Skip to main content
Log in

Optical Networks Magazine, Volume 3, Number 3

  • Published:
Optical Networks Magazine

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

References

A joint lightpath routing approach in survivable optical networks

  1. C. Xin, Y. Ye, S. Dixit and C. Qiao, “A Joint Lightpath Routing Approach in Survivable Optical Networks”, Proc. Apoc 01, Nov 12–16, Beijing, China.

  2. A.M. Odlyzko, “Internet growth: Myth and reality, use and abuse”, J. Computer Resource Management, April 2001. http://www.research.att.com/ ~amo/doc/complete.html.

  3. Ramesh Bhandari, “Survivable Networks—Algorithms for Diverse Routing”, 1999, Kluwer Academic Publishers.

  4. R. Ramaswami and K.N. Sivarajan, “Routing and Wavelength Assignment in All-Optical Networks”, IEEE/ACM Trans. on Networking, vol. 3, Oct. 1995.

  5. D. Banerjee and B. Mukherjee, “A Pratical Approach for Routing and Wavelength Assignment in Large Wavelength-Routed Optical Networks”, IEEE J. Selected Areas in Communication, vol. 14, June 1996.

  6. V. Anand, C. Qiao, “Dynamic Establishment of Protection Paths in WDM Networks”, ICCCN 2000, Oct 2000, Las Vegas, USA (a comprehensive version is to appear in J. High Speed Network, special issues on Survivable Optical Networks. 2001).

  7. M. Kodianlam and T.V. Lakshman, “Dynamic Routing of Bandwidth Guranteed Tunnels with Restoration”, Infocom 2000, Mar. 26–30, 2000, Tel-Aviv, Israel.

  8. William Stallings, “High-Speed Network—TCP/IP and ATM Design Principles”, 1998, Prentice Hall.

  9. A.Mokhtar and M. Azizoglu, “AdaptiveWavelength Routing in All-Optical Networks”, IEEE/ACM Trans. on Networking, vol. 6, April 1998.

  10. G. Sahin and M.Azizoglu,“Optical Layer Survivability: Single Service Class Case”, Proc. Opticomm 2000,Opticomm 2000,Oct. 2000, Richardson,TX.

  11. J. Strand, A. Chiu and R. Tkach, “Issues For Routing In The Optical Layer”, IEEE Communication Magazine, Feb., 2001, pp. 81–87.

  12. J.W. Suurballe, and R.E. Tarjan, “A Quick Method for Finding Shortest Pairs of Disjoint Paths”, Networks, Vol. 14, 1984, pp. 325–336.

    Google Scholar 

  13. J. Jue, G. Xiao, “An Adaptive Routing Algorithm for Wavelength-Routed Optical Networks with a Distributed Control Scheme”, ICCCN 2000, Oct. 16–18, 2000, Las Vegas, Nevada, USA.

Fiber span failure protection in mesh optical networks

  1. R. Doverspike, S. Phillips, J. Westbrook, “Transport network architectures in an IP World”, IEEE INFOCOM, March, 2000.

  2. S. Phillips, “Trim: a tool for design backbone networks,” Technical Memorandum, AT & T labs (internal publication), 2000.

  3. S. Phillips, J.Westbrook, “Cplan: a network capacity and restoration planning toolkit,” Technical Memorandum, AT & T labs (internal publication), 1998.

  4. G. Li, R. Doverspike, and C. Kalmanek, “Fiber Span Failure Protection in Mesh Optical Networks,” OptiComm, Denver, CO 2001.

  5. G. Li, D. Wang, C. Kalmanek, R. Doverspike, “Efficient Distributed Path Selection for Shared Restoration Connections,” to appear in IEEE INFOCOM 2002.

  6. B. Carre, “Graphs and networks,” Clarendon Press, Oxford, 1979.

  7. M. Garey and D. Johnson, “Computers and intractability: a guide to the theory of NP-completeness,” W.H. Freemand and Company, New York-San Francisco, 1979.

  8. B. Ryu, M. Murata, and H. Miyahara, “Design method for highly reliable virtual path based ATM networks,” IEICE Transactions on Communications, vol E79-B (10), pp. 1500-1514, 1996.

    Google Scholar 

  9. W. Grover, R. Iraschko, and Y. Zheng, “Comparative methods and issues in design of mesh restorable STM and ATM networks,” Telecommunication Network Planning, pp. 169-200, 1999.

  10. Y. Xiong and L. Mason, “Restoration strategies and spare capacity requirements in self-healing ATM networks,” IEEE/ACM Transaction on Networking, vol 7(1), pp. 98-110, 1999.

    Google Scholar 

  11. B. Caenegem, W. Parys, F. Turck, and P. Demeester, “Dimensioning of survivable WDM networks,” IEEE Journal on Selected Areas of Communications, vol 16(7), pp. 1146-1157, 1998.

    Google Scholar 

  12. S. Ramamurthy and B. Mukherjee, “Survivable WDM mesh networks part I-protection,” IEEE INFOCOM, 1999.

  13. M. Kodialam and T. Lakshman, “Dynamic routing of bandwidth guaranteed tunnels with restoration,” IEEE INFOCOM, 2000.

  14. B. Jager and D. Tipper, “On fault recovery priority in ATM networks,” IEEE international communication conference’ 98, 1998.

  15. T. Oh, T. Chen, and J. Kennington, “Fault restoration and spare capacity allocation with QoS constraints for MPLS networks,” IEEE Global Communication Conferences, 2000.

  16. H. Sakauchi, Y. Nishimura, and S. Hasegawa, “A self-healing network with an economical sparechannel assignment,” IEEE Global Communications Conference, pp. 438-442, 1990.

