IJIRST (International Journal for Innovative Research in Science & Technology)ISSN (online) : 2349-6010

 International Journal for Innovative Research in Science & Technology

Pulse Walk off Effect and Data Format for Stimulated Raman Scattering and Comparison between Different Data Formats


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International Journal for Innovative Research in Science & Technology
Volume 1 Issue - 12
Year of Publication : 2015
Authors : Kamini Kumari ; Hardeep Singh

BibTeX:

@article{IJIRSTV1I12105,
     title={Pulse Walk off Effect and Data Format for Stimulated Raman Scattering and Comparison between Different Data Formats},
     author={Kamini Kumari and Hardeep Singh},
     journal={International Journal for Innovative Research in Science & Technology},
     volume={1},
     number={12},
     pages={610--615},
     year={},
     url={http://www.ijirst.org/articles/IJIRSTV1I12105.pdf},
     publisher={IJIRST (International Journal for Innovative Research in Science & Technology)},
}



Abstract:

This article presents almost pulse walk off effect and different data format such as RZ, The performance of optical system is reduced by non-linear effects.it is known that when optical power is very high then non-linear effect tend to manifests themselves so that study became important in DWDM system. Constant modulated power is produce using pulse walk off. Due to SRS effect, channel at shorter wavelength act as pump for the channel act as stokes. To reduce SRS effect or to achieve almost constant modulated power pulse walk off rule is applied. Power tilt Because of SRS effect has been calculated at RZ, NRZ and optical Manchester format. Power has been varied from 1 to 60 mw. Using pulse walk off rule effect on channel was done. Pulse walk off rule limit the effective length and number of channels increases. Using this algorithm, efficiency is also increased.


Keywords:

Dense wavelength-division multiplexing, linear power approximation, modulated power, number of channels, nonlinearity, NRZ, optical Manchester, pulse walk off, Stimulated Raman Scattering, transmitted power


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