DocumentCode
1147420
Title
Range Resolution of Targets
Author
Trunk, G.V.
Author_Institution
Naval Research Laboratory
Issue
6
fYear
1984
Firstpage
789
Lastpage
797
Abstract
The problem of resolving targets in range is formulated as a hypothesis-testing problem. A generalized likelihood approach is developed and very good results are obtained, e. g., targets separated by more than a pulsewidth can almost always be resolved, Specifically, simulations showed that when using a sampling rate of 1.5 samples per pulsewidth, two 20 dB nonfluctuating targets can be resolved at a resolution probability of 0.9 and at a false-alarm probability of 0.01 at separations varying between ¿ and ¿ of a pulsewidth, depending on the relative phase difference between the targets. The effect of increasing the sampling rate was investigated and it appears that there is only marginal benefit in increasing the sampling rate beyond 1.5 samples per pulsewidth. Finally, the generalized likelihood approach was compared to several easily implemented adhoc approaches and an adhoc approach involving fitting a pulse shape to the data is only slightly (approximately 10%) less accurate than the likelihood approach.
Keywords
Aerospace testing; Hydrogen; Performance evaluation; Phase detection; Phase frequency detector; Pulse shaping methods; Sampling methods; Shape; Signal resolution; Space vector pulse width modulation;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.1984.310462
Filename
4103985
Link To Document