DocumentCode :
2896223
Title :
Practical Scalability of Wavelength Routing Switches
Author :
Rodelgo-Lacruz, M. ; López-Bravo, C. ; González-Castaño, F.J. ; Chao, H. Jonathan
Author_Institution :
Galician R&D Center in Adv. Telecommun., Vigo, Spain
fYear :
2009
fDate :
14-18 June 2009
Firstpage :
1
Lastpage :
6
Abstract :
Packet switches with optical fabrics can potentially scale to higher capacities. It is also potentially possible to improve their reliability, and reduce both their footprint and power consumption. A well-known alternative for implementing hardwired switches is Arrayed Waveguide Grating (AWG). Ideally, AWG insertion losses do not depend on the number of input-output ports, meaning that scalability is theoretically infinite. However, accurate second-order assessment has demonstrated that in-band crosstalk exponentially increases the power penalty, limiting the realistic useful size of AWG commercial devices to about 10-15 ports (13-18 dB). On the other hand, the in-band crosstalk at AWG outputs depends on the connection pattern set by the scheduling algorithm and this port count limitation is calculated for worst-case scenarios. In this paper, we show that distributed schedulers with predetermined connection patterns can be used to avoid these harmful arrangements. We also show that the probability of worst-case patterns is very low, allowing us to set a more realistic port limit for general centralized schedulers and very small losses. With these results, we calculate more realistic port count limits for both scheduler types.
Keywords :
optical crosstalk; optical fibre networks; packet switching; telecommunication network routing; arrayed waveguide grating; distributed schedulers; hardwired switches; inband crosstalk; optical fabrics; packet switches; scheduling algorithm; wavelength routing switches; Arrayed waveguide gratings; Energy consumption; Fabrics; Optical crosstalk; Optical packet switching; Optical switches; Optical waveguide theory; Optical waveguides; Scalability; Wavelength routing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications, 2009. ICC '09. IEEE International Conference on
Conference_Location :
Dresden
ISSN :
1938-1883
Print_ISBN :
978-1-4244-3435-0
Electronic_ISBN :
1938-1883
Type :
conf
DOI :
10.1109/ICC.2009.5199357
Filename :
5199357
Link To Document :
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