Advanced Digital Optical Communications by Le Nguyen Binh

By Le Nguyen Binh

This second edition of Digital Optical Communications presents a complete therapy of the trendy facets of coherent homodyne and self-coherent reception options utilizing algorithms included in electronic sign processing (DSP) structures and DSP-based transmitters to beat numerous linear and nonlinear transmission impairments and frequency mismatching among the neighborhood oscillator and the service, in addition to clock restoration and cycle slips. those smooth transmission structures have emerged because the middle expertise for Tera-bits in step with moment (bps) and Peta-bps optical net for the close to future.

Featuring large updates to all current chapters, complicated electronic Optical Communications, moment Edition:

  • Contains new chapters on optical fiber constructions and propagation, optical coherent receivers, DSP equalizer algorithms, and high-order spectral DSP receivers
  • Examines theoretical foundations, functional case stories, and MATLAB® and Simulink® versions for simulation transmissions
  • Includes new end-of-chapter perform difficulties and necessary appendices to complement technical information

Downloadable content material to be had with qualifying direction adoption

Advanced electronic Optical Communications, moment version supplies a basic figuring out of electronic communique purposes in optical verbal exchange applied sciences, emphasizing operation ideas as opposed to heavy mathematical research. it really is an incredible textual content for aspiring engineers and a worthwhile expert reference for these curious about optics, telecommunications, electronics, photonics, and electronic sign processing.

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The fundamental issues of soliton transmission are described. Temporal imaging for the refocusing of dispersive pulse sequences is also outlined. This temporal imaging is also used to minimize the jittering of soliton pulses due to noise generated from cascade optical amplifiers. 12) as follows. In this edition, Chapter 2 introduces optical fibers as the transmission medium for long-haul, metro, and access optical networks. Both geometricaland profile structures as well as the propagation of the modulation envelope under the influence of interference due to the different propagation velocities owing to the guided mode confinement of the fiber core and the wavelength-dependent Chapter 1 Introduction Chapter 3 Optical transmitters Chapter 2 Optical fiber: Structures and propagation Chapter 6 DPSK, ASK Discrete phase Chapter 4 Optical receivers and systems Chapter 5 Optical coherent receiver II Chapter 12 DSP equalizer algorithms Chapter 7 Multilevel DPSK, ASK (discrete phase) Chapter 13 DSP equalizer algorithms Self-coherent Chapter 8 Continuous phase CPM, MSK Chapter 14 DSP equalizer algorithms coherent Chapter 9 Frequency discrimination MSK receiver Chapter 10 Partial response, DuoB Chapter 15 Soliton systems: Nonlinear self Chapter 17 Adaptive optical equalization transmission Chapter 16 Higher-order spectrum DSP receiver Chapter 11 OFDM Chapter 18 All system/modulation/ DSP equal.

H. Gnauck, S. K. Korotky, B. L. Kasper, J. C. Campbell, J. R. Talman, J. J. Veselka, and A. R. 3 km of single mode optical fiber, in Proceedings of the OFC’86, paper PDP6, Atlanta, GA, 1986. 6. H. Kogelnik, High-speed lightwave transmission in optical fibers, Science, Vol. 228, pp. 1043–1048, 1985. 7. G. P. , New York: Wiley, 2002. A. R. Chraplyvy, A. H. Gnauck, R. W. Tkach, and R. M. Derosier, 8x10 Gb/s transmission through 280 km of dispersion-managed fiber, IEEE Photon. Technol. , Vol. 5, pp.

Kinjo, S. Kuroda, and T. Mizuochi, A comparative study of 10 Gb/s RZ-DPSK and RZ-ASK WDM transmission over transoceanic distances, in Proceedings of the OFC’03, Vol. 2, pp. 451–453, 2003. W. A. Atia and R. S. Bondurant, Demonstration of return-to-zero signaling in both OOK and DPSK formats to improve receiver sensitivity in an optically preamplified receiver, in Proceedings of the IEEE LEOS’99, Vol. 1, pp. 226–227, 1999. G. Bosco, A. Carena, V. Curri, R. Gaudino, and P. Poggiolini, On the use of NRZ, RZ, and CSRZ ­modulation at 40 Gb/s with narrow DWDM channel spacing, IEEE J.

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