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Advanced Digital Optical Communications, Second Edition by Le Nguyen Binh

By Le Nguyen Binh

This second edition of Digital Optical Communications presents a complete remedy of the trendy elements of coherent homodyne and self-coherent reception ideas 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 know-how for Tera-bits according to moment (bps) and Peta-bps optical net for the close to future.

Featuring large updates to all latest chapters, complex 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

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Advanced electronic Optical Communications, moment version

supplies a primary realizing of electronic verbal exchange functions in optical communique applied sciences, emphasizing operation rules as opposed to heavy mathematical research. it really is an excellent textual content for aspiring engineers and a helpful expert reference for these thinking about optics, telecommunications, electronics, photonics, and electronic sign processing.

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Advanced Digital Optical Communications, Second Edition (Optics and Photonics)

This moment version of electronic Optical Communications offers a accomplished remedy of the fashionable points of coherent homodyne and self-coherent reception suggestions utilizing algorithms integrated in electronic sign processing (DSP) platforms and DSP-based transmitters to beat numerous linear and nonlinear transmission impairments and frequency mismatching among the neighborhood oscillator and the provider, in addition to clock restoration and cycle slips.

Additional info for Advanced Digital Optical Communications, Second Edition (Optics and Photonics)

Sample text

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. , Vol.  9, pp. 1694–1704, 2002. A. H. Gnauck, G. Raybon, P. G. Bernasconi, J. Leuthold, C. R. Doerr, and L. W. 6 Gb/s) transmission over 2000-km NZDF using OTDM and RZ-DPSK format, IEEE Photon. Technol. , Vol. 15, No. 11, pp. 1618–1620, 2003. 25. B. Zhu, L. E. Nelson, S. Stulz, A. H. Gnauck, C. Doerr, J. Leuthold, L. Gruner-Nielsen, M. O. Pedersen, J.

Bold letters indicate those chapters contained in the 1st edition, with updates in the 2nd edition. Likewise, unbold letters are for new chapters in this 2nd edition. 14 Advanced Digital Optical Communications refractive index are treated to give insights into the propagation of lightwaves and distortion on the modulated signals so that the equalization and compensation in optical and DSP electronic domains can be developed in later chapters of the book. In Chapter 3, optical transmitter configurations based on the principles of operation of interferometric effects for the generation of phase and frequency modulation, either the CPFSK format or the I–Q structure of the ODQPSK format, are proposed for generating optical MSK signals.

4 External Optical Modulation External modulation is the essential technique for modulating the lightwaves so that its linewidth preserves its narrowness, and only the sidebands of the modulation scheme dominate the spectral property of the generated passband characteristics. 8 show the typical structure of optical transmitters for the generation of NRZ and RZ optical signals. The laser is always switched on, and its lightwaves are modulated via the electro-optic modulator using the principles of interferometric constructive and destructive interference to represent the ON and OFF states of the lightwaves.

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