  17. Y. Liu, D. Tipper, and P. Siripongwutikorn, “Approximating Optimal Spare Capacity Allocation by Successive Survivable Routing,” IEEE INFOCOM, 2001.

  18. M. Herzberg, S. Bye, and A. Utano, “The hop-limited approach for spare-capacity assignment in survivable networks,” IEEE/ACM Transactions on Networking, vol(3), pp. 775-784, 1995.

  19. R. Iraschko, M. MacGregor, and W. Grover, “Optimal capacity placement for path restoration in mesh survivable networks,” IEEE ICC, pp. 1568-1574, 1996.

  20. Y. Ye and S. Dixit, “On Joint Protection/Restoration in IP-centric DWDM-based optical transport networks,” IEEE Communications Magazine, pp. 174-183, June 2000.

  21. M. Sridharan, M. Salapaka, A. Somani, “Operating mesh-survivable WDM transport networks,” Terabit optical networking: architecture, control, and management issues, Proceedings of SPIE, vol(4213), pp. 113-123, 2000.

  22. A. Fumagalli and L. Valcarenghi, “Fast optimization of survivable WDM mesh networks based on multiple self-healing rings,” All Optical Networking 1999: architecture, control, and management issues, Proceedings of SPIE, vol(3843), pp. 44-55, 1999.

  23. R. Doverspke and J. Yates, “Challenges for MPLS in optical network restoration,” IEEE Communications Magazine, pp. 89-97, Feb. 2000.

  24. W. Grover, “The self healing network: a fast distributed restoration technique for networks using digital cross connect machines,” IEEE INFOCOM, pp. 1090-1095, 1987.

  25. D. Dunn, W. Grover, and M. MacGregor, “Comparison of k-shortest paths and maximum flow routing for network facility restoration,” IEEE Journal on Selected Areas of Communications, vol 2 (1), pp. 88-99, 1994.

    Google Scholar 

  26. Ramesh Bhandari, “Survivable networks: algorithm for diverse routing,” Kluwer Academic Publishers, 1999.

  27. J. Strand, A. Chiu, and R. Tkach, “Issues for routing in the optical Layer,” IEEE Communication Magazine, Feb. 2001.

  28. K. Kompella et al., “Link bundling in MPLS traffic engineering,” IETF Internet draft, draft-kompellampls-bundle-05.txt, working in progress, March 2001.

  29. D. Papadimitriou et al., “Inference of Shared Risk Link Groups,” OIF contribution oif2001-066, July 2001.

Shared protection routing algorithm for optical networks

  1. Rajiv Ramaswami, Kumar N. Sivarajan, “Optical Networks”, pp. 430–434.

  2. HuiZang, Biswanath Mukherjee, “Connectionmanagement for survivable wavelength-routed WDM mesh networks”, Optical Networks Magazine, July/ August 2001, pp. 17–28.

  3. Levy, D.S., Sarathy, J., Younghye Kwon, Al-Salameh, D.Y., “Optical layer shared protection using an IP-based optical control network”, Optical Fiber Communication Conference and Exhibit, 2001. Vol.2, 2001, pp.TuO8-1-TuO8-3.

    Google Scholar 

  4. Arijs, P., Demeester, P. “The merit of shared and dedicated protection WDM rings in a hybrid network design”, Optical Fiber Communication Conference, 2000, Vol.4, pp. 93–95.

    Google Scholar 

  5. S. Ramamurthy, B. Mukherjee, “Survivable WDM Mesh Networks: Part I – Protection”, Proceedings, IEEE INFOCOM’ 99, Vol. 2, 1999, pp. 744–751.

    Google Scholar 

  6. Christian Mauz, “Allocation of Spare Capacity for Shared Protection of Optical Paths in Transport Networks”, Third International Workshop on Design of Reliable Communication Networks (DRCN2001).

  7. Ching-Fong Su, Xun Su, “Protection path routing on WDM networks”, OFC2001, TuO2-1.

  8. Vishal Anand, Chunming Qiao, “Dynamic Establishment of Protection Paths in WDM Networks: Part I”, Proceedings, 9th International Conference on Computer Communication and Networks (IC3N 300), pp. 198–204.

  9. Pin-Han Ho, H.T. Mouftah, “SLSP: A new path protection scheme for the optical Internet”, OFC2001, TuO1-1.

Quality of protection (QoP): a quantitative unifying paradigm to protection service grades

  1. S. Cosares and I. Saniee, “An optimization problem to balancing loads on SONET rings,” Telecommunication Systems, vol. 3, pp. 165-181.

  2. B.T. Doshi, S. Dravida, P. Harshavardhana, O. Hauser, and Y. Wang, “Optical network design and restoration,” Bell Labs Technical Journal, pp. 58-84, Jan-Mar 1999.

  3. J. Doucette and W.D. Grover, “Influcence of modularity and economy-of-scale effects on design ofmesh-restorable DWDM networks,” J. Selected Areas in Communications, special issue on “Protocols and Architectures for Next Generation Optical WDM Networks,” vol. 18, no. 10, pp. 1912-1923, Oct. 2000.

    Google Scholar 

  4. A. Frank, T. Nishizeki, N. Saito, H. Suzuki, and E. Tardos, “Algorithms for routing around a rectangle,” Discrete Applied Math, vol. 40, pp. 363-378, North Holland, 1992.

    Google Scholar 

  5. A. Fumagalli and M. Taaca, “Optimal design of optical ring networks with differentiated reliability (DiR),” Proc. International Workshop on QoS in multiservice IP networks, Rome Italy, Jan. 2001.

