DocumentCode
882540
Title
Frequency-hopping signal detection using partial band coverage
Author
Miller, Laurie E. ; Lee, Joon Sang
Author_Institution
J.S. Lee Associates Inc., Rockville, MD
Volume
29
Issue
2
fYear
1993
fDate
4/1/1993 12:00:00 AM
Firstpage
540
Lastpage
553
Abstract
The performance of a channelized radiometer in detecting a frequency-hopping signal is analyzed for a variable number of parallel radiometers not necessarily covering the entire hopping band. The full band may not be covered because of an attempt to avoid interfering signals, limited radiometer resources, lack of knowledge of the band frequency location, or combinations of these factors. The analysis provides for calculation of the value of the signal-to-noise ratio (SNR) required to achieve a given probability of detection for a specified false-alarm rate, assuming an observation interval equivalent to N hops using either a fixed or a moving observation window. The dependence of the probability of detection on a misalignment of the detector observation intervals with the hop transitions is also analyzed. Numerical results are presented and discussed. Applied to a typical slow-hopping VHF radio, the results imply that a 150-hop transmission can be detected by a channelized radiometer covering half the hopping band when the SNR is about 2 dB
Keywords
frequency agility; radiometers; signal detection; spread spectrum communication; channelized radiometer; false-alarm rate; frequency-hopping signal; misalignment; parallel radiometers; partial band coverage; probability; signal detection; signal-to-noise ratio; slow-hopping VHF radio; Bandwidth; Envelope detectors; Frequency; Maximum likelihood detection; Performance analysis; RF signals; Radiometry; Signal analysis; Signal detection; Signal to noise ratio;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/7.210091
Filename
210091
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