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Zhang, \u201cBlocking probability of a preemption-based bandwidth-allocation scheme for service differentiation in obs networks,\u201d J. Lightwave Technol., vol.24, no.8, pp.2986-2993, 2006. 10.1109\/jlt.2006.878083","DOI":"10.1109\/JLT.2006.878083"},{"key":"5","doi-asserted-by":"publisher","unstructured":"[5] J. Armstrong, \u201cOFDM for optical communications,\u201d J. Lightwave Technol., vol.27, no.3, pp.189-204, 2009. 10.1109\/jlt.2008.2010061","DOI":"10.1109\/JLT.2008.2010061"},{"key":"6","doi-asserted-by":"publisher","unstructured":"[6] A.J. Lowery, L.B. Du, and J. Armstrong, \u201cPerformance of optical OFDM in ultralong-haul WDM lightwave systems,\u201d J. Lightwave Technol., vol.25, no.1, pp.131-138, 2007. 10.1109\/jlt.2006.888161","DOI":"10.1109\/JLT.2006.888161"},{"key":"7","doi-asserted-by":"publisher","unstructured":"[7] W. Shieh, Q. Yang, and Y. Ma, \u201c107Gb\/s coherent optical OFDM transmission over 1000-km SSMF fiber using orthogonal band multiplexing,\u201d Opt. Express, vol.16, no.9, pp.6378-6386, 2008. 10.1364\/oe.16.006378","DOI":"10.1364\/OE.16.006378"},{"key":"8","doi-asserted-by":"publisher","unstructured":"[8] W. Shieh, X. Yi, and Y. Tang, \u201cTransmission experiment of multi-gigabit coherent optical OFDM systems over 1000km SSMF fibre,\u201d Electron. Lett., vol.43, no.3, pp.183-184, 2007. 10.1049\/el:20073496","DOI":"10.1049\/el:20073496"},{"key":"9","doi-asserted-by":"publisher","unstructured":"[9] G. Zhang, M. De Leenheer, A. Morea, and B. Mukherjee, \u201cA survey on OFDM-based elastic core optical networking,\u201d IEEE Commun. Surveys Tuts., vol.15, no.1, pp.65-87, 2013. 10.1109\/surv.2012.010912.00123","DOI":"10.1109\/SURV.2012.010912.00123"},{"key":"10","doi-asserted-by":"crossref","unstructured":"[10] W. Zheng, Y. Jin, W. Sun, W. Guo, and W. Hu, \u201cOn the spectrum-efficiency of bandwidth-variable optical OFDM transport networks,\u201d Optical Fiber Communication Conference, p.OWR5, Optical Society of America, 2010. 10.1364\/ofc.2010.owr5","DOI":"10.1364\/OFC.2010.OWR5"},{"key":"11","doi-asserted-by":"publisher","unstructured":"[11] K. Christodoulopoulos, I. Tomkos, and E. Varvarigos, \u201cElastic bandwidth allocation in flexible OFDM-based optical networks,\u201d J. Lightwave Technol., vol.29, no.9, pp.1354-1366, 2011. 10.1109\/jlt.2011.2155990","DOI":"10.1109\/JLT.2011.2155990"},{"key":"12","doi-asserted-by":"publisher","unstructured":"[12] M. Jinno, B. Kozicki, H. Takara, A. Watanabe, Y. Sone, T. Tanaka, and A. Hirano, \u201cDistance-adaptive spectrum resource allocation in spectrum-sliced elastic optical path network [topics in optical communications],\u201d IEEE Commun. Mag., vol.48, no.8, pp.138-145, 2010. 10.1109\/mcom.2010.5534599","DOI":"10.1109\/MCOM.2010.5534599"},{"key":"13","unstructured":"[13] Q. Wang and H. Zheng, \u201cRoute and spectrum selection in dynamic spectrum networks,\u201d IEEE Consumer Communications and Networking Conference (CNCC), pp.342-346, Citeseer, 2006."},{"key":"14","doi-asserted-by":"crossref","unstructured":"[14] Y. Wang, X. Cao, and Y. Pan, \u201cA study of the routing and spectrum allocation in spectrum-sliced elastic optical path networks,\u201d INFOCOM, 2011 Proceedings IEEE, pp.1503-1511, IEEE, 2011. 10.1109\/infcom.2011.5934939","DOI":"10.1109\/INFCOM.2011.5934939"},{"key":"15","doi-asserted-by":"publisher","unstructured":"[15] G. Shen, S.K. Bose, T.H. Cheng, C. Lu, and T.Y. Chai, \u201cEfficient wavelength assignment algorithms for light paths in WDM optical networks with\/without wavelength conversion,\u201d Photonic Netw. Commun., vol.2, no.4, pp.349-359, 2000. 