  6. A. Fumagalli and M. Taaca, “Differentiated reliability (DiR) in WDM rings without wavelength converters,” Proc. ICC 2001, Helsinki Finland, June 2001.

  7. N. Golmie, T.D. Ndousse, and D.H. Su, “A differentiated optical service for WDM networks,” IEEE Communications Magazine, pp. 68-73, Feb. 2000.

  8. O. Gerstel and R. Ramaswami, “Optical layer survivability— a service perspective,” IEEE Communications Magazine, vol. 38, no. 3, pp. 104-113, March 2000.

    Google Scholar 

  9. O. Gerstel and R. Ramaswami, “Optical layer survivability— an implementation perspective,” J. Selected Areas on Communications, special issue on “Protocols and Architectures for Next Generation Optical WDM Networks,” vol. 18, no. 10, pp. 1885-1899,Oct. 2000.

    Google Scholar 

  10. R.R. Iraschko, M.H. MacGregor, and W.D. Grover, “Optimal capacity placement for path restoration in STM or ATM mesh-survivable networks,” IEEE/ ACM Transactions on Networking, vol. 6, no. 3, pp. 325-336, June 1998.

    Google Scholar 

  11. C. Labovitz, A. Ahuja, and F. Jahanian, “Experimental study of Internet stability and wide-area backbone failures,” Technical report CSE-TR-382-98, U. Michigan, 1998. url:www.eecs.umich.edu/ techreports/CSE/1998/CSE-TR-382-98.pdf

  12. G. Mohan and A. Somani, “Routing dependable connections with specified failure restoration guarantees in WDM networks,” Proc. IEEE Infocom 2000, Tel-Aviv, March 2000.

  13. V. Paxson, “End-to-end routing behavior in the Internet,” IEEE/ACM Transactions on Networking, vol. 5, no. 5, pp. 601-615, Oct. 1997.

    Google Scholar 

  14. S. Ramamurthy and B. Mukherjee, “Survivable WDM mesh networks,” Proc. IEEE Infocom 99, March 1999.

  15. A.M. Saleh, “Transparent optical networking for the backbonenetwork,” Proc. OFC’ 00, Paper ThD7, March 2000.

  16. R. Vachani, A. Shulman, P. Kubat, and J. Ward, “multicommodity flows in ring networks,” INFORMS Journal of Computing, vol. 8, no. 3, pp. 235-242, 1996.

    Google Scholar 

  17. P. Veitch, I. Hawker, and G. Smith, “Administration of restorable virtual path mesh networks,” IEEE Communications Magazine, vol. 34, no. 12, pp. 96-102, December 1996.

    Google Scholar 

Routing differentiated reliable connections in WDM optical networks

  1. I. Chlamtac, A. Ganz, and G. Karmi, “Lightpath Communications: An Approach toHigh Bandwidth Optical WANs”, IEEE Transactions on Communications, vol. 40, no. 7, pp. 1171-1182, July 1992.

    Google Scholar 

  2. R. Ramaswami and K. N. Sivarajan, “Routing and Wavelength Assignment in All-Optical Networks”, IEEE/ACM Transactions on Networking, vol. 3, no. 5, pp. 489-500, October 1995.

    Google Scholar 

  3. A.Mokhtar and M. Azizoglu, “AdaptiveWavelength Routing in All-Optical Networks”, IEEE/ACM Transactions on Networking, vol. 6, pp. 197-206, April 1998.

    Google Scholar 

  4. K. Bala, T. Stern, and K. Simchi, “Routing in Linear Lightwave Networks”, IEEE/ACM Transactions on Networking, vol. 3, pp. 459-469, August 1995.

    Google Scholar 

  5. D. Banerjee and B. Mukherjee, “A Practical Approach for Routing and Wavelength Assignment in Large Wavelength Routed Optical Networks”, IEEE Journal on Selected Areas in Communications, vol. 14, no. 5, pp. 903-908, June 1996.

    Google Scholar 

  6. H. Harai, M. Murata, and H. Miyahara, “Performance of Alternate Routing Methods in All-Optical SwitchingNetworks”, Proc. IEEE INFOCOM1997.

  7. G. Mohan and C. S. R. Murthy, “Efficient Rerouting in WDM Single-Fiber and Multi-Fiber Networks with and without Wavelength Conversion”, Journal of High Speed Networks, vol. 8, pp. 149-171, 1999.

    Google Scholar 

  8. S. Ramamurthy and B. Mukherjee, “Survivable WDM Mesh Networks, Part I-Protection”, Proc. IEEE INFOCOM 1999, pp. 744-51.

  9. S. Ramamurthy and B. Mukherjee, “Survivable WDM Mesh Networks, Part II-Restoration”, Proc. ICC'99, 1999.

  10. G. Mohan and C. S. R. Murthy, “Routing and Wavelength Assignment for Establishing Dependable Connections in WDM Networks”, Proc. IEEE Int'l Symp. Fault-Tolerant Computing, pp. 94-101, June 1999.

  11. G.Mohan, C. S. R. Murthy, and A. K. Somani, “Efficient Algorithms for RoutingDependable Connections in WDM Optical Networks”, IEEE/ACM Transactions on Networking, vol. 9, no. 5, pp. 553-566, October 2001.

    Google Scholar 

  12. B. T. Doshi, S. Dravid, P. Harshavardhana, O. Hauser, and Y. Wang, “Optical Network Design and Restoration”, Bell Labs Technical Journal, pp. 58-84, January/March 1999.

