[1] T. Lewis, Critical Infrastructure Protection in Homeland Security: Defending a Networked Nation (New York: Wiley-Interscience, 2006).

[2] The National Strategy for the Physical Protection of Critical Infrastructure and Key Assets, Whitehouse, Feb. 2003, at http://www.whitehouse.gov/pcipb/physical.html.

[3] Public Safety Canada, “Cyber Security and Protecting Canada’s Critical Infrastructure,” Feb. 2, 2005, at http://www.publicsafety.gc.ca/media/bk/2005/bg20050202-2-en.asp.

[4] The President’s Commission on Critical Infrastructure Protection (PCCIP) Report, Sept. 1997, at http://www.pccip.org/.

[5] R. Kuhn, “Sources of Failure in the Public Switched Telephone Network,” IEEE Computer 30, No. 4 (April 1997): 31–36.

[6] G. Iannaccone, C.-N. Chuah, R. Mortier, S. Bhattacharyya, and C. Diot, “Analysis of Link Failures in an IP Backbone,” Proceedings of ACM Sigcomm Internet Measurement Workshop, Marseille, France, Nov. 2002.

[7] W. D. Grover, Mesh-Based Survivable Networks: Options and Strategies for Optical, MPLS, and ATM Networking (Upper Saddle River, NJ: Prentice Hall, 2003).

[8] W. E. Falconer, “Service Assurance in Modern Telecommunications Networks,” IEEE Communications Magazine 28, No. 6 (June 1990): 32–39.

[9] M. Pioro and D. Medhi, Routing, Flow, and Capacity Design in Communication and Computer Networks (San Francisco: Morgan Kauffman Publishers, 2004).

[10] E. Mannie and D. Papadimitriou (Eds.), “Recovery (Protection and Restoration) Terminology for Generalized Multi-Protocol Label Switching (GMPLS),” IETF RFC 4427, March 2006.

[11] W. Grover, J. Doucette, M. Clouqueur, D. Leung, and D. Stamatelakis, “New Options and Insights for Survivable Transport Networks,” IEEE Communications Magazine 40, No. 1 (Jan. 2002): 34–41.

[12] R. Bhandari, Survivable Networks: Algorithms for Diverse Routing (Boston: Kluwer Academic Publishers, 1999).

[13] J.-P. Vasseur, M. Pickavet, and P. Demeester, Network Recovery: Protection and Restoration of Optical, SONETSDH, IP, and MPLS (San Francisco: Morgan Kaufmann Publishers, 2004).

[14] T.-H. Wu, Fiber Network Service Survivability (Boston: Artech House, 1992).

[15] T.-H. Wu and N. Yoshikai, ATM Transport and Network Integrity (New York: Academic Press, 1997).

[16] H. Mouftah and P.-H. Ho, Optical Networks: Architecture and Survivability (Norwell, MA: Kluwer Academic Publishers, 2003).

[17] A. Somani, Survivability and Traffic Grooming in WDM Optical Networks (Cambridge: Cambridge University Press, 2006).

[18] D. Medhi, “A Unified Approach to Network Survivability for Teletraffic Networks: Models, Algorithms and Analysis,” IEEE Transactions on Communications 42 (Feb.–April 1994): 534–548.

[19] K. Murakami and H. S. Kim, “Virtual Path Routing for Survivable ATM Networks,” IEEE/ACM Transactions on Networking 4, No. 1 (Feb. 1996): 22–39.

[20] A. Hines, Planning for Survivable Networks (New York: John Wiley, 2002).

[21] K. Steiglitz, P. Weiner, and D. J. Kleitman, “The Design of Minimum-Cost Survivable Networks,” IEEE Trans. Circuit Theory 16, No. 4 (Nov. 1969): 455–460.

[22] H. A. Malec, “Communications Reliability: A Historical Perspective,” IEEE Transactions on Reliability 47, No. 3 (1998): 333–345.

[23] P. Baran, On Distributed Communications, twelve volumes, Rand Report Series, 1964.

