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Titlebook: New Trends in Optical Network Design and Modeling; IFIP TC6 Fourth Work Alexandros A. Stavdas Conference proceedings 2001 IFIP Internationa

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All-optical Signal Processing Devices for Photonic Networks: Towards Packet Switching,M links to gratify the demand for capacity upgrades mainly for point-to-point connections. The link capacity will grow to a few Tbit/s per fiber. It is expected that optical time domain techniques (OTDM) will be used to increase the bit rate per WDM channel further beyond the highest available elect
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,Numerical Modeling of a High Repetition Rate Fiber Laser, Mode — Locked by External Optical Modulataturation and recovery of a semiconductor optical amplifier induced by an external optical pulse and has been used to obtain 4.3 ps pulses at 20 GHz. A numerical model of the fiber ring laser has been developed describing the mode — locking process in the laser oscillator and providing solutions for
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Reduction of Hop-Count in Packet-Switched Networks using Wavelength Reconfiguration,t function is achieved by opaque cross-connects, providing full wavelength conversion. Simulations on a 5-node, an 11-node and a 26-node network are done for different number of ports per node and wavelength channels per link.
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A Flexible WDM Ring Network Design and Dimensioning Methodology,sms, simple network management and control. The optimal design of such networks is however a rather complex task, with multiple objectives being optimized that can often be in conflict one with another. The paper presents a modular methodology that encompasses three fundamental steps in designing an
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Dimensioning of Non-hierarchical Interconnected WDM Ring Networks,PRing). We developed an integer linear programming and an efficient heuristic solution method and compare both methods. Furthermore we present results on network cost and availability for different network and ring sizes.
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A Simulation Model for an Optical IP Router,ncoding for routing and on delay lines for buffering. A simulation model of this switching architecture based on the use of the Petri Nets formalism is presented, and its implementation by means of the Artifex simulation tool described.
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Distributed Router Architecture for Packet-Routed Optical Networks,d wavelength assignment functions are carried out in routers located at the edge of the network. The destination address is encoded by a given wavelength and allows wavelength-routing in optical core routers. This approach avoids processing and additional buffering delays in core routers. A low pack
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