DocumentCode :
1931295
Title :
Optimal training sample partitioning for two-stage adaptive detectors
Author :
Abramovich, Yuri I. ; Johnson, Ben A. ; Spencer, Nicholas K.
Author_Institution :
ISR Div., DSTO, Edinburgh, SA
fYear :
2008
fDate :
26-30 May 2008
Firstpage :
1
Lastpage :
6
Abstract :
Adaptive signal detection for scenarios with a limited number of sources of interest and background interferers (less than the number of antenna elements) can be efficiently executed using diagonally loaded covariance matrix estimates, but the resultant detectors are not strictly constant false-alarm rate (CFAR). The loss of ldquoCFARnessrdquo means that the problem of adaptive interference mitigation and the problem of adaptive false-alarm threshold control must be treated separately, yet draw on the same collection of secondary training samples. Here we consider a ldquotwo-stagerdquo adaptive detection scheme that optimally partitions the total sample support T into two sets: TCME data samples are used to design the adaptive filter (beamformer), then the remaining TCFAR samples are used to calculate the adaptive scalar false-alarm threshold. We present a comparative analysis of the detection performance of ldquoone-stagerdquo CFAR and ldquotwo-stagerdquo adaptive detectors.
Keywords :
adaptive filters; adaptive signal detection; covariance matrices; interference suppression; radar signal processing; CFAR; adaptive filter; adaptive interference mitigation; adaptive scalar false-alarm threshold; background interferers; constant false-alarm rate; diagonally loaded covariance matrix estimates; radar; two-stage adaptive signal detectors; Adaptive arrays; Adaptive control; Adaptive filters; Adaptive signal detection; Covariance matrix; Detectors; Interference; Loaded antennas; Performance analysis; Programmable control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location :
Rome
ISSN :
1097-5659
Print_ISBN :
978-1-4244-1538-0
Electronic_ISBN :
1097-5659
Type :
conf
DOI :
10.1109/RADAR.2008.4720919
Filename :
4720919
Link To Document :
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