DocumentCode :
825049
Title :
Space-time adaptive processing: a knowledge-based perspective for airborne radar
Author :
Wicks, Michael C. ; Rangaswamy, Muralidhar ; Adve, Raviraj ; Hale, Todd B.
Volume :
23
Issue :
1
fYear :
2006
Firstpage :
51
Lastpage :
65
Abstract :
This article provides a brief review of radar space-time adaptive processing (STAP) from its inception to state-of-the art developments. The topic is treated from both intuitive and theoretical aspects. A key requirement of STAP is knowledge of the spectral characteristics underlying the interference scenario of interest. Additional issues of importance in STAP include the computational cost of the adaptive algorithm as well as the ability to maintain a constant false alarm rate (CFAR) over widely varying interference statistics. This article addresses these topics, developing the need for a knowledge-based (KB) perspective. The focus here is on signal processing for radar systems using multiple antenna elements that coherently process multiple pulses. An adaptive array of spatially distributed sensors, which processes multiple temporal snapshots, overcomes the directivity and resolution limitations of a single sensor.
Keywords :
adaptive antenna arrays; airborne radar; distributed sensors; knowledge based systems; matrix algebra; radar antennas; radar computing; radar interference; radar signal processing; space-time adaptive processing; STAP; adaptive array; airborne radar; constant false alarm rate; interference; knowledge-based perspective; multiple antenna elements; space-time adaptive processing; spatially distributed sensors; spectral characteristics; Adaptive algorithm; Airborne radar; Art; Computational efficiency; Interference; Radar antennas; Radar signal processing; Sensor arrays; Spaceborne radar; Statistical distributions;
fLanguage :
English
Journal_Title :
Signal Processing Magazine, IEEE
Publisher :
ieee
ISSN :
1053-5888
Type :
jour
DOI :
10.1109/MSP.2006.1593337
Filename :
1593337
Link To Document :
بازگشت