We propose an optical performance monitoring technique for simultaneous monitoring of optical signal-to-noise ratio (OSNR), chromatic dispersion (CD), and polarization-mode dispersion (PMD) using an artificial neural network trained with asynchronous amplitude histograms (AAHs). Simulations are conducted to demonstrate the technique for both 40-Gb/s return-to-zero differential quadrature phase-shift keying (RZ-DQPSK) and 40-Gb/s noneturn-to-zero 16 quadrature amplitude modulation (16-QAM) systems. The OSNR, CD, and PMD monitoring range and root-mean-square (rms) errors are 10-30 and 0.43 dB, 0-400 and 9.82 ps/nm, and 0-10 and 0.92 ps, respectively, for RZ-DQPSK systems. For 16-QAM system, the monitoring range and rms errors are 10-30 and 0....
Nonlinear phase noise (NLPN) is the most common impairment that degrades the performance of radio-ov...
OSNR monitoring is indispensable for coherent systems to ensure robustreliable network operation and...
We experimentally demonstrate a digital signal processing (DSP)-based optical performance monitoring...
Recently, technologies such as artificial neural networks (ANNs) and asynchronous amplitude histogra...
© 2006 Dr. Wei ChengOptical performance monitoring is essential for managing optical networks. One i...
We demonstrate a deep neural network (DNN) trained with amplitude histograms (AHs) for optical perfo...
AbstractAn optical performance monitoring model based on radial basis functions artificial neural ne...
An intelligent optical performance monitor using multi-task learning based artificial neural network...
Real-time optical performance monitoring (OPM) is of the utmost importance in adaptive optical netwo...
The rapid development of data-driven techniques brings us new applications, such asfifth-generation ...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
As optical performance monitoring (OPM) requires accurate and robust solutions to tackle the increas...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
2011-11-18For advanced optical networks at bit-rates beyond 100 Gbit/s, there is a desire to realize...
Nonlinear phase noise (NLPN) is the most common impairment that degrades the performance of radio-ov...
OSNR monitoring is indispensable for coherent systems to ensure robustreliable network operation and...
We experimentally demonstrate a digital signal processing (DSP)-based optical performance monitoring...
Recently, technologies such as artificial neural networks (ANNs) and asynchronous amplitude histogra...
© 2006 Dr. Wei ChengOptical performance monitoring is essential for managing optical networks. One i...
We demonstrate a deep neural network (DNN) trained with amplitude histograms (AHs) for optical perfo...
AbstractAn optical performance monitoring model based on radial basis functions artificial neural ne...
An intelligent optical performance monitor using multi-task learning based artificial neural network...
Real-time optical performance monitoring (OPM) is of the utmost importance in adaptive optical netwo...
The rapid development of data-driven techniques brings us new applications, such asfifth-generation ...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
As optical performance monitoring (OPM) requires accurate and robust solutions to tackle the increas...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
2011-11-18For advanced optical networks at bit-rates beyond 100 Gbit/s, there is a desire to realize...
Nonlinear phase noise (NLPN) is the most common impairment that degrades the performance of radio-ov...
OSNR monitoring is indispensable for coherent systems to ensure robustreliable network operation and...
We experimentally demonstrate a digital signal processing (DSP)-based optical performance monitoring...