302
7 Optical Receiver Operation
6. S. Bottacchi, Noise and Signal Interference in Optical Fiber Transmission Systems (Wiley,
New York, 2009)
7. A. Beling, J. C. Campbell, Advances in photodetectors and optical receivers (Chap. 3), in
Optical Fiber Telecommunications VIA, ed. by A. E. Willner, T. Li, I. Kaminow (Elsevier,
Amsterdam, 2010)
8. M. Atef, H. Zimmermann, Optoelectronic Circuits in Nanometer CMOS Technology (Springer,
Berlin, 2016)
9. B. Razavi, Design of Integrated Circuits for Optical Communications, 2nd ed. (Wiley, New
York, 2012)
10. F. Aznar, S. Celma, B. Calvo, CMOS Receiver Front-Ends for Gigabit Short-Range Optical
Communications (Springer, Berlin, 2013)
11. G.-S. Jeong, W. Bae, D.-K. Jeong, Review of CMOS integrated circuit technologies for highspeed photo-detection. Sensors, 17, 01962 (2017) (40 page review)
12. S. Zohoori, M. Dolatshahi, M. Pourahmadi, & M. Hajisafari, An inverter-based, CMOS, lowpower optical receiver front-end. Fiber Integr. Optics, 38(1), 1–20 (2019)
13. A. B. Carlson, P. Crilly, Communication Systems (5th edn.). McGraw-Hill (2010)
14. L. W. Couch II, Digital and Analog Communication Systems, 8th edn. (Prentice Hall, 2013)
15. R. E. Ziemer, W. H. Tranter, Principles of Communications: Systems, Modulation, and Noise,
7th edn. (Wiley, New York, 2014)
16. M. S. Alencar, V. C. da Rocha, Communication Systems (Springer, Berlin, 2020)
17. F. Ling, Synchronization in Digital Communication Systems (Cambridge University Press,
2017)
18. T. von Lerber, S. Honkanen, A. Tervonen, H. Ludvigsen, F. Küppers, Optical clock recovery
methods: review. Opt. Fiber Technol. 15(4), 363–372 (2009)
19. Z. Pan, C. Yu, A.E. Willner, Optical performance monitoring for the next generation optical
communication networks. Optical Fiber Technol. 16, 20–45 (2010)
20. ITU-T Recommendation O.201, Q-factor test equipment to estimate the transmission performance of optical channels, July 2003
21. J.J. Schiller, R.A. Srinivasan, M.R. Spiegel, Schaum’s Outline of Probability and Statistics, 4th
edn. (McGraw-Hill, 2013)
22. W. Navidi, Principles of Statistics for Engineers and Scientists, 2nd edn. (McGraw-Hill, 2021)
23. D. Zwillinger (ed.), Standard Mathematical Tables and Formulae, 33rd edn. (CRC Press, 2018)
24. ITU-T G-series Recommendations, Supplement 39, Feb 2016
25. ITU-T Recommendation G.959.1, Optical transport network physical layer interfaces, July
2018
26. IEEE 802.3-2018, IEEE Standard for Ethernet, June 2018
27. C. Su, L.-K. Chen, K.W. Cheung, Theory of burst-mode receiver and its applications in optical
multiaccess networks. J. Lightw. Technol. 15, 590–606 (1997)
28. G. Keiser, FTTX Concepts and Applications (Wiley, New York, 2006)
29. B.C. Thomsen, R. Maher, D.S. Millar, S.J. Savory, Burst mode receiver for 112 Gb/s DP-QPSK
with parallel DSP. Opt. Exp. 19(26), B770–B776 (2011)
30. S.C. Lin, S.L. Lee, C.K. Liu, C.L. Yang, S.C. Ko, T.W. Liaw, G. Keiser, Design and demonstration of REAM-based WDM-PONs with remote amplification and channel fault monitoring. J.
