DocumentCode :
1034341
Title :
A simple and versatile phase comparison method can accurately measure long term instability
Author :
Ambrosini, R. ; Caporaloni, M.
Author_Institution :
Istituto di Radioastron., CNR, Bologna, Italy
Volume :
37
Issue :
1
fYear :
1988
fDate :
3/1/1988 12:00:00 AM
Firstpage :
127
Lastpage :
132
Abstract :
Accurate long-term phase noise measurements are performed by a mixer, a personal computer, and a general-purpose interface. When absolute noise has to be characterized, it is possible to have measuring sessions virtually infinite in time, utilizing a simple discrete phase shifter realized by switching three coaxial cables of different lengths. Accurate phase retrievement is accomplished by antitransforming the ideal sinusoidal transfer function of the mixer, while its higher spurious responses are minimized by a careful optimization of its operating parameters. This configuration has been successfully used to estimate the Allan variances from 1 s up to 100000 s of the phase comparison of two H-maser atomic standards, for almost nine days, without the need of any frequency offset between the two sources, which were used at the same time as timekeepers. A computer simulation is also presented to predict a priori the level of inaccuracy determined by the higher-order mixer nonlinearities and the final effect of each experimental parameter
Keywords :
atomic clocks; computerised instrumentation; digital instrumentation; electric noise measurement; measurement standards; microcomputer applications; mixers (circuits); phase measurement; phase shifters; 1 to 100000 s; Allan variances; H; H-maser atomic standards; coaxial cables; computer simulation; discrete phase shifter; general-purpose interface; long term instability; mixer; nonlinearities; optimization; personal computer; phase comparison; phase noise measurements; sinusoidal transfer function; Coaxial cables; Frequency estimation; Length measurement; Microcomputers; Noise measurement; Performance evaluation; Phase measurement; Phase noise; Phase shifters; Time measurement;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/19.2680
Filename :
2680
Link To Document :
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