Virtual-topology adaptation for WDM mesh networks under dynamic traffic

Proceedings - IEEE INFOCOM - Tập 1 - Trang 48-56 vol.1
A. Gencata1, B. Mukherjee2
1Department of Computer Engineering, Istanbul Technical University, Istanbul, Turkey
2Department of Computer Science, University of California,슠Davis, Davis, CA, USA

Tóm tắt

We present a new approach to the virtual-topology reconfiguration problem for wavelength-routed, optical wide-area networks under dynamic traffic demand. By utilizing the measured Internet backbone traffic characteristics, an adaptation mechanism is proposed to follow the changes in traffic without assuming that the future traffic pattern is known. In that sense, our work differs from previous studies which redesign the virtual-topology according to an expected (or known) traffic pattern, and then modify the connectivity to reach the target topology. The key idea of our approach is to adapt the underlying optical connectivity by measuring the actual traffic load on lightpaths continuously (periodically based on a measurement period) and reacting promptly to the imbalances caused by fluctuations in the traffic by adding or deleting one lightpath at a time. We aim to correct the encountered load imbalance directly, either by tearing down a lightpath that is lightly loaded or by setting up a new lightpath when congestion occurs. We introduce high and low watermark parameters on lightpath loads to detect any over/underutilized lightpath, and to trigger an adaptation step. The adaptation method is evaluated through simulations and the effect of system parameters (high and low watermarks, length of the measurement period) are investigated.

Từ khóa

#Wavelength division multiplexing #WDM networks #Mesh networks #Telecommunication traffic #Optical sensors #Time measurement #Watermarking #Optical fiber networks #Wavelength measurement #Internet

Tài liệu tham khảo

genc?ata, 0, Virtual-topology adaptation with minimal lightpath change for dynamic traffic in WDM mesh networks, Proc OFC 2002 zang, 2000, A review of routing and wavelength assignment approaches for wavelength-routed optical WDM networks, Optical Networks Magazine, 1, 47 rouskas, 1995, Dynamic reconfiguration in multihop WDM networks, Journal of High Speed Networks, 4, 221, 10.3233/JHS-1995-4301 10.1109/INFCOM.2000.832276 10.1109/90.879346 10.1109/GLOCOM.2000.891340 10.1109/90.541317 mukherjee, 1997, Optical Communication Networks 10.1109/26.153361 10.1109/GLOCOM.1996.594381 0, Cooperative association for Internet data analysis 0, Abilene network traffic statistics 10.1109/90.917075 10.1109/49.510907 10.1109/26.328952 10.1109/26.134012