An integrated view on monitoring and compensation for dynamic optical networks: from management to physical layer

Photonic Network Communications - Tập 18 - Trang 191-210 - 2009
A. Teixeira1, L. Costa1, G. Franzl2, S. Azodolmolky3, I. Tomkos3, K. Vlachos4, S. Zsigmond5, T. Cinkler5, G. Tosi-Beleffi6, P. Gravey7, T. Loukina7, J. A. Lázaro8, C. Vazquez9, J. Montalvo9, E. Le Rouzic10
1Instituto de Telecomunicações, Aveiro, Portugal
2Institute of Broadband Communications, Vienna University of Technology, Vienna, Austria
3Athens Information Technology, Peania, Athens, Greece
4University of Patras, Rio, Greece
5Budapest University of Technology and Economics, Budapest, Hungary
6Instituto Superiore della Communicazioni e delle Tecnologiedell’Informazione, Rome, Italy
7Institut TELECOM, TELECOM Bretagne, Technopôle Brest-Iroise CS, Brest Cedex 3, France
8Universitat Politécnica de Catalunya, Barcelona, Spain
9Universidad Carlos III de Madrid, Leganés, Madrid, Spain
10France Telecom, Lannion Cedex, France

Tóm tắt

A vertical perspective, ranging from management and routing to physical layer options, concerning dynamic network monitoring and compensation of impairments (M&C), is given. Feasibility, reliability, and performance improvements on reconfigurable transparent networks are expected to arise from the consolidated assessment of network management and control specifications, as a more accurate evaluation of available M&C techniques. In the network layer, physical parameters aware algorithms are foreseen to pursue reliable network performance. In the physical layer, some new M&C methods were developed and rating of the state-of-the-art reported in literature is given. Optical monitoring implementation and viability is discussed.

