Laser nonlinearity reduction model using taylor series expansion for free space optical communication system

One primary limitation on the performance of the optical transceiver is the nonlinearity of the laser transmitter, which produces intermodulation distortions and necessitates various compromises between modulation depth, channel spacing and types of modulation scheme, leading to degraded bandwidt...

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Main Authors: Idrus, Sevia Mahdaliza, Maiteeg, Ahmed Bashir, Harun, Hilmi
Format: Book Section
Published: Penerbit UTM 2007
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Online Access:http://eprints.utm.my/id/eprint/13553/
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spelling my.utm.135532011-08-10T01:18:07Z http://eprints.utm.my/id/eprint/13553/ Laser nonlinearity reduction model using taylor series expansion for free space optical communication system Idrus, Sevia Mahdaliza Maiteeg, Ahmed Bashir Harun, Hilmi TK Electrical engineering. Electronics Nuclear engineering One primary limitation on the performance of the optical transceiver is the nonlinearity of the laser transmitter, which produces intermodulation distortions and necessitates various compromises between modulation depth, channel spacing and types of modulation scheme, leading to degraded bandwidth efficiency. Nonlinearity of a directly modulated laser diode imposes limitations in the performance of the optical communication systems. Many laser linearization techniques involve the use of duplicate lasers or optical modulators, and those, which attempt to create physical structures within the optical modulators, and lasers can obviously increase the cost relative to ordinary optical transmitters. Fundamentally, linearization techniques can be divided into one of the following categories: feedforward, feedback, precorrective distortion. In this chapter a new free space optical link non-linearity correction system has been introduced employing the Feedforward Linearization technique, so called Optical Free Space Feedforward Linearization System (OFFLS). The system was modeled by Taylor series and the results of the simulations have shown a significant reduction in the 3 th and 5 th order intermodulation distortion products (IMD) by 30 dB over 2GHz bandwidth. Penerbit UTM 2007 Book Section PeerReviewed Idrus, Sevia Mahdaliza and Maiteeg, Ahmed Bashir and Harun, Hilmi (2007) Laser nonlinearity reduction model using taylor series expansion for free space optical communication system. In: Advances In Free Space Optical Technology. Penerbit UTM, Johor, pp. 60-73. ISBN 978-983-52-0670-2
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Idrus, Sevia Mahdaliza
Maiteeg, Ahmed Bashir
Harun, Hilmi
Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
description One primary limitation on the performance of the optical transceiver is the nonlinearity of the laser transmitter, which produces intermodulation distortions and necessitates various compromises between modulation depth, channel spacing and types of modulation scheme, leading to degraded bandwidth efficiency. Nonlinearity of a directly modulated laser diode imposes limitations in the performance of the optical communication systems. Many laser linearization techniques involve the use of duplicate lasers or optical modulators, and those, which attempt to create physical structures within the optical modulators, and lasers can obviously increase the cost relative to ordinary optical transmitters. Fundamentally, linearization techniques can be divided into one of the following categories: feedforward, feedback, precorrective distortion. In this chapter a new free space optical link non-linearity correction system has been introduced employing the Feedforward Linearization technique, so called Optical Free Space Feedforward Linearization System (OFFLS). The system was modeled by Taylor series and the results of the simulations have shown a significant reduction in the 3 th and 5 th order intermodulation distortion products (IMD) by 30 dB over 2GHz bandwidth.
format Book Section
author Idrus, Sevia Mahdaliza
Maiteeg, Ahmed Bashir
Harun, Hilmi
author_facet Idrus, Sevia Mahdaliza
Maiteeg, Ahmed Bashir
Harun, Hilmi
author_sort Idrus, Sevia Mahdaliza
title Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
title_short Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
title_full Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
title_fullStr Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
title_full_unstemmed Laser nonlinearity reduction model using taylor series expansion for free space optical communication system
title_sort laser nonlinearity reduction model using taylor series expansion for free space optical communication system
publisher Penerbit UTM
publishDate 2007
url http://eprints.utm.my/id/eprint/13553/
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score 13.211869