Fiber nonlinearity pre- and post-compensation for long-haul optical links using OFDM
Optics Express, Vol. 15, Issue 20, pp. 12965-12970 (2007)
http://dx.doi.org/10.1364/OE.15.012965
Acrobat PDF (155 KB)
Abstract
The nonlinear power limit of optical links using optical Orthogonal Frequency Division Multiplexing (OFDM) for dispersion compensation can be significantly improved using an optimum combination of nonlinearity precompensation and postcompensation. The compensation is implemented at the transmitter and at the receiver as computationally-efficient power-dependent phase shifts with a single tuning parameter. The system is robust against the exact details of the fiber plant’s dispersion and power levels. Using an optimum combination of pre and post compensation allows a 2-dB increase in launch power for 2000-km standard single-mode fiber (S-SMF) systems and 5-dB when 6 ps/nm/km fibers are used. Using pre or post compensation alone approximately halves these values.
© 2007 Optical Society of America
1. Introduction
R.I. Killey, P. M. Watts, V. Mikhailov, M. Glick, and P. Bayval, “Electronic dispersion compensation by signal predistortion using digital processing and a dual-drive Mach-Zehnder modulator,” IEEE Photon. Technol. Lett. 17, 714–716 (2005). [CrossRef]
A. J. Lowery and J. Armstrong, “Orthogonal frequency division multiplexing for dispersion compensation of long-haul optical systems”, Opt. Express 14, 2079–2084 (2006). [CrossRef] [PubMed]
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef]
C. Pare, A. Villeneuve, P. -A. Belanger, and N. J. Doran, “Compensating for dispersion and the nonlinear Kerr effect without phase conjugation”, Opt. Lett. 21, 459–461 (1996). [CrossRef] [PubMed]
R. J. Essiambre, P. J. Winzer, W. Xun Qing, W. Lee, C. A. White, and E. C. Burrows, “Electronic predistortion and fiber nonlinearity,” IEEE Photon. Technol. Lett. 18, 1804–1806 (2006). [CrossRef]
K. Roberts, Chuandong Li, L. Strawczynski, and M. O’Sullivan, “Electronic precompensation of optical nonlinearity,” IEEE Photon. Technol. Lett. 18, 403–405 (2006). [CrossRef]
C. Xu and X. Liu, “Postnonlinearity compensastion with data-driven phase modulators in phase-shift keying transmission,” Opt. Lett. 27, 1619–1621 (2002). [CrossRef]
C. Pare, A. Villeneuve, P. -A. Belanger, and N. J. Doran, “Compensating for dispersion and the nonlinear Kerr effect without phase conjugation”, Opt. Lett. 21, 459–461 (1996). [CrossRef] [PubMed]
K. P. Ho and J. M. Khan, “Electronic compensation technique to mitigate nonlinear phase noise,” J. Lightwave Technol. 22, 779–783 (2004). [CrossRef]
W. Shieh, X. Yi, Y. Ma, and Y. Tang, “Theoretical and experimental study of PMD-supported transmission using polarization diversity in coherent optical OFDM systems,” Opt. Express 15, 9936–9947 (2007). [CrossRef] [PubMed]
W. Shieh, X. Yi, Y. Ma, and Y. Tang, “Theoretical and experimental study of PMD-supported transmission using polarization diversity in coherent optical OFDM systems,” Opt. Express 15, 9936–9947 (2007). [CrossRef] [PubMed]
2. Optical OFDM system
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef]
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef]
3. Results
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef]
3.1. Example Constellations
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef]
W. Shieh, X. Yi, Y. Ma, and Y. Tang, “Theoretical and experimental study of PMD-supported transmission using polarization diversity in coherent optical OFDM systems,” Opt. Express 15, 9936–9947 (2007). [CrossRef] [PubMed]
3.2. Performance against transmitter and receiver effective lengths
R. J. Essiambre, P. J. Winzer, W. Xun Qing, W. Lee, C. A. White, and E. C. Burrows, “Electronic predistortion and fiber nonlinearity,” IEEE Photon. Technol. Lett. 18, 1804–1806 (2006). [CrossRef]
K. Roberts, Chuandong Li, L. Strawczynski, and M. O’Sullivan, “Electronic precompensation of optical nonlinearity,” IEEE Photon. Technol. Lett. 18, 403–405 (2006). [CrossRef]
3.3. Improvement in launch power
6. Conclusions
Acknowledgments
References and links
J. McNicol, M. O’Sullivan, K. Roberts, A. Comeau, D. McGhan, and L. Strawczynski, “Electrical domain compensation of optical dispersion,” in Tech. Digest of the Conference on Optical Fiber Communication , Vol. 5 (Optical Society of America, 2005), pp. 269 – 271. | |
