DocumentCode :
939042
Title :
The wavelength dilation concept in lightwave networks-implementation and system considerations
Author :
Sharony, Jacob ; Cheung, Kwok-Wai ; Stern, Thomas E.
Author_Institution :
Dept. of Electr. Eng., Columbia Univ., New York, NY, USA
Volume :
11
Issue :
5
fYear :
1993
Firstpage :
900
Lastpage :
907
Abstract :
The dilation concept in switching networks is generalized and extended to the wavelength dimension, resulting in a new class of dynamic wavelength-routing cross-connects. These wavelength-dilated switches (WDSs) are reconfigurable and fault-tolerant, and they feature suppressed crosstalk and denser wavelength-spacings. They are scalable, with switch-complexity of αN log2 N, where α is the dilation constant, typically 4.6, and N is the number of ports. It is shown, that by careful wavelength grouping, the crosstalk is reduced significantly. A switch architecture is suggested to fully exploit the advantages of this method. An example is given showing how such a fabric can be used to reduce the coherent crosstalk in wavelength-routing switches based on acoustooptic tunable filters (AOTF), making them practical for networks with subnanometer wavelength spacings. The WDS can be used in a broad range of applications from interconnection networks to wide-area networks (WANs) on a national scale. Large cross connects can support tens of thousands of channels using only few tens of wavelengths
Keywords :
acousto-optical devices; crosstalk; interference suppression; optical communication equipment; optical switches; switching systems; WANs; acoustooptic tunable filters; dynamic wavelength-routing cross-connects; fault-tolerant; interconnection networks; lightwave networks; reconfigurable switches; subnanometer wavelength spacings; suppressed crosstalk; switch architecture; switching networks; wavelength dilation; wavelength grouping; wide-area networks; Crosstalk; Fabrics; Intelligent networks; Jacobian matrices; Optical control; Optical filters; Switches; WDM networks; Wavelength routing; Waves;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.233254
Filename :
233254
Link To Document :
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