Tài liệu tham khảo

Chen, L.K., Cheung, M.H., Chan, C.K.: From optical performance monitoring to optical network management: research progress and challenges (Invited). In: Proceedings of ICOCN (2004) Saleh M., Simmons J.M.: Evolution toward the next-generation core optical network. IEEE/OSA. J. Lightwave Technol. 24(9), 3303–3321 (2006). doi:10.1109/JLT.2006.880608 Zang H., Jue J.P., Mukherjee B.: A review of routing and wavelength assignment approaches for wavelength-routed optical WDM networks. SPIE/Baltzer Opt. Netw. Mag. 1(1), 47–60 (2000) Banerjee D., Mukherjee B.: Wavelength routed optical networks: linear formulation resource budgeting tradeoff and a reconfiguration study. IEEE/ACM Trans. Netw. 8(5), 684–696 (2000) Yan S., Ali M., Deogun J.: Route optimization of multicast sessions in sparse light-splitting optical networks. IEEE GLOBECOM 4, 2134–2138 (2001) Mukherjee B., Ramamurthy S., Banerjee D., Mukherjee A.: Some principles for designing a wide-area WDM optical network. IEEE/ACM Trans. Netw. 4(5), 684–696 (1996) Ali, M., Ramamurthy, B., Deogun, J.S.: Routing algorithms for all-optical networks with power consideration: the unicast case. In: Proceedings of the 8th IEEE ICCCN, pp. 335–340 (1999) Banerjee, N., Mehta, V., Pandey, S.: A genetic algorithm approach for solving the routing and wavelength assignment problem in WDM networks. In: 3rd IEEE/IEE International Conference on Networking, pp. 70–78 (2004) Zong L., Ramamurthy B.: Optimization of amplifier placement in switch-based optical network. Proc. IEEE ICC 1, 224–228 (2001) Tomkos I., Vogiatzis D., Mas C., Zacharopoulos I., Tzanakaki A., Varvarigos E.: Performance engineering of metropolitan area optical networks through impairment constraint routing. IEEE Opt. Commun. Mag. 42, 40–47 (2004) Markidis, G., Sygletos, S., Tzanakaki, A., Tomkos, I.: Impairment aware based routing and wavelength assignment in transparent long haul networks. Optical network design and monitoring. In: Lecture Notes in Computer Science (series), Optical Network Design and Modeling (pp. 48–57). Springer Berlin / Heidelberg (2007) Brandt-Pearce, J.H., Pointurier, M., Subramaniam, Y.: QoT-aware routing in impairment-constrained optical networks. In: Proceedings of GLOBECOM, pp. 26–30, Washington DC (2007) Ezzahdi, M., Zahr, S., Koubaa, M., Puech, N., Gagnaire, M.: LERP: a quality of transmission dependent heuristic for routing and wavelength assignment in hybrid WDM networks. In: Proceedings of ICCCN, pp. 125–136 (2006) Deng T., Subramaniam S.: Adaptive QoS routing in dynamic wavelength-routed optical networks. Proc. BROADNETS 1, 184–193 (2005) Kilper D.C., Bach R., Blumenthal D.J., Einstein D., Landolsi T., Ostar L., Preiss M., Willner A.E.: Optical performance monitoring. IEEE/OSA. J. Lightwave Technol. 22(1), 294–304 (2004). doi:10.1109/JLT.2003.822154 ITU-T Draft New Recom. G.697. Optical Monitoring for DWDM Systems (2004) Farrel, A., Vasseur, J. P., Ash, J.: A path computation element (PCE)-based architecture. IETF RFC 4655 (2006) Jukan A., Franzl G.: Path selection methods with multiple constraints in service-guaranteed WDM networks. IEEE-ACM Trans. Netw. 12(1), 59–72 (2004) Zsigmond, S., Németh, G., Cinkler, T.: Mutual impact of physical impairments and grooming in multilayer networks. In: Proceedings of ONDM, pp. 38–47 (2007) Winzer P.J., Essiambre R.-J.: Advanced optical modulation formats (Invited). Proc. IEEE 94(5), 952–985 (2006). doi:10.1109/JPROC.2006.873438 Poole D., Tkach R.W., Chraplyvy A.R., Fishman D.A.: Fading in lightwave systems due to polarization-mode dispersion. IEEE Photon. Technol. Lett. 3(1), 68–70 (1991). doi:10.1109/68.68051 Bulow, H., Baumert, W., Schmuck, H., Mohr, F., Schulz, T., Kuppers, F., Weiershausen, W.: Measurement of the maximum speed of PMD fluctuation in installed field fiber. In: Proceedings of OFC/IOOC, pp. 83–85 (1999) Peterson, N.: Performance monitoring in the next generation of optical networks. In: Proceedings of Photonics in Switching (2006) ITU-T G.984. 1,2,3,4. GPON recommendations (2004) Chongjin X., Kilper D.C., Moller L., Ryf R.: Orthogonal-polarization heterodyne OSNR monitoring insensitive to polarization-mode dispersion and nonlinear polarization scattering. IEEE/OSA. J. Lightwave Technol. 25, 177–183 (2007). doi:10.1109/JLT.2006.888171 Adams R., Rochette M., Ng T., Eggleton B.J.: All-optical in-band OSNR monitoring at 40 Gbit/s using a nonlinear optical loop mirror. IEEE Photon. Technol. Lett. 18(3), 469–471 (2006). doi:10.1109/LPT.2005.863641 Wong E., Tan J., Nirmalathas A.: Novel scheme for simultaneous polarization mode dispersion and optical signal-to-noise ratio monitoring. Proc. ECOC 3, 697–698 (2005) Liu N., Zhong W.-D., Wen Y.J., Lu C., Cheng L., Wang Y.: PMD and chirp effects suppression in RF tone-based chromatic dispersion monitoring. IEEE Photon. Technol. Lett. 18(5), 673–675 (2006) Park, K.J., Lee, J.H., Young, C.J., Chung, Y.C.A.: Simultaneous monitoring technique for polarization-mode dispersion and group-velocity dispersion. In: Proceedings of OFC, pp. 199–200 (2002) Inui T., Komukai T., Mori K., Morioka T.: 160-Gbit/s adaptive dispersion equalization using an asynchronous dispersion-induced chirp monitor. IEEE/OSA. J. Lightwave Technol. 