DocumentCode
1733687
Title
Applications of adaptive feedback line enhancer in signal and image enhancement
Author
Fahmy, M.F. ; El-Raheem, G.M.A. ; Ibrahim, A.F.
Author_Institution
Dept. of Electr. Eng., Assiut Univ., Egypt
fYear
2003
Lastpage
42377
Abstract
In this paper, two new approaches are proposed for the design of adaptive feedback line enhancer to be used in signal and image enhancement. In the first approach, the performance of an adaptive cross-coupled line enhancer is improved by maximizing the cross correlation functions between the outputs of the cross-coupled line enhancer, over a specified lag length. Next the performance of the line enhancer has been improved and made free from any stability constraint that normally arises in the cross coupled case, by realizing one of the cross-coupled structures, as a lattice filter with feedback. The lattice parameters are recursively updated as new data comes in using the simple LMS algorithm. Illustrative examples are given to show the effectiveness of the proposed approaches, even in case of colored noise with high eigenvalue spread. In case of image enhancement, the proposed cross-coupled structure is implemented in a 2D form. Stability of the resulting 2D feedback structure is easily checked and maintained. The simplicity of the proposed algorithms, allows the inclusion of any edge preserving routines if desired. Simulation results have again demonstrated the effectiveness of the proposed approaches, in both mage enhancement as well as edge preserving.
Keywords
adaptive signal processing; correlation methods; eigenvalues and eigenfunctions; feedback; image enhancement; lattice filters; least mean squares methods; minimisation; stability; LMS algorithm; adaptive cross-coupled line enhancer; adaptive feedback line enhancer; colored noise; cross correlation functions; edge preserving; high eigenvalue spread; image enhancement; lag length; lattice filter; least mean square; signal enhancement; stability constraint; Colored noise; Eigenvalues and eigenfunctions; Feedback; Filters; Image enhancement; Lattices; Least squares approximation; Line enhancers; Signal design; Stability;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio Science Conference, 2003. NRSC 2003. Proceedings of the Twentieth National
Print_ISBN
977-5031-75-3
Type
conf
DOI
10.1109/NRSC.2003.1217334
Filename
1217334
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