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Simple, efficient routing schemes for all-optical networks
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Source ACM Symposium on Parallel Algorithms and Architectures archive
Proceedings of the ninth annual ACM symposium on Parallel algorithms and architectures table of contents
Newport, Rhode Island, United States
Pages: 170 - 179  
Year of Publication: 1997
ISBN:0-89791-890-8
Authors
Michele Flammini  Department of Mathematics, University of L'Aquila, Via Vetoio loc. Coppito, I-67100 L'Aquila, Italy
Christian Scheideler  Department of Applied Mathematics and Computer Science, The Weizmann Institute of Science, 76100 Rehovot, Israel
Sponsors
SIGACT: ACM Special Interest Group on Algorithms and Computation Theory
SIGARCH: ACM Special Interest Group on Computer Architecture
Publisher
ACM  New York, NY, USA
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REFERENCES

Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.

 
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K. Bala, T.E. Stern. Algorithms for routing in a linear lightwave network. In Proc. of INFOCOM, pp. 1-9, 1991.
 
3
R.A. Barry, P.A. Humblet. Bounds on the number of wavelengths needed in WDM networks. In LEOS'9# Summer Topical Mtg. Digest, pp. 114-127, 1992.
 
4
R.A. Barry, P.A. Humblet. On the number of wavelengths and switches in all-optical networks. In IEEE Trans. on Communications 42, pp. 583-591, 1994.
 
5
T.A. Birks, D.O. Culverhouse, S.G. Farwell, P.St.J. Russel. 2 X 2 single-mode fiber routing switch. Optics Letters 21, pp. 722-724, 1996.
 
6
C. Brackett. Dense wavelength division multiplexing networks: Principles and applications. IEEE J. Selected Areas in Comm. 8, pp. 373-380, August 1990.
 
7
V.W.S. Chan. All-optical networks. Scientific American, pp. 56-59, Sept. 1995.
 
8
N.K. Chung, K. Nosu, G. Winzer. IEEE JSAC: Special Issue on Dense WDM Networks 8. 1990.
9
 
10
 
11
R.D. Gitlin, Z. Haas. Field coding: A high-speed 'almostall' optical interconnect. $Sth Ann. Conf. Information Sci. Syst. CISS (Baltimore, MD), March 20-22, 1991.
 
12
P.E. Green. Fiber-Optic Communication Networks. Prentice Hall, 1992.
 
13
Z. Haas. The 'staggering switch': an 'almost-all' optical packet switch. In Tech. Dig. Optical Fiber Commun. Conf. 0FC'92 (San Jos#, CA), paper WH6.
 
14
 
15
G.R. Hill, P.J. Chidgey et al. A transport network layer based on optical network elements. J. of Lightwave Techn. 11, pp. 667-677, 1993.
 
16
H.S. Hinton. Architectural considerations for photonic switching networks. IEEE J. Selected Areas in Comm. 6, pp. 1209-1226, August 1988.
 
17
 
18
K.C. Lee, V.O.K. Li. A wavelength-convertible optical network. J. of Lightwave Techn. 11, pp. 962~970, 1993.
 
19
A. Lubotzky, R. Phillips, R. Sarnak. Ramanujan graphs. Combinatorica 8(3), pp. 261-277, 1988.
 
20
F. Matera, S. Settembre. All optical implementations of high capacity TDMA networks. Fiber and Integrated Optics 12, pp. 173-186, 1993.
 
21
 
22
 
23
S. Personick. Review of fundamentals of optical fiber systems. IEEE J. Selected Areas in Comm. 3, pp. 373-380, April 1983.
 
24
25
 
26
R. Ramaswami. Multi-wavelength lightwave networks for computer communication. IEEE Communications Magazine 31, pp. 78-88, 1993.
 
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Collaborative Colleagues:
Michele Flammini: colleagues
Christian Scheideler: colleagues