Title :
Waveform design and scheduling in space-time adaptive radar
Author :
Setlur, Pawan ; Devroye, Natasha ; Rangaswamy, Muralidhar
Author_Institution :
Electr. & Comput. Eng, Univ. of Illinois at Chicago, Chicago, IL, USA
fDate :
April 29 2013-May 3 2013
Abstract :
Waveform design and waveform scheduling are addressed in the context of space time adaptive processing (STAP) for radar. An air-borne radar with an array of sensors is assumed, which interrogates ground based targets. The designed waveform is assumed to be transmitted over one coherent processing interval (CPI). The waveform design and waveform scheduling problems are formulated with a cost function similar to the Minimum Variance Distortionless Response (MVDR) cost function as in classical radar STAP. Least-squared solutions for the designed waveform are obtained. It is shown that both the designed waveform and the scheduled waveforms will depend on the spatial and Doppler responses of the desired target; in particular, its spatial and temporal steering vectors. The focus of this paper will be the performance of the designed and scheduled waveforms for unknown correlation matrices but estimated from the training data, and will be addressed via simulations.
Keywords :
Doppler radar; airborne radar; correlation methods; matrix algebra; space-time adaptive processing; vectors; CPI; Doppler response; STAP; air-borne radar; coherent processing interval; correlation matrix; cost function; least-squared solution; space-time adaptive processing; space-time adaptive radar; spatial response; spatial steering vector; temporal steering vector; waveform design; waveform scheduling; Correlation;
Conference_Titel :
Radar Conference (RADAR), 2013 IEEE
Conference_Location :
Ottawa, ON
Print_ISBN :
978-1-4673-5792-0
DOI :
10.1109/RADAR.2013.6586109