  13. N. Nagatsu, S. Okamoto, and K. Sato, “Optical Path Cross-Connect System Scale Evaluation using Path Accommodation Design for Restricted Wavelength Multiplexing”, IEEE Journal on Selected Areas in Communications, vol. 14, no. 5, pp. 893-902, June 1996.

    Google Scholar 

  14. M. Alanyali and E. Ayanoglu, “Provisioning Algorithms for WDM Optical Networks”, IEEE/ACM Transactions on Networking, vol. 7, no. 5, pp. 767-78, October 1999.

    Google Scholar 

  15. S. Baroni, P. Bayvel, R. J. Gibbens, and S. K. Korotky, “Analysis and Design of Resilient Multi-Fiber Wavelength Routed Optical Transport Networks”, IEEE/OSA Journal of Lightwave Technology, vol. 17, no. 5, pp. 743-58, May 1999.

    Google Scholar 

  16. S. Bandyopadhyay, A. Sengupta, and A. Jaekel, “Fault-Tolerant Routing Scheme for All-Optical Networks”, Proc. SPIE Conference on All-Optical Communication Systems, 1998.

  17. V. Anand and C. Qiao, “Dynamic Establishment of Protection Paths in WDM Networks, Part-I”, Int'l Conf. on Computer Communications and Networks, October 2000.

  18. N. Ghani, “Survivability Provisioning in Optical MPLS Networks”, 5 th European Conference on Networks and Optical Communications (NOC), June 2000.

  19. C. S. Li and R. Ramaswami, “Automatic Fault Detection, Isolation, and Recovery in Transparent All-Optical Networks”, IEEE/OSA Journal of Lightwave Technology, vol. 15, no. 10, pp. 1784-1793, October 1997.

    Google Scholar 

  20. M. Sridharan and A. K. Somani, “Revenue Maximization in Survivable WDM Networks”, Proc. SPIE Optical Networking and Communications, vol. 4233, pp. 291-302, 2000.

    Google Scholar 

  21. A. Fumagalli and M. Tacca, “Optimal Design of Differentiated Reliability (DiR) Optical Ring Networks”, Int'l Workshop on QoS in Multiservice IP Networks (QoS-IP) 2001, January 2001.

  22. A. Fumagalli and M. Tacca, “Differentiated Reliability (DiR) in WDM Ring without Wavelength Converters”, Proc. ICC'00, 2000.

  23. G.Mohan and C. S. R. Murthy, “Lightpath Restoration inWDM Networks”, IEEE Network Magazine, vol. 14, pp. 24-32, November/December 2000.

    Google Scholar 

  24. T. Wu, “Emerging Technologies for Fiber Network Survivability”, IEEE Communications Magazine, vol. 33, pp. 58-74, February 1995.

    Google Scholar 

  25. Y. Ye, S. Dixit, and M. Ali, “On Joint Protection/ Restoration in IP-Centric DWDM-Based Optical Transport Networks”, IEEE Communications Magazine, vol. 38, pp. 174-183, June 2000.

    Google Scholar 

  26. Z. Wang, “On the Complexity of Quality of Service Routing”, Information Processing Letters, vol. 69, pp. 111-114, 1999.

    Google Scholar 

  27. Z. Whang and J. Crowcroft, “Quality of Service Routing for Supporting Multimedia Applications”, IEEE Journal on Selected Areas in Communications, vol. 14, no. 7, pp. 1228-1234, September 1996.

    Google Scholar 

  28. G. S. Glaes emann and D. J. Walter, “Method for Obtaining Long-Length Strength Distributions for Reliability Predictions”, SPIE Journal on Optical Engineering, vol. 30, no. 6, pp. 746-748, June 1991.

    Google Scholar 

  29. G. S. Glaes emann and S. T. Gulati, “Design Methodology for the Mechanical Reliability of Optical Fiber”, SPIE Journal on Optical Engineering, vol. 30, no. 6, pp. 709-715, June 1991.

    Google Scholar 

  30. G. S. Glaes emann, “Advancements in Mechanical Strength and Reliability of Optical Fibers”, Proc. SPIE Reliability of Optical Fibers and Optical Fiber Systems, vol. CR73, September 1999.

  31. M. J. Matthewson, “Optical Fiber Reliability Models”, Proc. SPIE Fiber Optics Reliability and Testing, Critical Reviews of Optical Science and Technology, vol. CR50, September 1993.

  32. O. Gerstel, R. Ramaswami, and G. Sasaki, “Cost Effective Traffic Grooming in WDM Rings”, IEEE/ACM Transactions on Networking, vol. 8, no. 5, pp. 618-630, October 2000.

    Google Scholar 

  33. X. Zhang and C. Qiao, “An Effective and Comprehensive Approach for Traffic Grooming and Wavelength Assignment in SONET/WDM Rings”, IEEE/ACM Transactions on Networking, vol. 8, no. 5, pp. 608-617, October 2000.

    Google Scholar 

  34. P. J. Wan, G. Calinescu, L. Liu, and O. Frieder, “Grooming of Arbitrary Traffic in SONET/WDM BLSRs”, IEEE Journal on Selected Areas in Communications, vol. 18, no. 10, pp. 1995-2003, October 2000.

    Google Scholar 

  35. S. Han and K. G. Shin, “Efficient Spare Resource Allocation for Fast Restoration of Real-Time Channels from Network Component Failures”, Proc. IEEE Real-Time Systems Symposium, RTSS, 1997.

Lightpath management of logical topology with incremental traffic changes for reliable IP over WDM networks

  1. M. Murata, “Challenges for the next-generation Internet and the role of IP over photonic networks,” IEICE Transaction on Communications, vol. E83-B, pp. 2153-2165, October 2000.