[24] W. Grover and D. Tipper (Guest Eds.), “Special Issue on Designing and Managing Optical Networks and Services for High Reliability,” Journal of Network and Systems Management 13, No. 1 (March 2005).

[25] D. Andersen, H. Balakrishnan, M. F. Kaashoek, and R. Morris, “Resilient Overlay Networks,” Proceedings of the 18th ACM SOSP, Banff, Canada, Oct. 2001.

[26] S. Rai, B. Murkherjee, and O. Deshpande, “IP Resilience within an Autonomous System: Current Approaches, Challenges, and Future Directions,” IEEE Communications Magazine 43, No. 10 (Oct. 2005): 142–149.

[27] G. Agrawal, D. Huang, and D. Medhi, “Network Protection Design for MPLS Networks,” Proceedings of IEEE International Workshop on the Design of Reliable Communication Networks (DRCN 2005), Naples, Italy, Oct. 2005.

[28] R. Glitho and S. Hayes (Eds.), “Special Issue Enter the World of TMN,” IEEE Communications Magazine 33, No. 3 (March 1995).

[29] J. Doucette, Advances on Design and Analysis of Mesh-Restorable Networks, Ph.D. Dissertation, University of Alberta, Edmonton, Alberta, Canada, Dec. 2004.

[30] J. H. Saltzer, D. P. Reed, and D. D. Clark, “End-to-End Arguments in System Design,” The Second International Conference on Distributed Computing Systems, Paris, April 8–10, 1981, pp. 509–512.

[31] B. Jager and D. Tipper, “Prioritized Traffic Restoration in Connection Oriented QoS Based Networks,” Computer Communications 26, No. 18 (Dec. 2003): 2025–2036.

[32] A. Srikitja and D. Tipper, “On Providing Survivable QoS Services in the Next Generation Internet,” Proceedings of the IEEE Military Communications Conference 1999, Atlantic City, NJ, Oct. 1999.

[33] B. Jager and K. Danielsen, “On Rerouting in MPLS Based Networks,” WSEAS Transactions on Communications 5, No. 9 (Sept. 2006): 2024–2030.

[34] A.M.C.A. Koster, A. Zymolka, M. Jäger, R. Hulsermann, and C. Gerlach, “Demand-Wise Shared Protection for Meshed Optical Networks,” Design of Reliable Communication Networks (DRCN 2003), Banff, Alberta, Canada, Oct. 19–22, 2003, pp. 85–92.

[35] C. Gruber, A. Koster, A. Zymolka, R. Wessäly, and S. Orlowski, “A Computational Study for Demand-Wise Shared Protection,” Design of Reliable Communication Networks (DRCN 2005), Island of Ischia (Naples), Italy, Oct. 2005.

[36] L. Guo, L. Li, H. Yu, and J. Cao, “Heuristic of Differentiated Path-Shared Protection for Dual Failures in Restorable Optical Networks,” Optical Engineering 46, No. 2, 025009 (Feb. 2007).

[37] M. W. Maeda, “Management and Control of Transparent Optical Networks,” IEEE Journal on Selected Areas in Communications (JSAC) 16, No. 7 (Sept. 1998): 1005–1023.

[38] R. Ramaswami and K. N. Sivarajan, Optical Networks: A Practical Perspective, 2nd ed. (San Francisco: Morgan Kaufmann Publishers, 2002).

[39] M. Herzberg, S. J. Bye, and A. Utano, “The Hop-Limit Approach for Spare-Capacity Assignment in Survivable Networks,” IEEE/ACM Transactions on Networking 3, No. 6 (Dec. 1995): 775–784.

[40] S. Sengupta and R. Ramamurthy, “Capacity Efficient Distributed Routing of Mesh-Restored Light Paths in Optical Networks,” IEEE Global Telecommunications Conference (GlobeCom 2001), San Antonio, TX, Nov. 2001, pp. 2129–2133.

