Ústav telekomunikacícs
thesis.levelBakalářskýcs
thesis.nameBc.cs
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