A Dynamic Reconfiguring Tool For Improving Multiwavelength Transport Network Robustness

ICC'97: 1997 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS - TOWARDS THE KNOWLEDGE MILLENNIUM, CONFERENCE RECORD - VOLS 1-3(1997)

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摘要
In this paper we present a heuristic tool known as the Virtual Permanent Reconfiguring Mechanism (VPRM) which dynamically reconfigures wavelength connections in a WDM transport network with a given physical topology. As the name suggests, VPRM seeks to provide an optimised semi-permanent solution of the network configuration or logical topology, and traffic now of a WDM transport network. The tool is activated in the event of changes within network environment; these may include -- (i) normal network environment changes such as a change in traffic pattern, network expansion (introduction of new nodes or increase in wavelength availability) and line shutdown for maintainence purposes and, (ii) abnormal network environment changes such as sudden power failure, and network faults. Detection cf the former network changes is achieved using a threshold detection technique. The latter, changes however are detected by means of fault alarm signals from distributed fault restoration mechanisms. The VPRM employs a combination of integer linear programming and a heuristic approach. It essentially balances the traffic utilisation throughout the network physical structure and it dynamically ensures that spare connections ate available, even after a fault, prior to completion of network maintenance. Unlike other reconfiguration techniques which involve solving ILP problems, the VPRM not only balances the load distribution throughout the physical network but also reduces the overall mean traffic level within each link. Simulation results show that the VPRM generates better results than those reported in the literature.
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关键词
load distribution,circuit topology,logical topology,fault detection,traffic flow,maintenance engineering,integer linear programming,network topology,integer programming,robustness,linear programming,wavelength division multiplexing,optical filters
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