    Google Scholar 

  2. John L. Wei, Chang-Dong LIU, Sung-Yong PARK, Kevin H. LIU, Ramu S. Ramamurthy, Hyogon KIM, and Mari W. MAEDA, “Network control and management for the next generation Internet,” IEICE Transaction on Communications, vol. E83-B, pp. 2191-2209, October 2000.

    Google Scholar 

  3. S. Ramamurthy and B. Mukherjee, “Survivable WDM mesh networks,” Proceeding of IEEE INFOCOMM’ 99, pp. 744-751, March 1999.

  4. S. Arakawa, M. Murata, and H. Miyahara, “Functional partitioning for multi-layer survivability in IP over WDM networks,” IEICE Transactions on Communications, vol. E83-B, pp. 2224-2233, October 2000.

    Google Scholar 

  5. V. Anand and C. Qiao, “Dynamic establishment of protection paths in WDM networks, part i,” Proceedings of the 9th IEEE International Conference on Computer Communications and Networks (IC3N 2000), Oct. 2000.

  6. R. Ramaswami and K. N. Sivarajan, “Design of logical topologies for wavelength-routed optical networks,” IEEE Journal on Selected Areas in Communications, vol. 14, pp. 840-851, June 1996.

    Google Scholar 

  7. J-F. P. Labourdette, F. W. Hart, and A. S. Acampora, “Branch-exchange sequences for reconfiguration of lightwave networks,” IEEE Transactions on Communications, vol. 42, no. 10, pp. 2822-2832, 1994.

    Google Scholar 

  8. I. Baldine and G. N. Rouskas, “Traffic adaptive WDM networks: A study of reconfiguration issues,” IEEE Journal of Lightwave Technology, vol. 19, no. 4, pp. 433-455, 2001.

    Google Scholar 

  9. I. Baldine and G. N. Rouskas, “Dynamic reconfiguration policies in multihop WDM networks,” Journal of High Speed Networks, vol. 4, no. 3, pp. 221-238, 1995.

    Google Scholar 

  10. D. O. Awduche, “MPLS and traffic engineering in IP networks,” IEEE Communications, pp. 42-47, December 1999.

  11. C. Huang, V. Sharma, S. Makam, and K. Owens, “A path protection/restoration mechanism for MPLS networks,” IETF Internet Draft, 2000.

  12. R. Ramaswami and K. N. Sivarajan, “Design of logical topologies for wavelength-routed optical networks,” IEEE Journal on Selected Areas in Communications, vol. 14, pp. 840-851, June 1996.

    Google Scholar 

  13. “CPLEX homepage,” http://www.cplex.com.

Design for upgradability in mesh-restorable optical networks

  1. http://www.bell labs.com.

  2. http://www.ciena.com.

  3. P.F. Fonseca, “Pan-europeanmulti-wavelength transport networks:Network design, architecture, survivability and sdh networking,” Proceedings of the 1st International Workshop on Reliable Communication Networks, May 17-20, Paper P3 1998.

  4. J. Sonosky, “Service applications for sonet dcs distributed restoration,” IEEE Journal of Selected Areas in Communications, vol. 12, pp. 59-68, January 1994.

    Google Scholar 

  5. O. Gerstel and R. Ramaswami, “Optical layer survivability— an implementation perspective,” IEEE Journal of Selected Areas in Communications, vol. 18, no. 10, pp. 1885-1899, October 2000.

    Google Scholar 

  6. O. Crochat, J.Y. Boudec, and O. Gerstel, “Protection interoperability for wdm optical networks,” IEEE/ACM Transactions on Networking, vol. 8, no. 3, pp. 384-395, June 2000.

    Google Scholar 

  7. J. Kroculick and C. Hood, “Provisioning multilayer resilience in multiservice optical networks,” OptiComm: Optical Networking and Communications, pp. 30-41, October 2000.

  8. Y. Miyao and H. Saito, “Optimal design and evaluation of survivable wdm transport networks,” IEEE Journal of Selected Areas in Communications, vol. 16, no. 7, pp. 1190-1198, September 1998.

    Google Scholar 

  9. S. Ramamurthy and B. Mukherjee, “Survivable wdm mesh networks, part i—protection,” IEEE INFOCOM, vol. 2, pp. 744-751, March 1999.

    Google Scholar 

  10. B.V. Caenegem, W.V. Parys, F. De Turck, and P.M. Demeester, “Dimensioning of survivable wdm networks,” IEEE Journal of Selected Areas in Communications, vol. 16, no. 7, pp. 1146-1157, September 1998.

    Google Scholar 

  11. O. Crochat and J.Y. Boudec, “Design protection for wdm optical networks,” IEEE Journal of Selected Areas in Communications, vol. 16, no. 7, pp. 1158-1165, September 1998.

    Google Scholar 

  12. B.T. Doshi, S. Dravida, P. Harshavardhana, O. Hauser, and Y.Wang, “Optical network design and restoration,” Bell Labs Technical Journal, pp. 58-83, January–March 1999.

  13. M. Alanyali and E. Ayanoglu, “Provisioning algorithms for wdm optical networks,” IEEE INFOCOM, vol. 2, pp. 910-918, March 1998.

    Google Scholar 

  14. G. Ellinas, A.G. Hailemariam, and T.E. Stern, “Protection cycles in mesh dwdm networks,” IEEE Journal of Selected Areas in Communications, vol. 18, no. 10, pp. 1924-1937, October 2000.

    Google Scholar 

  15. D. Banerjee and B. Mukherjee, “Wavelengthrouted optical networks: Linear formulation, resource budgeting tradeoffs, and a reconfiguration study,” IEEE/ACM Transactions on Networking, vol. 8, no. 5, pp. 598-607, October 2000.

