DocumentCode :
939177
Title :
Adaptive airborne MTI: an auxiliary channel approach
Author :
Klemm, R.
Author_Institution :
Forschungsgesellschaft f¿¿r Angewandte Naturwissenschaften EV (FGAN), Forschungsinstitut f¿¿r Funk und Mathematik, Wachtberg-Werthhoven, West Germany
Volume :
134
Issue :
3
fYear :
1987
fDate :
6/1/1987 12:00:00 AM
Firstpage :
269
Lastpage :
276
Abstract :
The suppression of ground clutter returns received by an airborne radar is basically a two-dimensional filtering problem, because the clutter echoes depend on two parameters (velocity, azimuth) instead of velocity only as in case of ground-based radars. This requires two-dimensional sampling (in space and time) of the backscattered echo field, which in practice is fulfilled by a coherent pulse Doppler phased array radar. Previous studies have shown that the space-time clutter covariance matrix of the order NM ¿¿ NM (N is the number of sensors, M the number of echoes) has only N + M clutter eigenvalues (instead of NM), which means that the signal vector space can be reduced. In the paper an adaptive radar receiver with AMTI (airborne MTI) capability is shown and discussed. It is shown that this AMTI receiver approximates well the theoretical optimum; however, the computational expense is drastically reduced. In view of the dramatic progress in the field of microelectronics and algorithms (e.g. systolic arrays), one can expect that such AMTI receivers will be realisable for real-time applications in the near future.
Keywords :
adaptive systems; filtering and prediction theory; interference suppression; radar clutter; radar receivers; adaptive radar receiver; airborne MTI; airborne radar; auxiliary channel approach; backscattered echo field; coherent pulse Doppler phased array radar; ground clutter suppression; moving target indicator; real-time applications; two-dimensional filtering problem;
fLanguage :
English
Journal_Title :
Communications, Radar and Signal Processing, IEE Proceedings F
Publisher :
iet
ISSN :
0143-7070
Type :
jour
DOI :
10.1049/ip-f-1.1987.0054
Filename :
4647209
Link To Document :
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