DocumentCode :
698310
Title :
Complex-valued FIR seismic migration filter design using Pure and Relaxed Projection algorithms
Author :
Mousa, Wail A. ; Boussakta, Said ; McLernon, Des
Author_Institution :
Sch. of Electron. & Electr. Eng., Univ. of Leeds, Leeds, UK
fYear :
2005
fDate :
4-8 Sept. 2005
Firstpage :
1
Lastpage :
4
Abstract :
The iterative Pure and Relaxed Projectors are special cases of Vector Space Projection Methods (VSPM). Complex-valued FIR digital filter design using Pure and Relaxed Projectors is proposed for designing seismic migration digital filters. Designing FIR digital filters using VSPM, in general, is able to produce feasible solutions satisfying all the desired filter constraints by the use of only two Fast Fourier Transform (FFT) computations. Furthermore, the design algorithm can be directly extended from one-dimensional (1-D) to multi-dimensional (m-D) filters, an advantage not present in many other filter design techniques. In addition, by using the relaxed projectors, one can achieve faster convergence when compared to the pure projectors. The simulation results show that the relaxed projectors for designing such filters will save up to 86.47% of the number of iterations when compared with the pure projectors.
Keywords :
FIR filters; Fourier transforms; geophysical techniques; seismology; complex-valued FIR digital filter design; complex-valued FIR seismic migration filter design; fast Fourier transform computation; filter constraint; filter design technique; iterative pure projector; iterative relaxed projector; pure projection algorithm; relaxed projection algorithm; seismic migration digital filter; vector space projection method; Algorithm design and analysis; Filtering algorithms; Finite impulse response filters; Hilbert space; Passband; Projection algorithms; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference, 2005 13th European
Conference_Location :
Antalya
Print_ISBN :
978-160-4238-21-1
Type :
conf
Filename :
7077892
Link To Document :
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