The underlying unity of distinct processing algorithms for: (1) the removal of free surface and internal multiples, (2) Q compensation (without Q), (3) depth imaging, and (4) nonlinear AVO, that derive from the inverse scattering series

Author:

Weglein A. B.1,Ramírez A. C.1,Innanen K. A.2,Liu F.2,Lira J. E.2,Jiang S.2

Affiliation:

1. Western‐Geco

2. M‐OSRP, University of Houston

Publisher

Society of Exploration Geophysicists

Reference29 articles.

1. Araujo, F. V., 1994, Linear and nonlinear methods derived from scattering theory: Backscattered tomography and internal multiple attenuation: Ph.D. thesis, Universidade Federal da Bahia (in Portuguese).

2. Carvalho, P. M., 1992, Free‐surface multiple reflection elimination method based on nonlinear inversion of seismic data: Ph.D. thesis, Universidade Federal da Bahia (in Portuguese).

3. Goldberger, M. L., and K. M. Watson, 2004, Collision theory: Dover.

4. Innanen, K. A. 2003, Methods for the treatment of acoustic and absorptive/dispersive wavefield measurements: Ph.D. thesis, University of British Columbia

5. Innanen, K. A., and A. B. Weglein, 2005, Toward nonlinear construction of a Q‐compensation operator directly from reflection seismic data: Presented at the 75th Annual International Meeting, SEG.

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