Coherent optical links enable high-density constellations and, consequently, a higher throughput. However, the phase noise associated with the transmitter and the receiver lasers is a challenging issue in coherent lightwave systems. The authors present an approach that relies on using digital signal processing techniques to compensate for the laser phase-noise effects. The proposed approach exploits the digital processing power to address the problems arising from optical imperfections. The authors present an adaptive filtering scheme that reduces the effect of the laser phase noise and, consequently, relaxes the laser linewidth requirement. The proposed approach shows how the signal processing techniques can be exploited to compensate for ...
The achievable information rates of optical communication networks have been widely increased over t...
A unified framework for phase noise suppression is proposed in this paper, which could be applied in...
Digital signal processing techniques used in conjunction with phase-diversity coherent optical recei...
Coherent optical links enable high-density constellations and, consequently, a higher throughput. Ho...
In coherent optical systems, the phase noise due to transmit and receive lasers has a significant im...
One of the most severe impairments that affect coherent optical systems employing high-order modulat...
The increase in capacity demand along with the advancement in digital signal processing (DSP) have r...
Abstract—One of the most severe impairments that affect co-herent optical systems employing high-ord...
A novel technique to cancel laser phase noise in coherent receivers is proposed. The equivalent lase...
Coherent detection together with multilevel modulation formats has the potential to significantly in...
Abstract—In coherent optical systems, apart from fiber chromatic dispersion and polarization mode di...
The impact of phase to amplitude noise conversion for QPSK, 16-QAM, and 64-QAM coherent optical syst...
We present an extensive study of equalization enhanced phase noise (EEPN) in coherent optical system...
The achievable information rates of optical communication networks have been widely increased over t...
A unified framework for phase noise suppression is proposed in this paper, which could be applied in...
Digital signal processing techniques used in conjunction with phase-diversity coherent optical recei...
Coherent optical links enable high-density constellations and, consequently, a higher throughput. Ho...
In coherent optical systems, the phase noise due to transmit and receive lasers has a significant im...
One of the most severe impairments that affect coherent optical systems employing high-order modulat...
The increase in capacity demand along with the advancement in digital signal processing (DSP) have r...
Abstract—One of the most severe impairments that affect co-herent optical systems employing high-ord...
A novel technique to cancel laser phase noise in coherent receivers is proposed. The equivalent lase...
Coherent detection together with multilevel modulation formats has the potential to significantly in...
Abstract—In coherent optical systems, apart from fiber chromatic dispersion and polarization mode di...
The impact of phase to amplitude noise conversion for QPSK, 16-QAM, and 64-QAM coherent optical syst...
We present an extensive study of equalization enhanced phase noise (EEPN) in coherent optical system...
The achievable information rates of optical communication networks have been widely increased over t...
A unified framework for phase noise suppression is proposed in this paper, which could be applied in...
Digital signal processing techniques used in conjunction with phase-diversity coherent optical recei...