Effects and Performance Analysis of Non-Linear Phase Noise in All Optical OFDM Systems by Iraj Sadegh Amiri, Volker J. Sorger and Amin Khodaei (Trade Paperback)

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Effects and Performance Analysis of Non-linear Phase Noise in All Optical OFDM Systems, Paperback by Amiri, Iraj Sadegh; Khodaei, Amin; Sorger, Volker J., ISBN 1536131458, ISBN-13 9781536131451, Brand New, Free shipping in the US

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Product Identifiers

PublisherNOVA Science Publishers, Incorporated
ISBN-101536131458
ISBN-139781536131451
eBay Product ID (ePID)14038752370

Product Key Features

Book TitleEffects and Performance Analysis of Non-Linear Phase Noise in All Optical Ofdm Systems
Number of Pages61 Pages
LanguageEnglish
TopicPhysics / Optics & Light, Chemical & Biochemical
IllustratorYes
GenreTechnology & Engineering, Science
AuthorIraj Sadegh Amiri, Volker J. Sorger, Amin Khodaei
Book SeriesChemical Engineering Methods and Technology Ser.
FormatTrade Paperback

Dimensions

Item Weight5.3 Oz
Item Length9.1 in
Item Width6.1 in

Additional Product Features

LCCN2018-933772
Dewey Edition23
TitleLeadingThe
Dewey Decimal535.2
Table Of ContentFor more information, please visit our website at:Softcover: https://www.novapublishers.com/catalog/product_info.php'products_id=63940E-book: https://www.novapublishers.com/catalog/product_info.php'products_id=63941
SynopsisDue to the limitation of the electrical OFDM signal and electrical Fast Fourier Transform (FFT), all-optical OFDMs have recently received much attention. Accordingly, this research study was conducted to investigate the effect of phase noise in the performance of an all-optical OFDM transmission system with 4-point FFT single mode fiber (SMF) links by considering the effects of fiber length, input laser power and a number of channels. In all optical systems, the transmitter side consists of a comb power generator, wavelength selected switch and an optical QAM generator. A comb power generator generates channels with a frequency separation of f=25 GHz. Subsequently, a Wavelength Selected Switch (WSS) was used to split subcarriers and then the subcarriers were modulated individually with Optical QAM modulators. As the results show, a higher number of channels led more phase noise in terms of XPM and FWM nonlinearities, and signal power was the main factor in nonlinear fiber optics. As a consequence, there is more phase noise distortion at a higher signal power for a higher number of channels rather than the lower number of channels.
LC Classification NumberTK5103.484.A45 2018

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