References
361
References
1. A. B. Carlson, P. Crilly, Communication Systems, 5th edn. (McGraw-Hill, 2010)
2. L.W. Couch II, Digital and Analog Communication Systems, 8th edn. (Prentice Hall, 2013)
3. R.E. Ziemer, W.H. Tranter, Principles of Communications: Systems, Modulation, and Noise,
7th edn. (Wiley, 2014)
4. J.M. Giron-Sierra, Digital Signal Processing with Matlab Examples, Volume 1: Signals and
Data, Filtering, Non-stationary Signals, Modulation (Springer, 2017)
5. M.S. Alencar, V.C. da Rocha, Communication Systems (Springer, 2020)
6. T. von Lerber, S. Honkanen, A. Tervonen, H. Ludvigsen, F. Küppers, Optical clock recovery
methods: Review. Opt. Fiber Technol. 15(4), 363–372 (2009)
7. S. Benedetto, G. Bosco, Channel coding for optical communications, in Optical Communication Theory and Techniques, ed. by E. Forestieri, pp. 63–78 (Springer, 2005)
8. P.J. Winzer, R.J. Essiambre, Advanced optical modulation formats. Proc. IEEE 94, 952–985
(2006)
9. P.V. Kumar, M.Z. Win, H.-F. Lu, C.N. Georghiades, Error-control coding techniques and applications (Chap. 17), in Optical Fiber Telecommunications-V, ed. by I.P. Kaminov, T. Li, A.E.
Willner, vol. B. Academic Press (2008)
10. R. Keim, What is a low pass filter? A tutorial on the basics of passive RC filters. All About
Circuits, 12 May 2019
11. T. Kanada, Evaluation of modal noise in multimode fiber-optic systems. J. Lightw. Technol. 2,
11–18 (1984)
12. R.D. de la Iglesia, E.T. Azpitarte, Dispersion statistics in concatenated single-mode fibers. J.
Lightw. Technol. 5, 1768–1772 (1987)
13. M. Suzuki, N. Edagawa, Dispersion-managed high-capacity ultra-long-haul transmission. J.
Lightw. Technol. 21, 916–929 (2003)
14. L. Grüner-Nielsen, M. Wandel, P. Kristensen, C. Jørgensen, L.V. Jørgensen, B. Edvold, B.
Pálsdóttir, D. Jakobsen, Dispersion-compensating fibers. J. Lightw. Technol. 23, 3566–3579
(2005)
15. A.B. Dar, R.K. Jha, Chromatic dispersion compensation techniques and characterization of
fiber Bragg grating for dispersion compensation. Opt Quant Electron 49, 108 (2017)
16. T. Xu, G. Jacobsen, S. Popov, J. Li, S. Sergeyev, A.T. Friberg, T. Liu, Y. Zhang, Analysis of
chromatic dispersion compensation and carrier phase recovery in long-haul optical transmission
system influenced by equalization enhanced phase noise. Optik 138, 494–508 (2017)
17. H. Bülow, F. Buchali, A. Klekamp, Electronic dispersion compensation. J. Lightw. Technol.
26, 158–167 (2008)
18. ITU-T Recommendation G.957, Optical Interfaces for Equipments and Systems Relating to
the Synchronous Digital Hierarchy, Mar 2006
19. Telcordia, SONET Transport Systems—Common Generic Criteria GR-253, Issue 5, Dec 2009
20. M. Brodsky, N.J. Frigo, M. Tur, Polarization mode dispersion (Chap. 16), in Optical Fiber
Telecommunications-V, ed. by I.P. Kaminov, T. Li, A.E. Willner, vol. A, pp. 593−603
(Academic Press, 2008)
21. D.S. Waddy, L. Chen, X. Bao, Polarization effects in aerial fibers. Optical Fiber Tech. 11(1),
1–19 (2005)
22. M. Zamani, Polarization-induced distortion effects on the information rate in single-mode
fibers. Appl. Opt. 57, 6572–6581 (2018)
23. A.M.J. Koonen, Bit-error-rate degradation in a multimode fiber optic transmission link due to
modal noise. IEEE J. Sel. Areas. Commun. SAC-4, 1515−1522 (1986)
24. P.M. Shankar, Bit-error-rate degradation due to modal noise in single-mode fiber optic
communication systems. J. Opt. Commun. 10, 19–23 (1989)
