DocumentCode
753412
Title
A 32 Mbit/s Component Separation DPCM Coding System for NTSC Color TV
Author
Sawada, Katsutoshi ; Kotera, Hiroshi
Author_Institution
Nippon Telegraph and Telephone Public Corp.,Tokyo, Japan
Volume
26
Issue
4
fYear
1978
fDate
4/1/1978 12:00:00 AM
Firstpage
458
Lastpage
465
Abstract
A component separation DPCM Coding system is described which is capable of transmitting a 4 MHz NTSC color TV signal with broadcast quality at a 32.064 Mbit/s rate. The input NTSC color TV signal is first separated into a luminance component
and two chrominance components
and
. Then, these three components are converted into a TDM-PCM color signal, where
and
of only odd lines are transmitted and samples in horizontal blanking intervals of
and
are removed, in order to reduce the transmission rate. This TDM-PCM signal is encoded by a single DPCM coder, which employs a two-dimensional prediction method and a dual word-length coding method. For the
signal, 4 bit and 8 bit code words are assigned to 29 quantizing levels. For both
and
signals, 3 bit and 6 bit code words are assigned to 13 quantizing levels. Coding experiment results show that this coding system is promising for application to broadcast color TV signal transmission at a 32.064 Mbit/s rate.
and two chrominance components
and
. Then, these three components are converted into a TDM-PCM color signal, where
and
of only odd lines are transmitted and samples in horizontal blanking intervals of
and
are removed, in order to reduce the transmission rate. This TDM-PCM signal is encoded by a single DPCM coder, which employs a two-dimensional prediction method and a dual word-length coding method. For the
signal, 4 bit and 8 bit code words are assigned to 29 quantizing levels. For both
and
signals, 3 bit and 6 bit code words are assigned to 13 quantizing levels. Coding experiment results show that this coding system is promising for application to broadcast color TV signal transmission at a 32.064 Mbit/s rate.Keywords
DPCM coding/decoding; Image coding; Amorphous materials; Cryogenics; Dielectric losses; Electromagnetic heating; Electromagnetic wave absorption; Polymers; Solids; Superconducting microwave devices; Superconducting photodetectors; TV;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOM.1978.1094086
Filename
1094086
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