Circuit planning tool over heterogeneous networks

currently, there is no existing solution or tool to efficiently route a high-speed circuit over heterogeneous DWDM networks under multi-vendor environment, although each vendor may provide a planning tool to route a circuit within its own sub-network domain. This is mainly due to the lack of common technology for optical reachability calculation across vendor sub-networks. Each sub-network has its own proprietary parameters or formulas to calculate whether an optical path is reachable or not. To route a circuit across heterogeneous networks, we rely on the common function provided by each vendor tool to determine all reachable paths within each sub-network, i.e, the reachability matrix for each sub-network. Here reachability matrix is defined as a list of all reachable paths within the sub-network. Then we build a weighted cost graph based on the reachability matrices and apply the shortest path algorithm to find a cost efficient route. Finally we address the DWDM (Dense Wavelength Division Multiplex) sub-network selection, regenerator placement, and wavelength assignment on the selected route. The systematical methodology has been implemented in a circuit planning tool for high-speed circuits (up to 100Gbps) and used in a real heterogeneous DWDM network since 2009.

[1]  Maïté Brandt-Pearce,et al.  Cross-layer adaptive routing and wavelength assignment in all-optical networks , 2008, IEEE Journal on Selected Areas in Communications.

[2]  J. M. Simmons,et al.  Evolution toward the next-generation core optical network , 2006, Journal of Lightwave Technology.

[3]  Dahai Xu,et al.  Efficient routing in heterogeneous core DWDM networks , 2010, 2010 Conference on Optical Fiber Communication (OFC/NFOEC), collocated National Fiber Optic Engineers Conference.

[4]  M. Brandt-Pearce,et al.  QoS-Aware Wavelength Assignment With BER and Latency Constraints for All-Optical Networks , 2009, Journal of Lightwave Technology.

[5]  Neal Charbonneau,et al.  Routing and Wavelength Assignment of Static Manycast Demands Over All-Optical Wavelength-Routed WDM Networks , 2010, IEEE/OSA Journal of Optical Communications and Networking.

[6]  Dahai Xu,et al.  Network Design and Architectures for Highly Dynamic Next-Generation IP-Over-Optical Long Distance Networks , 2009, Journal of Lightwave Technology.

[7]  Nasir Ghani,et al.  Graph Partitioning for Survivability in Multi-Domain Optical Networks , 2010, ICC 2010.