Optical Networks: Design and Modelling: IFIP TC6 Second by Admela Jukan, Arnold Monitzer (auth.), Giancarlo de Marchis,

By Admela Jukan, Arnold Monitzer (auth.), Giancarlo de Marchis, Roberto Sabella (eds.)

Optical community layout and modelling is a vital factor for making plans and working networks for the subsequent century. the most matters in optical networking are being largely investigated, not just for WDM networks but in addition for optical TDM and optical packet switching. This ebook contributes to extra development in optical community architectures, layout, operation and administration and covers the next issues intimately:

  • Routing innovations and algorithms for optical networks;
  • Network making plans and layout;
  • Wavelength conversion and wavelength project in optical networks;
  • Technologies for optical networks (transport, entry and native region networks);
  • Transmission facets in extensive quarter optical networks;
  • New paradigms for site visitors modelling.

This e-book comprises the chosen lawsuits of the second one overseas operating convention on Optical community layout and Modelling, which used to be subsidized by way of the overseas Federation for info Processing (IFIP), and held in February 1998, in Rome, Italy.
This beneficial new publication should be crucial interpreting for body of workers in computer/communication industries, and for tutorial and learn employees in computing device technology and electric engineering.

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Extra resources for Optical Networks: Design and Modelling: IFIP TC6 Second International Working Conference on Optical Network Design and Modelling (ONDM’98) February 9–11, 1998 Rome, Italy

Example text

6, pp. 1198-1206, June 1996. [5] N. , pp. 122-123. , ' Dimensioning and design of the WDM optical layer in transport network' , SPIE conference on All-Optical Communication: Architecture, Control, and Network Issues III, November 2-3, 1997, pp. 244-252. 36 Part Two: Wavelength conversion and assignment [7] R. A. Barry, P. Humblet, 'Models of blocking probability in all optical networks with and without wavelength changers',lEEE INFOCOM'95, Boston,. [8] L. , 'A comparison of survivability methods for the optical layer", NOC'97, June 17-20, Antwerp, Belgium, pp.

Different routing strategies of optical paths in such networks have been investigated [1] ; resource allocation has also been proposed using two different schemes based on wavelength routing and wavelength switching, respectively. The design of a WDM transport network not only implies identifying algorithms for routing and resource allocation but also modeling of different routing functions at the node and network levels. Such a function is wavelength conversion. This paper addresses the use of wavelength conversion in WDM networks.

Device for all-optical wavelength conversion and spectral inversion 29 [6] D. D Marcenac, D. Nesset, A. E. Kelly, M. Briely, A. D. Ellis, D. G. Moodie, and C. W. Ford, "40 Gbitls transmission over 406 kIn of NDSF using midspan spectral inversion in a 2 mm long semiconductor optical amplifier," Electron. Lett. 33,879-881 (1997). [7] A. Mecozzi, "Small signal theory of wavelength converters based on cross-gain modulation in semiconductor optical amplifiers," IEEE Photon. Technol. Lett. 8, 1471-1473 (1996).

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