In this paper, we analyze the performance of polarization-diversity receivers employing maximum-likelihood sequence estimation (MLSE) to combat the effects of polarization mode dispersion (PMD) for both the intensity-modulation direct detection (IMDD) and duobinary modulation formats at 43 Gb/s. We propose and study several parametric branch metrics, showing that the use of MLSE receivers based on polarization diversity with appropriate branch metrics allows to cancel out the high penalty incurred by standard MLSE receivers in the presence of PMD
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
We present numerical evidence that maximum-likelihood sequence estimation (MLSE)-based receivers, as...
Polarization Mode Dispersion (PMD) is considered a major obstacle for ultrahigh-capacity fiber commu...
Experimental investigations show that maximum likelihood sequence estimation (MLSE) in a 10.7 Gb/s n...
Abstract—Polarization-mode dispersion (PMD) can cause fre-quency-selective fading in direct-detectio...
Recent results indicate that high-complexity MLSE processors could recover large amounts of chromati...
This paper thoroughly investigates the maximum likelihood sequence detection (MLSD) receiver for the...
This paper thoroughly investigates the maximum-likelihood sequence detection (MLSD) receiver for the...
An analytical approach is presented to evaluate the impact of polarization mode dispersion on the av...
We study the polarization-mode dispersion (PMD) compensation and mitigation performance, using a sin...
Abstract—We investigate the performance of maximum likelihood sequence estimation (MLSE) receiver in...
This paper analyzes optical transmission systems based on high-order modulations such as phase-shift...
In this paper, we analyze the performance of IMDD-NRZ ASE-noise-limited systems using MLSE receivers...
©2002 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
Abstract—We propose the multilevel maximum a posteriori probability (MAP) detector suitable for use ...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
We present numerical evidence that maximum-likelihood sequence estimation (MLSE)-based receivers, as...
Polarization Mode Dispersion (PMD) is considered a major obstacle for ultrahigh-capacity fiber commu...
Experimental investigations show that maximum likelihood sequence estimation (MLSE) in a 10.7 Gb/s n...
Abstract—Polarization-mode dispersion (PMD) can cause fre-quency-selective fading in direct-detectio...
Recent results indicate that high-complexity MLSE processors could recover large amounts of chromati...
This paper thoroughly investigates the maximum likelihood sequence detection (MLSD) receiver for the...
This paper thoroughly investigates the maximum-likelihood sequence detection (MLSD) receiver for the...
An analytical approach is presented to evaluate the impact of polarization mode dispersion on the av...
We study the polarization-mode dispersion (PMD) compensation and mitigation performance, using a sin...
Abstract—We investigate the performance of maximum likelihood sequence estimation (MLSE) receiver in...
This paper analyzes optical transmission systems based on high-order modulations such as phase-shift...
In this paper, we analyze the performance of IMDD-NRZ ASE-noise-limited systems using MLSE receivers...
©2002 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
Abstract—We propose the multilevel maximum a posteriori probability (MAP) detector suitable for use ...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
We present numerical evidence that maximum-likelihood sequence estimation (MLSE)-based receivers, as...
Polarization Mode Dispersion (PMD) is considered a major obstacle for ultrahigh-capacity fiber commu...