DocumentCode :
1072487
Title :
Programmable vision processor/controller for flexible implementation of current and future image compression standards
Author :
Bailey, Doug ; Cressa, Matthew ; Fandrianto, Jan ; Neubauer, Doug ; Rainnie, Hedley K J ; Wang, Chi-Shin
Author_Institution :
Integrated Inf. Technol., Santa Clara, CA, USA
Volume :
12
Issue :
5
fYear :
1992
Firstpage :
33
Lastpage :
39
Abstract :
The vision processor (VP) and vision controller (VC), two integrated products dedicated to video compression, are discussed. The chips implement the P*64, JPEG, and MPEG image compression standards. The VP forms the heart of the image compression system. It performs discrete cosine transform (DCT), quantization, and motion estimation, as well as inverse DCT, and inverse quantization. The highly parallel and microcode-based processor performs all of the JPEG, MPEG, and P*64 algorithms. The VC smart microcontroller controls the compression process and provides the interface to the host system. It captures pixels from a video source, performs video preprocessing, supervises pixel compression by the VP, performs Huffman encoding, and passes the compressed data to the host over a buffered interface. It takes compressed data from the host, performs coder decoding, supervises decompression via the VP, performs postprocessing, and generates digital pixel output for a video destination such as a monitor.<>
Keywords :
data compression; digital signal processing chips; image coding; programmed control; telecommunication standards; video signals; Huffman encoding; JPEG; MPEG standard; P*64 standard; VC smart microcontroller; buffered interface; coder decoding; decompression; digital pixel output; discrete cosine transform; image compression standards; integrated chips; inverse DCT; inverse quantization; monitor; motion estimation; pixel capture; pixel compression; programmable vision controller; programmable vision processor; standard; video compression; video destination; video preprocessing; video source; Discrete cosine transforms; Heart; Image coding; Microcontrollers; Motion estimation; Process control; Quantization; Transform coding; Video compression; Virtual colonoscopy;
fLanguage :
English
Journal_Title :
Micro, IEEE
Publisher :
ieee
ISSN :
0272-1732
Type :
jour
DOI :
10.1109/40.166711
Filename :
166711
Link To Document :
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