Optics Express · 2012 · 87 citations · 9 references
PhotonicsFir FilterEngineeringOptical Transmission SystemCarrier-phase FluctuationsOptical PropertiesNovel ConfigurationAdaptive ModulationCoherent Optical CommunicationSignal ProcessingPhase NoiseModulation TechniqueFinite-impulse-response FiltersOptical CommunicationOptical NetworkingOptoelectronicsFiber-optic CommunicationOptical Amplifier
We propose a novel configuration of the finite-impulse-response (FIR) filter adapted by the phase-dependent decision-directed least-mean-square (DD-LMS) algorithm in digital coherent optical receivers. Since fast carrier-phase fluctuations are removed from the error signal which updates tap coefficients of the FIR filter, we can achieve stable adaptation of filter-tap coefficients for higher-order quadrature-amplitude modulation (QAM) signals. Computer simulations show that our proposed scheme is much more tolerant to the phase noise and the frequency offset than the conventional DD-LMS scheme. Such theoretical predictions are also validated experimentally by using a 10-Gsymbol/s dual-polarization 16-QAM signal.
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