    Google Scholar 

  16. J. Doucette and W.D. Grover, “Influence of modularity and economy-of-scale effects on design of mesh-restorable dwdm networks,” IEEE Journal of Selected Areas in Communications, vol. 18, no. 10, pp. 1912-1923, October 2000.

    Google Scholar 

  17. M. Sridharan, M.V. Salapaka, and A.K. Somani, “Operating mesh-survivable wdm transport networks,” SPIE International Symposium on SPIE Terabit Optical Networking: Terabit Optical Networking, pp. 113-123, November 2000.

  18. M. Sridharan, A.K. Somani, and M.V. Salapaka, “Approaches for capacity and revenue optimization in survivable wdm networks,” Journal of High Speed Networks, vol. 10, no. 2, pp. 109-125, August 2001.

    Google Scholar 

  19. R. Ramaswamy and K.N. Sivarajan, “Routing and wavelength assignment in all-optical networks”, IEEE/ACMTransactions on Networking, vol. 3, no. 5, pp. 489-500, October 1995.

    Google Scholar 

  20. B. Mukherjee, Optical Communication Networks, McGraw-Hill, New York, 1997.

    Google Scholar 

  21. J.P. Jue, D. Datta, and B.Mukherjee, “A new node architecture for scalable wdm optical networks,” IEEE International Conference on Communications, vol. 3, pp. 1714-1718, 1999.

    Google Scholar 

  22. A.K. Somani and M. Mina, “On trading wavelengths with fibers: A cost-performance based study,” Thirty-Eighth Annual Allerton Conference On Communication, control and Computing, pp. 1274-1283, October 2000.

  23. http:://www.cplex.com ILOG CPLEX 7.0 Reference Manual.

  24. S.V. Kartalopoulos, Introduction to DWDM Technology, New York: IEEE Press and SPIE Optical Engineering, 2000.

    Google Scholar 

Traffic grooming for survivable WDM mesh networks

  1. “CorWave LR,” http://www.corvis.com/products/ LR.htm.

  2. S. Han and K. G. Shin, “Efficient Spare-Resource Allocation for Fast Restoration of Real-Time Channels fromNetwork Component Failures,” Proc. 18th IEEE Real-Time Systems Symposium, pp. F99-108, 1997.

  3. R. Ramaswami and K. N. Sivarajan, “Routing and wavelength assignment in all-optical networks,” IEEE/ACM Trans. Networking, vol. 3, no. 5, pp. 489-500, Oct. 1995.

    Google Scholar 

  4. I. Chlamtac, A. Ganz and G. Karmi, “Lightpath Communications: An approach to high bandwidth optical WANs,” IEEE Trans. Commun., vol. 40, pp. 1171-1182, Jul. 1992.

    Google Scholar 

  5. S. Subramaniam and R. A. Barry, “Wavelength Assignment in Fixed Routing WDM Networks,” in Proc. IEEE ICC, pp. 406-410, Nov. 1997.

  6. A.Mokhtar and M. Azizoglu, “AdaptiveWavelength Routing in All-Optical Networks,” IEEE/ACM Trans. on Networking, vol. 6, no. 2, pp. 197-206, Apr. 1998.

    Google Scholar 

  7. X. Zhang and C. Qiao, “Wavelength Assignment for Dynamic Traffic in Multi-fiber WDM Networks,” Proc. Intl. Conf. on Comp. Comm. and Networks, pp. 479-485, 1998.

  8. A. Girard, Routing and Dimensioning in Circuit Switched Networks, Addison-Wesley, 1990.

  9. M. Kovacevic and A. Acampora, “Benefits of Wavelength Translation in All-Optical Clear-Channel Networks,” IEEE J. on Sel. Areas in Comm., vol. 14, no. 5, pp. 868-880, Jun. 1996.

    Google Scholar 

  10. R. Barry and P. Humblet, “Models of blocking probability in all-optical networks with and without wavelength changers,” IEEE J on Sel. Areas in Comm., vol. 14, no. 5, pp. 858-867, Jun. 1996.

    Google Scholar 

  11. J. Jue and G. Xiao, “An Adaptive Routing Algorithm for Wavelength-Routed Optical Networks with a Distributed Control Scheme,” Proc. 9th Intl. Conf. on Comp. Comm. and Networks, pp. 192-197, 2000.

  12. H. Harai, M. Murata, and H. Miyahara, “Performance of Alternate Routing Methods in All-Optical Switching Networks,” Proc. IEEE INFOCOM'97, 516-524, 1997.

  13. L. Li and A. K. Somani, “Fiber Requirement in Multifiber WDM Networks with Alternate-Path Routing,” Proc. 8th Intl. Conf. on Comp. Comm. and Networks, 1999.

  14. R. Ramaswami and K. Sivarajan, Optical Networks: A Practical Perspective, Morgan Kaufmann, 1998.

  15. J. Armitage, O. Crochat and J.-Y. Le Boudec, Design of a Survivable WDM Photonic Network, Proc. IEEE INFOCOM'97, pp. 244-252, Apr. 1997.

  16. A. Fumagalli et al., “Survivable Networks Based on Optimal Routing and WDM Self-Healing Rings,” Proc. IEEE INFOCOM'99, pp. 726-733,Mar. 1999.

  17. S. Ramamurthy and Biswanath Mukherjee, “Survivable WDM Mesh Networks, Part I-Protection,” Proc. IEEE INFOCOM'99, pp. 744-751.

  18. Y. Miyao and H. Sitao, “Optimal Design and Evaluation of Survivable WDM Transport Networks,” IEEE Journal on Selected Areas in Communications, vol. 16, no. 7, pp. 1190-1198, Sept 1998.