25. P. Pepeljugoski, Dynamic behavior of mode partition noise in multimode fiber links. J. Lightw.
Technol. 30(15), 2514–2519 (2012)
26. K. Ogawa, Analysis of mode partition noise in laser transmission systems. IEEE J. Quantum
Electron. QE-18, 849−855 (1982)
361
References
1. A. B. Carlson, P. Crilly, Communication Systems, 5th edn. (McGraw-Hill, 2010)
2. L.W. Couch II, Digital and Analog Communication Systems, 8th edn. (Prentice Hall, 2013)
3. R.E. Ziemer, W.H. Tranter, Principles of Communications: Systems, Modulation, and Noise,
7th edn. (Wiley, 2014)
4. J.M. Giron-Sierra, Digital Signal Processing with Matlab Examples, Volume 1: Signals and
Data, Filtering, Non-stationary Signals, Modulation (Springer, 2017)
5. M.S. Alencar, V.C. da Rocha, Communication Systems (Springer, 2020)
6. T. von Lerber, S. Honkanen, A. Tervonen, H. Ludvigsen, F. Küppers, Optical clock recovery
methods: Review. Opt. Fiber Technol. 15(4), 363–372 (2009)
7. S. Benedetto, G. Bosco, Channel coding for optical communications, in Optical Communication Theory and Techniques, ed. by E. Forestieri, pp. 63–78 (Springer, 2005)
8. P.J. Winzer, R.J. Essiambre, Advanced optical modulation formats. Proc. IEEE 94, 952–985
(2006)
9. P.V. Kumar, M.Z. Win, H.-F. Lu, C.N. Georghiades, Error-control coding techniques and applications (Chap. 17), in Optical Fiber Telecommunications-V, ed. by I.P. Kaminov, T. Li, A.E.
Willner, vol. B. Academic Press (2008)
10. R. Keim, What is a low pass filter? A tutorial on the basics of passive RC filters. All About
Circuits, 12 May 2019
11. T. Kanada, Evaluation of modal noise in multimode fiber-optic systems. J. Lightw. Technol. 2,
11–18 (1984)
12. R.D. de la Iglesia, E.T. Azpitarte, Dispersion statistics in concatenated single-mode fibers. J.
Lightw. Technol. 5, 1768–1772 (1987)
13. M. Suzuki, N. Edagawa, Dispersion-managed high-capacity ultra-long-haul transmission. J.
Lightw. Technol. 21, 916–929 (2003)
14. L. Grüner-Nielsen, M. Wandel, P. Kristensen, C. Jørgensen, L.V. Jørgensen, B. Edvold, B.
Pálsdóttir, D. Jakobsen, Dispersion-compensating fibers. J. Lightw. Technol. 23, 3566–3579
(2005)
15. A.B. Dar, R.K. Jha, Chromatic dispersion compensation techniques and characterization of
fiber Bragg grating for dispersion compensation. Opt Quant Electron 49, 108 (2017)
16. T. Xu, G. Jacobsen, S. Popov, J. Li, S. Sergeyev, A.T. Friberg, T. Liu, Y. Zhang, Analysis of
chromatic dispersion compensation and carrier phase recovery in long-haul optical transmission
system influenced by equalization enhanced phase noise. Optik 138, 494–508 (2017)
17. H. Bülow, F. Buchali, A. Klekamp, Electronic dispersion compensation. J. Lightw. Technol.
26, 158–167 (2008)
18. ITU-T Recommendation G.957, Optical Interfaces for Equipments and Systems Relating to
the Synchronous Digital Hierarchy, Mar 2006
19. Telcordia, SONET Transport Systems—Common Generic Criteria GR-253, Issue 5, Dec 2009
20. M. Brodsky, N.J. Frigo, M. Tur, Polarization mode dispersion (Chap. 16), in Optical Fiber
Telecommunications-V, ed. by I.P. Kaminov, T. Li, A.E. Willner, vol. A, pp. 593−603
(Academic Press, 2008)
21. D.S. Waddy, L. Chen, X. Bao, Polarization effects in aerial fibers. Optical Fiber Tech. 11(1),
1–19 (2005)
22. M. Zamani, Polarization-induced distortion effects on the information rate in single-mode
fibers. Appl. Opt. 57, 6572–6581 (2018)
23. A.M.J. Koonen, Bit-error-rate degradation in a multimode fiber optic transmission link due to
modal noise. IEEE J. Sel. Areas. Commun. SAC-4, 1515−1522 (1986)
24. P.M. Shankar, Bit-error-rate degradation due to modal noise in single-mode fiber optic
communication systems. J. Opt. Commun. 10, 19–23 (1989)
25. P. Pepeljugoski, Dynamic behavior of mode partition noise in multimode fiber links. J. Lightw.
Technol. 30(15), 2514–2519 (2012)
26. K. Ogawa, Analysis of mode partition noise in laser transmission systems. IEEE J. Quantum
Electron. QE-18, 849−855 (1982)