R.I. Killey, P. M. Watts, V. Mikhailov, M. Glick, and P. Bayval, “Electronic dispersion compensation by signal predistortion using digital processing and a dual-drive Mach-Zehnder modulator,” IEEE Photon. Technol. Lett. 17, 714–716 (2005). [CrossRef] | |
A. J. Lowery and J. Armstrong, “Orthogonal frequency division multiplexing for dispersion compensation of long-haul optical systems”, Opt. Express 14, 2079–2084 (2006). [CrossRef] [PubMed] | |
B. J.C. Schmidt, A. J. Lowery, and J. Armstrong, “Experimental demonstrations of 20 Gbit/s direct-detection optical OFDM and 12 Gbit/s with a colorless transmitter”, in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2007), Postdeadline Paper PDP18. | |
A. J. Lowery, Liang Du, and J. Armstrong, “Orthogonal frequency division multiplexing for adaptive dispersion compensation in long haul WDM systems”, in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2006), Postdeadline Paper PDP39. | |
A. J. Lowery, “Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation,” IEEE Photon. Technol. Lett. 1819, 1556–1558 (2007). [CrossRef] | |
C. Pare, A. Villeneuve, P. -A. Belanger, and N. J. Doran, “Compensating for dispersion and the nonlinear Kerr effect without phase conjugation”, Opt. Lett. 21, 459–461 (1996). [CrossRef] [PubMed] | |
R. I. Killey, “Dispersion and nonlinearity compensation using electronic predistortion techniques” in the IEE Seminar on Fibre Communications and Electronic Signal Processing 2005-11310, 0–14–2/6 (15 Dec. 2005). | |
R. J. Essiambre, P. J. Winzer, W. Xun Qing, W. Lee, C. A. White, and E. C. Burrows, “Electronic predistortion and fiber nonlinearity,” IEEE Photon. Technol. Lett. 18, 1804–1806 (2006). [CrossRef] | |
K. Roberts, Chuandong Li, L. Strawczynski, and M. O’Sullivan, “Electronic precompensation of optical nonlinearity,” IEEE Photon. Technol. Lett. 18, 403–405 (2006). [CrossRef] | |
G. Goeger, “Modulation format with enhanced SPM-robustness for electronically pre-distorted transmission,” in Tech. Digest of European Conference on Optical Communications, 2006, Paper Tu4.2.6. | |
X. Liu and D. A. Fishman, “A fast and reliable algorithm for electronic pre-equalization of SPM and chromatic dispersion,” in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2006), Paper OThD4. | |
C. Xia and W. Rosenkranz, “Mitigation of intrachannel nonlinearity using nonlinear electrical equalization,” in Tech. Digest of European Conference on Optical Communications, 2006, Paper We1.5.3. | |
C. Xu and X. Liu, “Postnonlinearity compensastion with data-driven phase modulators in phase-shift keying transmission,” Opt. Lett. 27, 1619–1621 (2002). [CrossRef] | |
K. P. Ho and J. M. Khan, “Electronic compensation technique to mitigate nonlinear phase noise,” J. Lightwave Technol. 22, 779–783 (2004). [CrossRef] | |
W. Shieh, X. Yi, Y. Ma, and Y. Tang, “Theoretical and experimental study of PMD-supported transmission using polarization diversity in coherent optical OFDM systems,” Opt. Express 15, 9936–9947 (2007). [CrossRef] [PubMed] | |
R. Feced, R. Rickard, and E. Richard, “Reference phase and amplitude estimation for coherent optical receiver,” U. S. Patent Application 20050180760, August 18, 2005. | |
T. H. Williams, “System for transmission of digital data using orthogonal frequency division multiplexing,” U. S. Patent 5 371 548, December 6, 1994. |
OCIS Codes
(060.4080) Fiber optics and optical communications : Modulation
(060.4510) Fiber optics and optical communications : Optical communications
ToC Category:
Fiber Optics and Optical Communications
History
Original Manuscript: July 31, 2007
Revised Manuscript: September 9, 2007
Manuscript Accepted: September 23, 2007
Published: September 25, 2007
Citation
Arthur J. Lowery, "Fiber nonlinearity pre- and post-compensation for long-haul optical links using OFDM," Opt. Express 15, 12965-12970 (2007)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-15-20-12965
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References
- J. McNicol, M. O’Sullivan, K. Roberts, A. Comeau, D. McGhan, and L. Strawczynski, "Electrical domain compensation of optical dispersion," in Tech. Digest of the Conference on Optical Fiber Communication, Vol. 5 (Optical Society of America, 2005), pp. 269 - 271.
