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Chromatic Dispersion Equalization Fir Filter Design Based On Discrete Least-Squares Approximation

OPTICS EXPRESS(2021)

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Abstract
Chromatic dispersion (CD) equalization is one of the core tasks of the digital signal processing (DSP) chain in modern optical coherent receivers. A conventional impulse-invariant method for designing the CD equalization filter is revisited, improved by proper weighting, and reinterpreted as a Fourier series. To improve upon a direct evaluation of the passband least-squares (LS) approximation, we propose to design a CD equalization finite impulse response (FIR) filter based on a discrete LS approximation. The proposed method avoids numerical evaluation of nontrivial functions and relies only on Fourier transform. Its flexibility is corroborated by a filter design demonstration of joint matched filtering and CD equalization. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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least-squares least-squares
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