0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Still Image Compression on Parallel Computer Architectures (Hardcover, 1999 ed.): Savitri Bevinakoppa Still Image Compression on Parallel Computer Architectures (Hardcover, 1999 ed.)
Savitri Bevinakoppa
R4,130 Discovery Miles 41 300 Ships in 18 - 22 working days

Still Image Compression on Parallel Computer Architectures investigates the application of parallel-processing techniques to digital image compression. Digital image compression is used to reduce the number of bits required to store an image in computer memory and/or transmit it over a communication link. Over the past decade advancements in technology have spawned many applications of digital imaging, such as photo videotex, desktop publishing, graphics arts, color facsimile, newspaper wire phototransmission and medical imaging. For many other contemporary applications, such as distributed multimedia systems, rapid transmission of images is necessary. Dollar cost as well as time cost of transmission and storage tend to be directly proportional to the volume of data. Therefore, application of digital image compression techniques becomes necessary to minimize costs. A number of digital image compression algorithms have been developed and standardized. With the success of these algorithms, research effort is now directed towards improving implementation techniques. The Joint Photographic Experts Group (JPEG) and Motion Photographic Experts Group(MPEG) are international organizations which have developed digital image compression standards. Hardware (VLSI chips) which implement the JPEG image compression algorithm are available. Such hardware is specific to image compression only and cannot be used for other image processing applications. A flexible means of implementing digital image compression algorithms is still required. An obvious method of processing different imaging applications on general purpose hardware platforms is to develop software implementations. JPEG uses an 8 A- 8 blockof image samples as the basic element for compression. These blocks are processed sequentially. There is always the possibility of having similar blocks in a given image. If similar blocks in an image are located, then repeated compression of these blocks is not necessary. By locating similar blocks in the image, the speed of compression can be increased and the size of the compressed image can be reduced. Based on this concept an enhancement to the JPEG algorithm is proposed, called Bock Comparator Technique (BCT). Still Image Compression on Parallel Computer Architectures is designed for advanced students and practitioners of computer science. This comprehensive reference provides a foundation for understanding digital image compression techniques and parallel computer architectures.

Still Image Compression on Parallel Computer Architectures (Paperback, Softcover reprint of the original 1st ed. 1999): Savitri... Still Image Compression on Parallel Computer Architectures (Paperback, Softcover reprint of the original 1st ed. 1999)
Savitri Bevinakoppa
R3,995 Discovery Miles 39 950 Ships in 18 - 22 working days

Still Image Compression on Parallel Computer Architectures investigates the application of parallel-processing techniques to digital image compression. Digital image compression is used to reduce the number of bits required to store an image in computer memory and/or transmit it over a communication link. Over the past decade advancements in technology have spawned many applications of digital imaging, such as photo videotex, desktop publishing, graphics arts, color facsimile, newspaper wire phototransmission and medical imaging. For many other contemporary applications, such as distributed multimedia systems, rapid transmission of images is necessary. Dollar cost as well as time cost of transmission and storage tend to be directly proportional to the volume of data. Therefore, application of digital image compression techniques becomes necessary to minimize costs. A number of digital image compression algorithms have been developed and standardized. With the success of these algorithms, research effort is now directed towards improving implementation techniques. The Joint Photographic Experts Group (JPEG) and Motion Photographic Experts Group(MPEG) are international organizations which have developed digital image compression standards. Hardware (VLSI chips) which implement the JPEG image compression algorithm are available. Such hardware is specific to image compression only and cannot be used for other image processing applications. A flexible means of implementing digital image compression algorithms is still required. An obvious method of processing different imaging applications on general purpose hardware platforms is to develop software implementations. JPEG uses an 8 x 8 block of image samples as the basic element for compression. These blocks are processed sequentially. There is always the possibility of having similar blocks in a given image. If similar blocks in an image are located, then repeated compression of these blocks is not necessary. By locating similar blocks in the image, the speed of compression can be increased and the size of the compressed image can be reduced. Based on this concept an enhancement to the JPEG algorithm is proposed, called Bock Comparator Technique (BCT). Still Image Compression on Parallel Computer Architectures is designed for advanced students and practitioners of computer science. This comprehensive reference provides a foundation for understanding digital image compression techniques and parallel computer architectures.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Organizational Integration of Enterprise…
Joao Varajao, Maria Manuela Cruz Cunha, … Hardcover R4,757 Discovery Miles 47 570
A Practical Approach to Water…
Mohan Seneviratne Hardcover R2,101 Discovery Miles 21 010
Handbook of HydroInformatics - Volume…
Saeid Eslamian, Faezeh Eslamian Paperback R3,507 Discovery Miles 35 070
Advances in Statistical Control…
Chang-Hee Won, Cheryl B. Schrader, … Hardcover R2,855 Discovery Miles 28 550
Becoming
Michelle Obama Hardcover  (6)
R729 R635 Discovery Miles 6 350
Cool Chords
James Sleigh Cards R130 Discovery Miles 1 300
The Man Who Shook Mountains - In The…
Lesley Mofokeng Paperback R469 Discovery Miles 4 690
Suzuki Violin School 3
Shinichi Suzuki Paperback R326 Discovery Miles 3 260
Schneider Office Set - Carded (4 Piece)
R60 Discovery Miles 600
Multiple Dirichlet Series, L-functions…
Daniel Bump, Solomon Friedberg, … Hardcover R2,707 Discovery Miles 27 070

 

Partners