[41] Y. Liu, D. Tipper, and P. Siripongwutikorn, “Approximating Optimal Spare Capacity Allocation by Successive Survivable Routing,” ACM/IEEE Transactions on Networking 13, No. 1 (Feb. 2005): 198–211.

[42] W. D. Grover and D. Stamatelakis, “Cycle-Oriented Distributed Preconfiguration: Ring-like Speed with Mesh-like Capacity for Self-Planning Network Restoration,” IEEE International Conference on Communications (ICC 1998), Atlanta, June 1998, pp. 537–543.

[43] D. A. Schupke, C. G. Gruber, and A. Autenrieth, “Optimal Configuration of p-Cycles in WDM Networks,” International Conference on Communications (ICC 2002), New York, April-May 2002, pp. 2761–2765.

[44] W. D. Grover, J. Doucette, A. Kodian, D. Leung, A. Sack, M. Clouqueur, and G. Shen, “Design of Survivable Networks Based on p-Cycles,” in Handbook of Optimization in Telecommunications, edited by M. G. C. Resende and P. M. Pardalos (New York: Springer-Verlag, 2006).

[45] A. Sack and W. D. Grover, “Hamiltonian p-Cycles for Fiber-Level Protection in Homogeneous and Semi-Homogeneous Optical Networks,” IEEE Network 18, No. 2 (March/April 2004): 49–56.

[46] W. D. Grover and J. Doucette, “Advances in Optical Network Design with p-Cycles: Joint Optimization and Pre-Selection of Candidate p-Cycles,” IEEE Lasers & Electro-Optics Society (LEOS) Summer Topicals 2002, Mont Tremblant, Canada, July 2002, pp. 49–50.

[47] R. Ahuja, T. Magnanti, and J. Orlin, Network Flows: Theory, Algorithms, and Applications (Englewood Cliffs, NJ: Prentice Hall, 1993).

[48] Y. Wang, “Modeling and Solving Single and Multiple Facility Restoration Problems,” Ph.D. dissertation, Sloan School of Management, MIT, Boston, June 1998, pp. 32–33.

[49] A. Jajszczyk, B. Mukherjee, R. Sabella, and X. Xiao (Eds.), “Traffic Engineering for Multi-Layer Networks,” IEEE Journal on Selected Areas in Communications (JSAC) 25, No. 5 (June 2007): 865–867.

[50] J. Doucette and W. D. Grover, “Shared-Risk Logical Span Groups in Span-Restorable Optical Networks: Analysis and Capacity Planning Model,” Photonic Network Communications 9, No. 1 (Jan. 2005): 35–53.

[51] Y. Liu, D. Tipper, and K. Vajanapoom, “Spare Capacity Allocation in Two-Layer Networks,” IEEE Journal on Selected Areas in Communications (JSAC) 25, No. 5 (June 2007): 974–986.

[52] K. Vajanapoom and D. Tipper, “Risk Reduction Based Survivable WDM Network Design,” Proceedings of IEEE IPCCC Workshop on Information Assurance, Phoenix, AZ, April 2006.

[53] T. Grubesic, M. O’Kelly, and A. Murray, “A Geographic Perspective on Commercial Internet Survivability,” Telematics and Informatics 20 (2003): 51–69.

[54] D. Tipper, J. Hammond, S. Sharma, A. Khetan, K. Balakrishnan, and S. Menon, “An Analysis of the Congestion Effects of Link Failures in Wide Area Networks,” IEEE Journal on Selected Areas in Communications 12, No. 1 (Jan. 1994): 179–192.

[55] W. P. Wang, D. Tipper, B. Jaeger, and D. Medhi, “Fault Recovery Routing in Wide Area Packet Networks,” Proceedings of 15th International Teletraffic Congress (ITC), Washington, DC, June 1997.

[56] P. McGregor, R. Kaczmarek, V. Mosley, D. Dease, and P. Adams, “National Security/Emergency Preparedness and the Next-Generation Network,” IEEE Communications Magazine 44, No. 5 (May 2006).

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