Abstract
The widely-used LMS algorithm for coefficient updates in adaptive (feedforward/decision-feedback) equalizers is found to be suboptimal for ASE-dominant systems but various coefficient-dithering approaches suffer from slow adaptation rate without guarantee of convergence. In view of the non-Gaussian nature of optical noise after the square-law optoelectronic conversion, we propose to apply the higher-order least-mean 2Nth-order (LMN) algorithms resulting in OSNR penalty which is 1.5-2 dB less than that of LMS. Furthermore, combined with adjustable slicer threshold control, the proposed equalizer structures are demonstrated through extensive Monte Carlo simulations to achieve better performance. © 2005 Hindawi Publishing Corporation.
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Koc, U. V. (2005). Adaptive electronic dispersion compensator for chromatic and polarization-mode dispersions in optical communication systems. Eurasip Journal on Applied Signal Processing, 2005(10), 1584–1592. https://doi.org/10.1155/ASP.2005.1584
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