Analysis of Low Probability of Intercept Radar Signals Using the Reassignment Method

In this study, the reassignment method, because of its ability to smooth out cross-term interference and improve time-frequency localization, is proposed as an improved signal analysis technique to address these deficiencies. Simulations are presented that compare time-frequency representations of t...

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Veröffentlicht in:American journal of engineering and applied sciences 2015-01, Vol.8 (1), p.26-47
Hauptverfasser: Stevens, Daniel L., Schuckers, Stephanie A.
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description In this study, the reassignment method, because of its ability to smooth out cross-term interference and improve time-frequency localization, is proposed as an improved signal analysis technique to address these deficiencies. Simulations are presented that compare time-frequency representations of the classical time-frequency techniques with those of the reassignment method. Four different low probability of intercept waveforms are analyzed (two frequency modulated continuous wave waveforms and two frequency shift keying waveforms). The following metrics are used for analysis evaluation: Percent detection, number of cross-term false positives, lowest signal-to-noise ratio for signal detection, processing time, percent error of carrier frequency, modulation bandwidth, modulation period, time-frequency localization (x and y direction) and chirp rate. Experimental results demonstrate that the 'squeezing' and 'smoothing' qualities of the reassignment method improve readability over the classical time-frequency analysis techniques and consequently, provide more accurate signal detection and parameter extraction in all but one of the metrics categories.
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subjects Carrier frequencies
Categories
Extraction
Localization
Modulation
Position (location)
Signal detection
Waveforms
title Analysis of Low Probability of Intercept Radar Signals Using the Reassignment Method
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