We have numerically investigated a method to reduce the complexity of the digital backward propagation algorithm (DBP). A filtered logarithmic step-size based split-step Fourier method (SSFM) is investigated in this paper to digitally compensate chromatic dispersion (CD) and non-linearities (NL) in dual-polarization quadrature phase shift keying (DP-QPSK) systems. The algorithm was evaluated for coherently-detected multiple channel DP-QPSK system over un-compensated transmission links with diverse baud-rates i.e. 14 GBaud, 28 GBaud and 56 GBaud. The results depict efficient mitigation of CD and NL, therefore improving the non-linear threshold point (NLT) by 4 dB. Furthermore by implementing a low-pass-filter (LPF) in each DBP stage, the req...
Coherent detection with receiver-based DSP has recently enabled the mitigation of fiber nonlinear ef...
We have numerically investigated the impact of non-linear impairments on the performance of 400Gbit/...
In this paper, we numerically investigate the non-linear tolerance of root-raised-cosine (RRC) pulse...
We have numerically investigated a method to reduce the complexity of the digital backward propagati...
We have investigated a new method to reduce the complexity of the digital backward propagation algor...
We propose and numerically investigate the logarithmic step-size distribution for implementing an ef...
We propose and numerically investigate the logarithmic step-size distribution for implementing an ef...
We propose and numerically investigate logarithmic step-size distribution for implementing efficient...
We numerically investigate the impact of channel baud-rate on the performance of logarithmic step-si...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
Recent numerical and experimental studies have shown that coherent transmission with advanced modula...
In this paper, we numerically investigate the non-linear tolerance of root-raised-cosine (RRC) pulse...
We report on the complexity comparison of the digital signal processing (DSP) module to compensate c...
Recent numerical and experimental studies have shown that coherent transmission with advanced modula...
Coherent detection with receiver-based DSP has recently enabled the mitigation of fiber nonlinear ef...
We have numerically investigated the impact of non-linear impairments on the performance of 400Gbit/...
In this paper, we numerically investigate the non-linear tolerance of root-raised-cosine (RRC) pulse...
We have numerically investigated a method to reduce the complexity of the digital backward propagati...
We have investigated a new method to reduce the complexity of the digital backward propagation algor...
We propose and numerically investigate the logarithmic step-size distribution for implementing an ef...
We propose and numerically investigate the logarithmic step-size distribution for implementing an ef...
We propose and numerically investigate logarithmic step-size distribution for implementing efficient...
We numerically investigate the impact of channel baud-rate on the performance of logarithmic step-si...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
We present results of nonlinear compensation achieved by digital backward-propagation (DBP) for next...
Recent numerical and experimental studies have shown that coherent transmission with advanced modula...
In this paper, we numerically investigate the non-linear tolerance of root-raised-cosine (RRC) pulse...
We report on the complexity comparison of the digital signal processing (DSP) module to compensate c...
Recent numerical and experimental studies have shown that coherent transmission with advanced modula...
Coherent detection with receiver-based DSP has recently enabled the mitigation of fiber nonlinear ef...
We have numerically investigated the impact of non-linear impairments on the performance of 400Gbit/...
In this paper, we numerically investigate the non-linear tolerance of root-raised-cosine (RRC) pulse...