A main concern in a reconfigurable WDM networks is to control the amplifier power transients caused by channel reconfiguration or even network failure/recovery. A simple and low cost solution is to use optical gain clamping (OGC) technique. We present efficient OGC-amplifier configuration with variable gain control insensitive to transients. We show experimental results on a new optical-gain-clamping solution where the whole ring network acts as a laser cavity. We demonstrate that recirculating amplified-spontaneous-emission noise may clamp the network gain. The spectral-hole-burning (SHB) offset limitation is also addressed. In addition we describe a recent transparent network testbed based on OGC-EDWA that outperforms the standard OGC-EDF...
Experimental studies of real optical burst traffic in WDM systems are performed with optical gain cl...
In this paper, we propose a method to mitigate the temporal power transients arising from Erbium dop...
In this study, the authors present an innovative gain clamping method to mitigate Erbium-doped fibre...
A main concern in a reconfigurable WDM networks is to control the amplifier power transients caused ...
We describe an efficient erbium-doped waveguide amplifier insensitive to output power variation by m...
We describe an efficient erbium-doped waveguide amplifier insensitive to output power variation by m...
Transient dynamic due to signal power fluctuations is the main impairment in reconfigurable transpar...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
Transient dynamic due to signal power fluctuations is the main impairment in reconfigurable transpar...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We demonstrate an all-optical wavelength-division-multiplexing ring network immune to transients bas...
Abstract—This paper studies via simulation the stabilizing effect of all-optical gain-clamping (AOGC...
This paper studies via simulation the stabilizing effect of all-optical gain-clamping (AOGC) in a ch...
Experimental studies of real optical burst traffic in WDM systems are performed with optical gain cl...
In this paper, we propose a method to mitigate the temporal power transients arising from Erbium dop...
In this study, the authors present an innovative gain clamping method to mitigate Erbium-doped fibre...
A main concern in a reconfigurable WDM networks is to control the amplifier power transients caused ...
We describe an efficient erbium-doped waveguide amplifier insensitive to output power variation by m...
We describe an efficient erbium-doped waveguide amplifier insensitive to output power variation by m...
Transient dynamic due to signal power fluctuations is the main impairment in reconfigurable transpar...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
Transient dynamic due to signal power fluctuations is the main impairment in reconfigurable transpar...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We investigate a transparent WDM ring network design immune to accumulated power transients where si...
We demonstrate an all-optical wavelength-division-multiplexing ring network immune to transients bas...
Abstract—This paper studies via simulation the stabilizing effect of all-optical gain-clamping (AOGC...
This paper studies via simulation the stabilizing effect of all-optical gain-clamping (AOGC) in a ch...
Experimental studies of real optical burst traffic in WDM systems are performed with optical gain cl...
In this paper, we propose a method to mitigate the temporal power transients arising from Erbium dop...
In this study, the authors present an innovative gain clamping method to mitigate Erbium-doped fibre...