10.1023\/A:1026518614126","DOI":"10.1023\/A:1026518614126"},{"key":"16","doi-asserted-by":"publisher","unstructured":"[16] G. Shen, S.K. Bose, T.H. Cheng, C. Lu, and T.Y. Chai, \u201cEfficient heuristic algorithms for light-path routing and wavelength assignment in WDM networks under dynamically varying loads,\u201d Comput. Commun., vol.24, no.3, pp.364-373, 2001. 10.1016\/s0140-3664(00)00236-x","DOI":"10.1016\/S0140-3664(00)00236-X"},{"key":"17","unstructured":"[17] H. Zang, J.P. Jue, and B. Mukherjee, \u201cA review of routing and wavelength assignment approaches for wavelength-routed optical WDM networks,\u201d Opt. Netw. Mag., vol.1, no.1, pp.47-60, 2000."},{"key":"18","doi-asserted-by":"publisher","unstructured":"[18] I. Tomkos, S. Azodolmolky, J. Sole-Pareta, D. Careglio, and E. Palkopoulou, \u201cA tutorial on the flexible optical networking paradigm: State of the art, trends, and research challenges,\u201d Proc. IEEE, vol.102, no.9, pp.1317-1337, 2014. 10.1109\/jproc.2014.2324652","DOI":"10.1109\/JPROC.2014.2324652"},{"key":"19","doi-asserted-by":"publisher","unstructured":"[19] C. Rottondi, M. Tornatore, and G. Gavioli, \u201cOptical ring metro networks with flexible grid and distance-adaptive optical coherent transceivers,\u201d Bell Labs Tech. J., vol.18, no.3, pp.95-110, 2013. 10.1002\/bltj.21629","DOI":"10.1002\/bltj.21629"},{"key":"20","doi-asserted-by":"crossref","unstructured":"[20] A. Bocoi, M. Schuster, F. Rambach, D.A. Schupke, C.A. Bunge, and B. Spinnler, \u201cCost comparison of networks using traditional 10 and 40Gb\/s transponders versus OFDM transponders,\u201d Optical Fiber Communication Conference, p.OThB4, Optical Society of America, 2008. 10.1109\/ofc.2008.4528432","DOI":"10.1109\/OFC.2008.4528432"},{"key":"21","doi-asserted-by":"publisher","unstructured":"[21] M. Klinkowski and K. Walkowiak, \u201cRouting and spectrum assignment in spectrum sliced elastic optical path network,\u201d IEEE Commun. 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Clifford, Introduction to Algorithms, Third ed., pp.359-370, Massachusetts Institute of Technology, 2009."},{"key":"33","doi-asserted-by":"publisher","unstructured":"[33] \u00c9. Archambault, D. O&apos;Brien, C. Tremblay, F. Gagnon, M.P. B\u00e9langer, and \u00c9. Bernier, \u201cDesign and simulation of filterless optical networks: Problem definition and performance evaluation,\u201d J. Opt. Commun. Netw., vol.2, no.8, pp.496-501, 2010. 10.1364\/jocn.2.000496","DOI":"10.1364\/JOCN.2.000496"},{"key":"34","doi-asserted-by":"publisher","unstructured":"[34] A. Morea, J. Perell\u00f3, S. Spadaro, D. Verch\u00e8re, and M. Vigoureux, \u201cProtocol enhancements for \u201cgreening\u201d optical networks,\u201d Bell Labs Techn. J., vol.18, no.3, pp.211-230, 2013. 10.1002\/bltj.21635","DOI":"10.1002\/bltj.21635"},{"key":"35","doi-asserted-by":"publisher","unstructured":"[35] L. Song and B. Mukherjee, \u201cAccumulated-downtime-oriented restoration strategy with service differentiation in survivable WDM mesh networks,\u201d J. Opt. Commun. Netw., vol.1, no.1, pp.113-124, 2009. 10.1364\/jocn.1.000113","DOI":"10.1364\/JOCN.1.000113"},{"key":"36","doi-asserted-by":"publisher","unstructured":"[36] S. De Maesschalck, D. Colle, I. Lievens, M. Pickavet, P. Demeester, C. Mauz, M. Jaeger, R. Inkret, B. Mikac, and J. Derkacz, \u201cPan-European optical transport networks: An availability-based comparison,\u201d Photonic Netw. 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