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Content Provider | IEEE Xplore Digital Library |
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Author | Glentis, G.O. Kopsinis, Y. Georgoulakis, K. Matrakidis, C. |
Copyright Year | 2013 |
Description | Author affiliation: Dept. of Inf. & Telecommun., Univ. of Peloponnese, Greece (Glentis, G.O.; Kopsinis, Y.; Georgoulakis, K.; Matrakidis, C.) |
Abstract | During the last few years, a lot of research has been invested for the development of electronic devices equipped with advanced signal processing techniques for the dispersion compensation of Optical transmission systems. Compared to their all-optical counterparts, electronic compensation increases flexibility and gives a new impetus to transparent optical networks for adaptive and dynamic handling in cases where the total accumulated dispersion is not known in advance. In this paper, the Sparse Learning via Iterative Minimization (SLIM) algorithm is employed for the design of reduced size Volterra Decision Feedback (VDFE) equalizers in the context of optical communications is considered. The equalizer structure is dynamically tuned discarding coefficients that have a marginal contribution to the performance of the equalizer leading to both enhanced convergence speed and significant computational complexity savings. |
Starting Page | 000255 |
Ending Page | 000260 |
File Size | 1006137 |
Page Count | 6 |
File Format | |
ISBN | 9781479947966 |
DOI | 10.1109/ISSPIT.2013.6781889 |
Language | English |
Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Publisher Date | 2013-12-12 |
Publisher Place | Greece |
Access Restriction | Subscribed |
Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subject Keyword | Equalizers Optical fiber communication Optical receivers Nonlinear optics Optical feedback Optical sensors Sparse Filters Optical Communications Electronic Dispersion Compensation Volterra Equalizers |
Content Type | Text |
Resource Type | Article |
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