23, 2039–2045 (2005). doi:10.1109/JLT.2005.849878 Maguire P.J., Bondarczuk K., Barry P.P., O’Dowd J., Guo W.H., Lynch M., Bradley A.L., Donegan J.F., Folliot H.: Chromatic dispersion monitoring of 80 Gbit/s OTDM data signal via two-photon absorption in a semiconductor microcavity. IEEE Photon. Technol. Lett. 19(1), 21–23 (2007) Yang J.-Y., Zhang L., Christen L.C., Zhang B., Nuccio S., Wu X., Yan L.-S., Yao S., Willner A.E.: Polarization-mode-dispersion monitoring for phase-modulated signals using DGD-generated interferometric filter. IEEE Photon. Technol. Lett. 20(2), 150–152 (2008). doi:10.1109/LPT.2007.912505 Willner A.E., Nezam S.M.R.M., Yan L., Zhongqi P., Hauer M.C.: Monitoring and control of polarization-related impairments in optical fiber systems. IEEE/OSA.J. Lightwave Technol. 22, 106–125 (2004). doi:10.1109/JLT.2003.822556 Lizé Y.K., Christen L., Yang J.-Y., Saghari P., Nuccio S., Willner A.E., Kashyap R.: Independent and simultaneous monitoring of chromatic and polarization-mode dispersion in OOK and DPSK transmission. IEEE Photon. Technol. Lett. 19(1), 3–5 (2007). doi:10.1109/LPT.2006.888039 Morawski, R.Z., Miekina, A., Barwicz, A.: Curve-fitting algorithms versus neural networks when applied for estimation of wavelength and power in DWDM systems. IEEE Trans. Instrum. Meas. 54(5), 2027–2032 (2005). doi:10.1109/TIM.2005.853350 Lazaro J.A., Bock C., Polo V., Martinez R.I., Prat J.: Remotely amplified combined ring-tree dense access network architecture using reflective RSOA-based ONU. J. Opt. Netw. 6(6), 801–807 (2007). doi:10.1364/JON.6.000801 Lazaro, J.A., Prat, J., Chanclou, P., Beleffi, G.M.T., Teixeira, A., Tomkos, I., Soila, R., Koratzinos, V.: Scalable extended reach PON (Invited). In: Proceedings of OFC/NFOEC, OThL2 (2008) Polo, V., Ausiro, A., Prat, J., Junyent, G.: GCSR laser frequency drift compensation using optimized current waveform on one single electrode. Proc. ICTON, 2, 17–20, We.A1.5 (2005) Kazmierski, C., Chanclou, P., Lazaro, J.A.: Advanced component technologies for colourless access networks. (Invited), In: Proceedings of SPIE, p. 6782 (2007) Gnauck H., Cimini L.J.Jr., Stone J., Stulz L.W.: Optical equalization of fiber chromatic dispersion in a 5-Gbit/s transmission system. IEEE Photon. Technol. Lett. 2(8), 585–587 (1990). doi:10.1109/68.58056 Vázquez C., Vargas S.E., Sánchez Pena J.M.: Sagnac loop in ring resonators for tunable optical filters. IEEE/OSA. J. Lightwave Technol. 23(8), 2555–2567 (2005). doi:10.1109/JLT.2005.850793 Vargas S.E., Vázquez C.: Synthesis of optical filters using sagnac interferometer in ring resonator. IEEE Photon. Technol. Lett. 19(23), 1877 (2007). doi:10.1109/LPT.2007.908735 Maeda M.: Management and control of transparent optical networks. (Invited). IEEE J. Sel. Areas Commun. 16(7), 1008–1023 (1998). doi:10.1109/49.725174 Mas C., Tomkos I., Tonguz O.K.: Failure location algorithm for transparent optical networks. IEEE J. Sel. Areas Commun. 23(8), 1508–1519 (2005). doi:10.1109/JSAC.2005.852182 Cugini, F., Andriolli, N., Valcerenghi, L., Castoldi, P.: A novel signaling approach to encompass physical impairments in GMPLS networks. Procedings of GLOBECOM Workshops pp. 369–373 (2004) Bernstein G., Rajagopalan B., Saha S.: Optical Network Control: Architecture, Protocols & Standards. Addison-Wesley, Reading, MA (2004) Bernstein, G.: Optical network control—concepts, standardization and interoperability. In: Proceedings of ECOC, We.1.2.1. (2004) Ali M.E.-D., Cosaque D., Tancevski L.: Enhancements to multi-protocol lambda switching to accommodate transmission impairments. Proc. GLOBECOM 1, 70–75 (2001) Lavigne, B., Leplingard, F., Lorcy, L., Almefrezol, E., Antona, J.-C., Zami, T., Bayart, D.: Method for the determination of a quality of transmission estimator along the lightpaths of partially transparent networks. In: Proceedings of ECOC, 8.5.2 (2007) Morea, A.: Etude des réseaux optiques translucides: évaluation de leur faisabilité technique et de leur intérét économique. Doctorat Informatique et Réseaux. INFRES, ENST. Paris (2006) Antona, J.-C., Bigo, S., Faure, J.-P.: Nonlinear cumulated phase as a criterion to assess performance of terrestrial WDM systems. In: Proceedings of OFC, pp. 365–367 (2002) Hamel, A., Gavignet, P., Salann, S., Poirrier, J.: Design trade-off for high PMD routes in installed transmission systems. In: Proceedings of OFC/NFOEC, OFL4 (2006) Leplingard, F., Zami, T., Morea, A., Brogard, N., Bayart, D.: Determination of the impact of a quality of transmission estimator margin on the dimensioning of an optical network. In: Proceedings of OFC/NFOEC, OWA6 (2008) Tomkos, I., Sygletos, S., Tzanakaki, A., Markidis, G.: Impairment constraint based routing in mesh optical networks. (Invited). In: Proceedings of OFC/NFOEC, OWR1 (2008)