[EN] A first-order polarisation mode dispersion (differential group delay (DGD)) monitoring technique using a low-speed detector for 40 Gb/s return to zero data transmission is proposed and experimentally demonstrated. The monitoring technique is based on adding an additional optical carrier which is frequency-shifted with respect to the data carrier at an orthogonal polarisation state. The added carrier beats with the data clock tones generating new RF tones at the photodetector output whose power depends on a sinusoidal function. By properly setting the frequency shift between optical carriers, a low-frequency radio-frequency (RF) tone is generated and used for DGD monitoring of high-speed data, providing a cost-effective solution, high r...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
Optical performance monitoring based on digital signal processing (DSP) of a polarisation diverse c...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
[EN] A first-order polarisation mode dispersion (differential group delay (DGD)) monitoring techniqu...
We present a simultaneous optical signal-to-noise ratio (OSNR) and differential group delay (DGD) mo...
AbstractWe propose and demonstrate a novel method for simultaneous chromatic dispersion (CD) and pol...
Polarization of light within an optical fiber constantly changes due to environmentally induced bire...
Chromatic dispersion (CD) is one of the major factors limiting optical transmission distance. There...
We consider and investigate an improved chromatic dispersion monitoring method using two RF tones wi...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
©2005 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
optical, fiber optics, photonic subsystems, incoherent, photonics, lightwave components Polarization...
Optical Transmission Systems, Switching, and Subsystems VII, Shanghai, 2-6 November 2009Differential...
In this thesis, the theoretical models describing the physical origins of differential group delay (...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
Optical performance monitoring based on digital signal processing (DSP) of a polarisation diverse c...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
[EN] A first-order polarisation mode dispersion (differential group delay (DGD)) monitoring techniqu...
We present a simultaneous optical signal-to-noise ratio (OSNR) and differential group delay (DGD) mo...
AbstractWe propose and demonstrate a novel method for simultaneous chromatic dispersion (CD) and pol...
Polarization of light within an optical fiber constantly changes due to environmentally induced bire...
Chromatic dispersion (CD) is one of the major factors limiting optical transmission distance. There...
We consider and investigate an improved chromatic dispersion monitoring method using two RF tones wi...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
©2005 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
The authors demonstrate in-service channel monitoring of a chromatic dispersion (CD) and polarizatio...
optical, fiber optics, photonic subsystems, incoherent, photonics, lightwave components Polarization...
Optical Transmission Systems, Switching, and Subsystems VII, Shanghai, 2-6 November 2009Differential...
In this thesis, the theoretical models describing the physical origins of differential group delay (...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...
Optical performance monitoring based on digital signal processing (DSP) of a polarisation diverse c...
Author name used in this publication: P. K. A. Wai2010-2011 > Academic research: refereed > Publicat...