| Патент США N 8179300 | |
| Pun , et al. | May 15, 2012 |
A method surpresses clutter in a space-time adaptive processing system. The method achieves low-complexity computation via two steps. First, the method utilizes an improved fast approximated power iteration method to compress the data into a much smaller subspace. To further reduce the computational complexity, a progressive singular value decomposition (SVD) approach is employed to update the inverse of the covariance matrix of the compressed data. As a result, the proposed low-complexity STAP computational complexity reduction as compared to the conventional STAP procedure.
| Автор(ы): | Pun; Man-On (Cambridge, MA), Sahinoglu; Zafer (Arlington, MA) |
|---|---|
| Заявитель: | Mitsubishi Electric Research Laboratories, Inc. (Cambridge, MA)
|
| N заявки: | 12/696,997 |
| Приоритет: | January 29, 2010 |
| Current U.S. Class: | 342/22 ; 342/159 |
| Класс МПК: | G01S 13/00 (20060101) |
| Field of Search: | 342/22,159 |
| 6873724 | March 2005 | Brand |
H Belkacemi Fast iterative subspace procedures for airborne STAP radar. EURASIP Journal on applied signal processing, 1-8, 2006. cited by examiner . R. Badeau Fast approximated power iteration subspace tracking. IEEE Trans. Signal Proc., 53:2931-2941, 2005. cited by other . R. Badeau Approximated power iterations for fast subspace tracking. Proc. 7th International Symp. Signal Processing and Applications, pp. 583-586, Paris, France, 2003. cited by other . H. Belkacemi Fast iterative subspace procedures for airborne STAP radar. EURASIP Journal on applied signal processing, :1-8, 2006. cited by other . M Brand Fast low-rank modifications of the thin singular value decomposition. Linear Algebra and its Applications, 415:20-30, 2006. cited by other . B. Yang Projection approximation subspace tracking. IEEE Trans. Signal Processsing, 43:95-107, 1995. cited by other. |