DocumentCode
1184186
Title
The Fine Structure of Television Images
Author
Wheeler, Harold A. ; Loughren, Arthur V.
Author_Institution
Hazeltine Service Corporation, New York, N.Y.
Volume
26
Issue
5
fYear
1938
fDate
5/1/1938 12:00:00 AM
Firstpage
540
Lastpage
575
Abstract
There are described the necessary or preferred relations in the fine structure of television scanning, so chosen as to yield a system which is both theoretically ideal and practically optimum. The relations involve the width and spacing of the lines and the intensity distribution of circular scanning spots in both transmitter and receiver, which are correlated with the filter characteristics and the required width of the frequency band. A "flat" field of scanning, as distinguished from a "half-tone" field, is required at both ends, especially in the transmitter to suppress spurious large patterns otherwise generated in the scanning process. For equal horizontal and vertical "width of confusion," the nominal cutoff frequency of the system is found to be f. = fpN.\´ R/ V2N2 in which fp = frame frequency Ns = number of scanning lines, and R = aspect ratio. The over-all electrical characteristics require distortionless reproduction up to fc and permit a gradual cutoff between fc and 2fc . The "quadratic-sum rule" is derived for a special case and is offered as a generally approximate expression of the image width of confusion w in terms of the width of confusion of the respective individual components (object, optical, scanning, electrical): W = VWi2 + Wo2 + ± wn2. Based on the proposed television system of 30 frames per second, the full utilization of 441 lines requires a separation of 5.5 megacycles between picture and sound carriers. A separation of 4.
Keywords
Cameras; Cutoff frequency; Electric variables; Optical devices; Optical distortion; Optical filters; Optical receivers; Optical transmitters; Radio transmitters; TV;
fLanguage
English
Journal_Title
Radio Engineers, Proceedings of the Institute of
Publisher
ieee
ISSN
0731-5996
Type
jour
DOI
10.1109/JRPROC.1938.228133
Filename
1686651
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