Title :
Multiwavelength optical networks with limited wavelength conversion
Author :
Ramaswami, R. ; Sasaki, G.H.
Author_Institution :
IBM Res., Hawthorne, NY, USA
Abstract :
This paper proposes optical wavelength division multiplexed (WDM) networks with limited wavelength conversion that can efficiently support lightpaths (connections) between nodes. Each lightpath follows a route in the network and must be assigned a channel along each link in its route. The load λmax of a set of lightpath requests is the maximum over all links of the number of lightpaths that use the link. At least λmax wavelengths will be needed to assign channels to the lightpaths. If the network has full wavelength conversion capabilities then λmax wavelengths are sufficient to perform the channel assignment. We propose ring networks with a fixed wavelength conversion capability within the nodes that can support all lightpath request sets with load λmax at most W-1, where W is the number of wavelengths in each link. We also propose ring networks with selective pairwise wavelength conversion capability within the nodes that can support all lightpath request sets with load λmax at most W. We also propose a star network with fixed wavelength conversion capability at its hub node that can support all lightpath request sets with load λmax at most W. We extend this result to tree networks and networks with arbitrary topologies. These results show that significant improvements in traffic-carrying capacity can be obtained in WDM network by providing a very limited wavelength conversion capability within the network
Keywords :
channel capacity; network topology; optical fibre networks; telecommunication traffic; wavelength division multiplexing; WDM; channel assignment; fixed wavelength conversion; hub node; lightpaths; limited wavelength conversion; multiwavelength optical networks; network topology; ring networks; selective pairwise wavelength conversion; star network; traffic-carrying capacity; wavelength division multiplexed networks; Asynchronous transfer mode; Circuits; Milling machines; Optical fiber networks; Optical fibers; Optical wavelength conversion; Rivers; WDM networks; Wavelength division multiplexing; Wavelength routing;
Conference_Titel :
INFOCOM '97. Sixteenth Annual Joint Conference of the IEEE Computer and Communications Societies. Driving the Information Revolution., Proceedings IEEE
Conference_Location :
Kobe
Print_ISBN :
0-8186-7780-5
DOI :
10.1109/INFCOM.1997.644498