    Google Scholar 

  19. G. Mohan and C. Siva Ram Murthy, “Routing and wavelength assignment for establishing dependable connections in WDM networks,” 29th Annual International Symposium on Fault-Tolerant Computing, 1999, pp. 94-101, 1999.

  20. G. Mohan and A. K. Somani, “Routing Dependable Connections with Specified Failure Restoration Guarantees in WDM Networks,” Proc. IEEE INFOCOM’ 00, Vol. 3, pp. 1761-1770, Mar. 1999.

    Google Scholar 

  21. V. Anand and C. Qiao,“Dynamic Establishment of Protection Paths in WDM Networks,” Proc. ICCCN'00, pp. 198-204.

  22. H. Zhang, J. P. Jue, and B. Mukherjee, “A Review of Routing and Wavelength Assignment Approaches for Wavelength-Routed Optical WDM Networks,” Optical Networks Magazine, Vol. 1, No. 1, pp. 47-60, Jan. 2000.

    Google Scholar 

  23. O. Gerstel, R. Ramaswami, and G. Sasaki, “Cost-Effective Traffic Grooming in WDM Rings”, Proc. IEEE INFOCOM'98, pp. 69-77.

  24. O. Gerstel, P. Lin, and G. Sasaki, “Combined WDM and SONET Design”, Proc. IEEE INFOCOM’ 99, pp. 734-743.

  25. A. L. Chiu and E. H. Modiano, “Reducing Electronic Multiplexing Costs in Unidirectional SONET/WDM Ring Networks Via Efficient Traffic Grooming”, Globecom’ 98, Nov. 1998.

  26. X. Zhang and C. Qiao, “An Effective and Comprehensive Solution to Traffic Grooming and Wavelength Assignment in SONET/WDM Rings”, Proc. SPIE conf. on All-Optical Networking, Nov. 1998.

  27. S. Thiagarajan and A. K. Somani, “Performance Analysis of WDM Optical Networks with Grooming Capabilities,” Proc. SPIE Intl. Symp. on Voice, Video, and Data Comm.-Terabit Optical Networking: Arch., Control, and Management, Nov. 2000.

  28. S. Thiagarajan and A. K. Somani, “A Capacity Correlation Model for WDM Networks with Constrained Grooming Capabilities,” Proc. IEEE ICC 2001, Jun. 2001.

Recent Progress and Evolution for IP over Optical Network Standards

  1. D.Awduche (Editor) et al., “Multi-Protocol Lambda Switching: Combining MPLS Traffic Engineering Control With Optical Cross-Connects,” Internet Draft, Work in progress, draft-awduche-mpls-te-optical-03. txt, Apr’ 01.

  2. E.Mannie (Editor) et al., “Generalized MPLS Architecture,” Informational Draft, Work in progress, draft-ietf-ccamp-gmplsarchitecture-01.txt, Nov’ 01.

  3. L.Berger (Editor) et al., “Generalized MPLS Signaling-Signaling Functional Requirements,” Internet Draft, Work in progress, draft-ietf-mpls-generalized-signaling-07.txt, Nov’ 01.

  4. L.Berger (Editor) et al., “Generalized MPLS Signaling-RSVP-TE Extensions,” Internet Draft, Work in progress, draft-ietf-mplsgeneralized-rsvp-te-06.txt, Nov’ 01.

  5. L.Berger (Editor) et al., “Generalized MPLS Signaling-CR-LDP Extensions,” Internet Draft, Work in progress, draft-ietf-mplsgeneralized-cr-ldp-05.txt, Nov’ 01.

  6. K.Kompella et al., “Routing Extensions in Support of Generalized MPLS,” Internet Draft, Work in progress, draft-ietf-ccampgmpls-routing-01.txt, Nov’ 01.

  7. K.Kompella et al. “OSPF Extensions in Support of Generalized MPLS,” Internet Draft, Work in progress, draft-ietf-ccampospf-gmpls-extensions-03.txt, Jan’ 02.

  8. K.Kompella et al., “IS-IS Extensions in Support of Generalized MPLS”, Internet Draft, Work in progress, draft-ietf-isisgmpls-extensions-05.txt, Nov’ 01.

  9. E.Mannie (Editor) et al., “Generalized MPLS Extensions for SONET and SDH Control,” Internet Draft, Work in progress, draft-ietf-ccamp-gmpls-sonet-sdh-03.txt, Dec’ 01.

  10. M.Fontana, D.Papadimitriou (Editor) et al., “Generalized MPLS Extensions for G.079 Optical Transport Networks Control,” Internet Draft, Work in progress, draft-fontana-ccamp-gmpls-g709-02.txt, Nov’ 01.

  11. K.Kompella, Y.Rekhter, “Signalling Unnumbered Links in RSVP-TE”, Internet Draft, Work in progress, draft-ietf-mplsrsvp-unnum-03.txt, Nov’ 01.

  12. K.Kompella, Y.Rekhter, “Signalling Unnumbered Links in CR-LDP,” Internet Draft, Work in progress, draft-ietf-mplscrldp-unnum-03.txt, Nov’ 01.

  13. K.Kompella, Y.Rekhter and L. Berger, “Link Bundling in MPLS Traffic Engineering,” Internet Draft, Work in progress, draft-ietf-mpls-bundle-01.txt, Nov’ 01

  14. K.Kompella and Y.Rekhter, “LSP Hierarchy with MPLS-TE,” Internet Draft, Work in progress, draft-ietf-mpls-lsp-hierarchy-03.txt, Nov’ 01.