- R. I. Killey, P. M. Watts, V. Mikhailov, M. Glick, and P. Bayval, "Electronic dispersion compensation by signal predistortion using digital processing and a dual-drive Mach-Zehnder modulator," IEEE Photon. Technol. Lett. 17, 714-716 (2005). [CrossRef]
- A. J. Lowery and J. Armstrong, "Orthogonal frequency division multiplexing for dispersion compensation of long-haul optical systems," Opt. Express 14, 2079-2084 (2006). [CrossRef] [PubMed]
- B. J. C. Schmidt, A. J. Lowery and J. Armstrong, "Experimental demonstrations of 20 Gbit/s direct-detection optical OFDM and 12 Gbit/s with a colorless transmitter," in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2007), Postdeadline Paper PDP18.
- A. J. Lowery, Liang Du and J. Armstrong, "Orthogonal frequency division multiplexing for adaptive dispersion compensation in long haul WDM systems," in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2006), Postdeadline Paper PDP39.
- A. J. Lowery, "Fiber nonlinearity mitigation in optical links that use OFDM for dispersion compensation," IEEE Photon. Technol. Lett. 1819, 1556-1558 (2007). [CrossRef]
- C. Pare, A. Villeneuve, P. -A. Belanger, and N. J. Doran, "Compensating for dispersion and the nonlinear Kerr effect without phase conjugation," Opt. Lett. 21, 459-461 (1996). [CrossRef] [PubMed]
- R. I. Killey, "Dispersion and nonlinearity compensation using electronic predistortion techniques" in the IEE Seminar on Fibre Communications and Electronic Signal Processing2005-11310, 0-14-2/6 (15 Dec. 2005).
- R. J. Essiambre, P. J. Winzer, W. Xun Qing, W. Lee, C. A. White, and E. C. Burrows, "Electronic predistortion and fiber nonlinearity," IEEE Photon. Technol. Lett. 18, 1804-1806 (2006). [CrossRef]
- K. Roberts, Chuandong Li, L. Strawczynski, and M. O'Sullivan, "Electronic precompensation of optical nonlinearity," IEEE Photon. Technol. Lett. 18, 403-405 (2006). [CrossRef]
- G. Goeger, "Modulation format with enhanced SPM-robustness for electronically pre-distorted transmission," in Tech. Digest of European Conference on Optical Communications, 2006, Paper Tu4.2.6.
- X. Liu and D. A. Fishman, "A fast and reliable algorithm for electronic pre-equalization of SPM and chromatic dispersion," in Tech. Digest of the Conference on Optical Fiber Communication, (Optical Society of America, 2006), Paper OThD4.
- C. Xia and W. Rosenkranz, "Mitigation of intrachannel nonlinearity using nonlinear electrical equalization," in Tech. Digest of European Conference on Optical Communications, 2006, Paper We1.5.3.
- C. Xu and X. Liu, "Postnonlinearity compensastion with data-driven phase modulators in phase-shift keying transmission," Opt. Lett. 27, 1619-1621 (2002). [CrossRef]
- K. P. Ho and J. M. Khan, "Electronic compensation technique to mitigate nonlinear phase noise," J. Lightwave Technol. 22, 779-783 (2004). [CrossRef]
- W. Shieh, X. Yi, Y. Ma, and Y. Tang, "Theoretical and experimental study of PMD-supported transmission using polarization diversity in coherent optical OFDM systems," Opt. Express 15, 9936-9947 (2007). [CrossRef] [PubMed]
- R. Feced, R. Rickard, and E. Richard, "Reference phase and amplitude estimation for coherent optical receiver," U. S. Patent Application 20050180760, August 18, 2005.
- T. H. Williams, "System for transmission of digital data using orthogonal frequency division multiplexing," U. S. Patent 5, 371, 548, December 6, 1994.
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