Opt. Commun. Netw. 4(4), 336–343 (2012)
31. A. Brillant, Digital and Analog Fiber Optic Communications for CATV and FTTx Applications
(Wiley, New York, 2008)
32. C. Lim, A. Nirmalathas, M. Bakaul, P. Gamage, K.L. Lee, Y. Yang, D. Novak, Fiber-wireless
networks and subsystem technologies. J. Lightw. Technol. 28(4), 390–405 (2009)
33. C. Lim, Y. Tian, C. Ranaweera, T.A. Nirmalathas, E. Wong, K.L. Lee, Evolution of radio-overfiber technology. J. Lightw. Technol. 37(6), 1647–1656 (2019)
7 Optical Receiver Operation
6. S. Bottacchi, Noise and Signal Interference in Optical Fiber Transmission Systems (Wiley,
New York, 2009)
7. A. Beling, J. C. Campbell, Advances in photodetectors and optical receivers (Chap. 3), in
Optical Fiber Telecommunications VIA, ed. by A. E. Willner, T. Li, I. Kaminow (Elsevier,
Amsterdam, 2010)
8. M. Atef, H. Zimmermann, Optoelectronic Circuits in Nanometer CMOS Technology (Springer,
Berlin, 2016)
9. B. Razavi, Design of Integrated Circuits for Optical Communications, 2nd ed. (Wiley, New
York, 2012)
10. F. Aznar, S. Celma, B. Calvo, CMOS Receiver Front-Ends for Gigabit Short-Range Optical
Communications (Springer, Berlin, 2013)
11. G.-S. Jeong, W. Bae, D.-K. Jeong, Review of CMOS integrated circuit technologies for highspeed photo-detection. Sensors, 17, 01962 (2017) (40 page review)
12. S. Zohoori, M. Dolatshahi, M. Pourahmadi, & M. Hajisafari, An inverter-based, CMOS, lowpower optical receiver front-end. Fiber Integr. Optics, 38(1), 1–20 (2019)
13. A. B. Carlson, P. Crilly, Communication Systems (5th edn.). McGraw-Hill (2010)
14. L. W. Couch II, Digital and Analog Communication Systems, 8th edn. (Prentice Hall, 2013)
15. R. E. Ziemer, W. H. Tranter, Principles of Communications: Systems, Modulation, and Noise,
7th edn. (Wiley, New York, 2014)
16. M. S. Alencar, V. C. da Rocha, Communication Systems (Springer, Berlin, 2020)
17. F. Ling, Synchronization in Digital Communication Systems (Cambridge University Press,
2017)
18. T. von Lerber, S. Honkanen, A. Tervonen, H. Ludvigsen, F. Küppers, Optical clock recovery
methods: review. Opt. Fiber Technol. 15(4), 363–372 (2009)
19. Z. Pan, C. Yu, A.E. Willner, Optical performance monitoring for the next generation optical
communication networks. Optical Fiber Technol. 16, 20–45 (2010)
20. ITU-T Recommendation O.201, Q-factor test equipment to estimate the transmission performance of optical channels, July 2003
21. J.J. Schiller, R.A. Srinivasan, M.R. Spiegel, Schaum’s Outline of Probability and Statistics, 4th
edn. (McGraw-Hill, 2013)
22. W. Navidi, Principles of Statistics for Engineers and Scientists, 2nd edn. (McGraw-Hill, 2021)
23. D. Zwillinger (ed.), Standard Mathematical Tables and Formulae, 33rd edn. (CRC Press, 2018)
24. ITU-T G-series Recommendations, Supplement 39, Feb 2016
25. ITU-T Recommendation G.959.1, Optical transport network physical layer interfaces, July
2018
26. IEEE 802.3-2018, IEEE Standard for Ethernet, June 2018
27. C. Su, L.-K. Chen, K.W. Cheung, Theory of burst-mode receiver and its applications in optical
multiaccess networks. J. Lightw. Technol. 15, 590–606 (1997)
28. G. Keiser, FTTX Concepts and Applications (Wiley, New York, 2006)
29. B.C. Thomsen, R. Maher, D.S. Millar, S.J. Savory, Burst mode receiver for 112 Gb/s DP-QPSK
with parallel DSP. Opt. Exp. 19(26), B770–B776 (2011)
30. S.C. Lin, S.L. Lee, C.K. Liu, C.L. Yang, S.C. Ko, T.W. Liaw, G. Keiser, Design and demonstration of REAM-based WDM-PONs with remote amplification and channel fault monitoring. J.
Opt. Commun. Netw. 4(4), 336–343 (2012)
31. A. Brillant, Digital and Analog Fiber Optic Communications for CATV and FTTx Applications
(Wiley, New York, 2008)
32. C. Lim, A. Nirmalathas, M. Bakaul, P. Gamage, K.L. Lee, Y. Yang, D. Novak, Fiber-wireless
networks and subsystem technologies. J. Lightw. Technol. 28(4), 390–405 (2009)
33. C. Lim, Y. Tian, C. Ranaweera, T.A. Nirmalathas, E. Wong, K.L. Lee, Evolution of radio-overfiber technology. J. Lightw. Technol. 37(6), 1647–1656 (2019)