  15. R.Goguen and G.Swallow, “RSVP Label Allocation for Backup Tunnels,” Internet Draft, Work in progress, draft-swallowrsvp-bypass-label-00.txt, Oct'99.

  16. P.Pan (Editor) et al., “Fast Reroute Techniques in RSVP-TE,” Internet Draft, Work in progress, draft-pan-rsvp-fastreroute-00. txt, Nov’ 01.

  17. A.Atlas and M.Jork, “MPLS RSVP-TE Interoperability for Local Protection/Fast Reroute,” Internet Draft, Work in progress, draft-atlas-rsvp-local-protect-interop-02. txt, Nov’ 01.

  18. E.Mannie (Editor) et al., “GMPLS Extensions to Control Non-Standard SONET and SDH Features,” Informational Draft, Work in progress, draft-ietf-ccamp-gmplssonet-sdh-extensions-01.txt, Dec’ 01.

  19. A. Bellato, D.Papadimitriou (Editor) et al., “Enabling GMPLS control of G.709 Optical Transport Networks-Architectural Framework,” Informational Draft, Work in progress, draft-bellato-ccamp-g709-framework-01.txt, Nov’ 01.

  20. A.Fredette (Editor) et al., “Optical Link Interface Requirements,” Internet Draft, Work in progress, draft-many-oli-reqts-00.txt, Jun’ 01.

  21. A.Fredette and J.Lang (Editors) et al., “Link Management Protocol (LMP) for DWDM Optical Line Systems,” Internet Draft, Work in progress, draft-fredette-lmp-wdm-03.txt, Nov’ 01.

  22. S.Ansorge, D.Papadimitriou and J.Lang, “LMP Extensions for SONET and SDH,” Internet Draft, Work in progress, draftansorge-ccamp-lmp-sonet-sdh-00.txt, Nov’ 01.

  23. E.Mannie and D.Papadimitriou, “GMPLS LSP Bandwidth Modification (LBM) for TDM Networks,” Internet Draft, Work in progress, draft-mannie-ccamp-gmpls-lbmtdm-00.txt, Nov’ 01.

  24. J.Lang (Editor) et al., “Generalized MPLS Recovery Mechanisms,” Internet Draft, Work in progress, draft-lang-ccamp-recovery-01.txt, Jul’ 01.

  25. B.Rajagopalan (Editor) et al., “Signaling for Protection and Restoration in Optical Mesh Networks,” Internet Draft, Work in progress, draft-bala-protection-restorationsignalling-00.txt, Nov’ 01.

  26. D.Papadimitriou (Editor) et al., “Restoration Mechanisms and Signalling in Optical Networks,” Internet Draft, Work in progress, draft-many-optical-restoration-01.txt, Nov’ 01.

  27. G.Li (Editor) et al., “RSVP-TE Extensions For Shared-Mesh Restoration in Transport Networks,” Internet Draft, Work in progress, draft-li-shared-meshed-restoration-01. txt, Nov’ 01.

  28. S.D haranikota (Editor) et al., “Inter-domain routing with Shared Risk Groups,” Internet Draft, Work in progress, draftmany-ccamp-srg-01.txt, Nov’ 01.

  29. Y.Xue (Editor) et al., “Carrier Optical Services Requirements,” Informational Draft, Work in progress, draft-ietf-ipo-carrier-requirements-00.txt, Jul’ 01.

  30. B.Rajagopalan (Editor) et al., “IP over Optical Networks: A Framework,” Informational Draft, Work in progress, draft-ietfipo-framework-01.txt, Jul’ 01.

  31. A.Chiu, J.Strand et al., “Impairments And Other Constraints On Optical Layer Routing,” Informational Draft, Work in progress, draft-ietf-ipo-impairments-01.txt, Nov’ 01.

  32. G.Bernstein (Editor) et al., “Optical Inter Domain Routing Considerations,” Informational Draft, Work in progress, draft-ietfipo-optical-inter-domain-00.txt, Nov’ 01.

  33. TU-T G.709 Recommendation, “Interface for the OpticalTransport Network (OTN),” version 1, February 2001 and Revision 1, ITU-T, Oct’ 01.

  34. ITU-T G.872 Recommendation, “Architecture of Optical Transport Network (OTN),” Revision 6, ITU-T, Aug’ 01.

  35. ITU-T G.798 Recommendation, “Characteristics of Optical Transport Network (OTN) Hierarchy Equipment Functional Blocks,” ITU-T, Oct’ 01.

  36. ITU-T G.7042 (former G.lcas) Recommendation “Link Capacity Adjustment Scheme (LCAS) for Virtual Concatenated Signals,” ITU-T, Aug’ 01. ed[OIF-1]_B.Rajagopalan (Editor) et al., “UNI 1.0 Specification,” OIF SignallingWG,Oct’ 01.

  37. D.Griffith and D.Su, “IETF Work on Optical Networking Issues,” Standard Report, Optical Networks Magazine, Vol.2, Num.4, Aug’ 01.

  38. D.Basak, “GMPLS Standards-Evolution and Update,” Standard Report,OpticalNetworksMagazine, Vol.3, Num.1, Feb’ 02.

  39. Z.-W.Lin and Y.Xue, “The ASON Standards Development Progress in ITU,” Standard Report, Optical Networks Magazine, Vol.2, Num.6, Dec’ 01.

Download references

Rights and permissions

Reprints and permissions

About this article

Cite this article

Optical Networks Magazine, Volume 3, Number 3. Optical Networks Magazine 3, 1–112 (2002). https://doi.org/10.1023/A:1017413816330

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1023/A:1017413816330

Navigation