DocumentCode
1560530
Title
Architectural design for multistage 2-D MEMS optical switches
Author
Shen, Gangxiang ; Cheng, Tee Hiang ; Bose, Sanjay K. ; Lu, Chao ; Chai, Teck Yoong
Author_Institution
NTRC, Nanyang Technol. Univ., Singapore
Volume
20
Issue
2
fYear
2002
fDate
2/1/2002 12:00:00 AM
Firstpage
178
Lastpage
187
Abstract
Next-generation wavelength routing optical networks requiring optical cross connects (OXC) in the network have the ability to direct optical signals from any input interface to suitable output interfaces by configuring their internal embedded optical switch matrices. Microelectromechanical systems (MEMS) switches are regarded as the most promising technology to achieve such functionality. We consider the construction of a multistage MEMS switch network with single two-dimensional (2-D) MEMS switch blocks. A power loss model is developed that calls on a single MEMS block that is then used to develop the model for a three-stage Clos network. An effective model for maximum loss difference between calls is also developed. Based on these, the paper also proposes three connection patterns [Max + Min greedy (MMG), compressed extended generalized shuffle 1 (C-EGS-1), and compressed extended generalized shuffle 2 (C-EGS-2)] to connect outlet ports and inlet ports between two neighboring stages in a three-stage Clos network. These connection patterns are proved to be optimal and efficient enough to reach the minimums of both the maximum power loss of calls and the maximum loss difference between calls
Keywords
micromechanical devices; optical fibre networks; optical switches; telecommunication network routing; C-EGS-1; C-EGS-2; Clos network; MEMS block; MMG; Max+Min greedy patterns; OXC; architectural design; calls; compressed extended generalized shuffle 1; compressed extended generalized shuffle 2; connection patterns; functionality; inlet ports; input interface; internal embedded optical switch matrices; maximum loss difference; maximum power loss; microelectromechanical systems; multistage 2D MEMS optical switches; multistage MEMS switch network; network; next-generation wavelength routing optical networks; optical cross connects; optical signals; outlet ports; output interfaces; power loss model; single two-dimensional MEMS switch blocks; three-stage Clos network; Microelectromechanical systems; Micromechanical devices; Microswitches; Next generation networking; Optical design; Optical fiber networks; Optical losses; Optical switches; Two dimensional displays; Wavelength routing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.983230
Filename
983230
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