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Contributions to image encryption and authenticationUehara, Takeyuki. January 2003 (has links)
Thesis (Ph.D.)--University of Wollongong, 2003. / Typescript. Bibliographical references: leaf 201-211.
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CMOS image sensor with focal plane SPIHT image compressionLin, Zhiqiang. January 1900 (has links)
Thesis (Ph.D.)--University of Nebraska-Lincoln, 2007. / Title from title screen (site viewed July 22, 2008). PDF text: viii, 127 p. : ill. (some col.) ; 2 Mb. UMI publication number: AAT 3296996. Includes bibliographical references. Also available in microfilm and microfiche formats.
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Region-based three-dimensional wavelet transform coding /Wang, Kaibin, January 1900 (has links)
Thesis (M.App.Sc.) - Carleton University, 2005. / Includes bibliographical references (p. 103-107). Also available in electronic format on the Internet.
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Automatic source camera identification by lens aberration and JPEG compression statisticsChoi, Kai-san. January 2006 (has links)
Thesis (M. Phil.)--University of Hong Kong, 2007. / Title proper from title frame. Also available in printed format.
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Low bit rate visual communication using binary sketches for deaf sign language communication /Moorthy, Manoranjan, January 1998 (has links)
Thesis (M.Eng.)--Memorial University of Newfoundland, 1999. / Bibliography: leaves 134-141.
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VHDL modeling and synthesis of the JPEG-XR inverse transform /Frandina, Peter. January 2009 (has links)
Thesis (M.S.)--Rochester Institute of Technology, 2009. / Typescript. Includes bibliographical references (leaf 45).
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Advanced wavelet image and video coding strategies for multimedia communications /Vass, Jozsef January 2000 (has links)
Thesis (Ph. D.)--University of Missouri-Columbia, 2000. / Typescript. Vita. Includes bibliographical references (leaves 202-221). Also available on the Internet.
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Image compression quality measurement : a comparison of the performance of JPEG and fractal compression on satellite imagesNolte, Ernst Hendrik 04 1900 (has links)
Thesis (MEng)--Stellenbosch University, 2000. / ENGLISH ABSTRACT: The purpose of this thesis is to investigate the nature of digital image compression
and the calculation of the quality of the compressed images. The work is focused on
greyscale images in the domain of satellite images and aerial photographs. Two
compression techniques are studied in detail namely the JPEG and fractal
compression methods. Implementations of both these techniques are then applied to
a set of test images. The rest of this thesis is dedicated to investigating the
measurement of the loss of quality that was introduced by the compression. A
general method for quality measurement (signal To Noise Ratio) is discussed as well
as a technique that was presented in literature quite recently (Grey Block Distance).
Hereafter, a new measure is presented. After this, a means of comparing the
performance of these measures is presented. It was found that the new measure for
image quality estimation performed marginally better than the SNR algorithm. Lastly,
some possible improvements on this technique are mentioned and the validity of the
method used for comparing the quality measures is discussed. / AFRIKAANSE OPSOMMING: Die doel van hierdie tesis is om ondersoek in te stel na die aard van digitale
beeldsamepersing en die berekening van beeldkwaliteit na samepersing. Daar word
gekonsentreer op grysvlak beelde in die spesifieke domein van satellietbeelde en
lugfotos. Twee spesifieke samepersingstegnieke word in diepte ondersoek naamlik
die JPEG en fraktale samepersingsmetodes. Implementasies van beide hierdie
tegnieke word op 'n stel toetsbeelde aangewend. Die res van hierdie tesis word dan
gewy aan die ondersoek van die meting van die kwaliteitsverlies van hierdie
saamgeperste beelde. Daar word gekyk na 'n metode wat in algemene gebruik in die
praktyk is asook na 'n nuwer metode wat onlangs in die literatuur veskyn het. Hierna
word 'n nuwe tegniek bekendgestel. Verder word daar 'n vergelyking van hierdie
mates en 'n ondersoek na die interpretasie van die 'kwaliteit' van hierdie
kwaliteitsmate gedoen. Daar is gevind dat die nuwe maatstaf vir kwaliteit net so goed
en selfs beter werk as die algemene maat vir beeldkwaliteit naamlik die Sein tot Ruis
Verhouding. Laastens word daar moontlike verbeterings op die maatstaf genoem en
daar volg 'n bespreking oor die geldigheid van die metode wat gevolg is om die
kwaliteit van die kwaliteitsmate te bepaal
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Design of a forward error correction algorithm for a satellite modemSefara, Mamphoko Nelly 12 1900 (has links)
Thesis (MScEng)--University of Stellenbosch, 2001. / ENGLISH ABSTRACT: One of the problems with any deep space communication system is that information may
be altered or lost during transmission due to channel noise. It is known that any damage
to the bit stream may lead to objectionable visual quality distortion of images at the
decoder. The purpose of this thesis is to design an error correction and data compression
algorithm for image protection, which will allow the communication bandwidth to be
better utilized. The work focuses on Sunsat (Stellenbosch Satellite) images as test
images. Investigations were done on the JPEG 2000 compression algorithm's robustness
to random errors, putting more emphasis on how much of the image is degraded after
compression. Implementation of both the error control coding and data compression
strategy is then applied to a set of test images. The FEe algorithm combats some if not
all of the simulated random errors introduced by the channel. The results illustrates that
the error correction of random errors is achieved by a factor of 100 times (xl00) on all
test images and that the probability of error of 10-2in the channel (10-4for image data)
shows that the errors causes little degradation on the image quality. / AFRIKAANSE OPSOMMING: Een van die probleme met kommunikasie in die ruimte is dat informasie mag verlore
gaan en! of gekorrupteer word deur ruis gedurende versending deur die kanaal. Dit is
bekend dat enige skade aan die bisstroom mag lei tot hinderlike vervorming van die
beelde wat op aarde ontvang word. Die doel van hierdie tesis om foutkorreksie en
datakompressie te ontwikkel wat die satelliet beelde sal beskerm gedurende versending
en die kommunikasie kanaal se bandwydte beter sal benut. Die werk fokus op SUNSAT
(Stellenbosch Universiteit Satelliet) se beelde as toetsbeelde. Ondersoeke is gedoen na
die JPEG2000 kompressie algoritme se bestandheid teen toevalsfoute, met klem op
hoeveel die beeld gedegradeer word deur die bisfoute wat voorkom. Beide die
kompressie en die foutkorreksie is ge-implementeer en aangewend op die toetsbeelde.
Die foutkorreksie bestry die gesimuleerde toevalsfoute, soos wat dit op die kanaal
voorkom. Die resultate toon dat die foutkorreksie die toevalsfoute met 'n faktor 100
verminder, en dat 'n foutwaarskynlikheid van 10-2 op die kanaal (10-4 op die beelddata)
weinig degradering in die beeldkwaliteit veroorsaak.
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[en] IMAGE COMPRESSION USING WAVELET TRANSFORM AND TRELLIS CODE VECTOR QUANTIZATION WITH ENTROPY CONSTRAINT / [pt] COMPRESSÃO DE IMAGENS USANDO TRANSFORMADA WAVELET E QUANTIZAÇÃO VETORIAL CODIFICADA EM TRELIÇA COM RESTRIÇÃO DE ENTROPIAMARCUS VINICIUS FONSECA DE ARAUJO SILVA 17 July 2006 (has links)
[pt] Essa dissertação apresenta um codificador de imagens para
baixas taxas de bits utilizando a decomposição da imagem
em 10 sub-bandas através da aplicação da transformada
wavelet. Uma técnica de redução de irrelevância visual é
usada para descartar blocos de coeficientes das sub-bandas
de alta freqüência (2 a 10). Os blocos remanescentes são
classificados em bordas e não bordas e codificados através
da técnica ECTCVQ ( Entropy-Constrained Trellis Coded
Vector Quantization). Já a primeira sub-banda é codificada
através da técnica PTCQ( Predictive Trellis Coded
Quantization) com preservação de bordas. Na alocação de
bits entre as sub-bandas é utilizado o algoritmo de
Wersterink et al.
Os resultados obtidos mostram um desempenho muito superior
ao padrão JPEG, e bons resultados quando comparados a
técnica de codificação de imagens recentes. / [en] This dissertation presentes a low bit rate image coder
using a 10 sub-band image decomposition base don the
wavelet transform. Some blocks of coefficients of the high
frequency sub-bands are discarded by a technique of
irrelevancy reduction. The remaning blocks are classified
into edges and non-edges, and coded by ECTCVQ (Entropy-
constrained Trellis Vector Quantization). The fist sub-
band is coded by an edge preserving PTCQ (Predictive
Trellis Coded Quantization), also proposed in this work.
The Westerink et al. algorithm is used to allocate the
bits between the sub-bands.
The results obtained show that the performance of the
proposed coder is
Significantly superior so the one obtained with the
standard JPEG. Moreover, good results are achivied as
compared to recently proposed techniques of images coding.
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