Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion

A Master of Science thesis in Computer Engineering by Rami Yousef Al-Dalky entitled, "Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion," submitted in January 2013. Thesis advisor is Dr. Ta...

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Main Author: Al-Dalky, Rami Yousef (author)
Format: doctoralThesis
Published: 2013
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Online Access:http://hdl.handle.net/11073/4816
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_version_ 1864513442512109568
author Al-Dalky, Rami Yousef
author_facet Al-Dalky, Rami Yousef
author_role author
dc.contributor.none.fl_str_mv Landolsi, Taha
Elrefaie, Aly
Hassan, Mohamed
dc.creator.none.fl_str_mv Al-Dalky, Rami Yousef
dc.date.none.fl_str_mv 2013-02-10T06:19:56Z
2013-02-10T06:19:56Z
2013-01
dc.format.none.fl_str_mv application/pdf
application/vnd.openxmlformats-officedocument.presentationml.presentation
dc.identifier.none.fl_str_mv 35.232-2013.02
http://hdl.handle.net/11073/4816
dc.language.none.fl_str_mv en_US
dc.subject.none.fl_str_mv transmission fiber
filter cascade
dual carrier systems
chromatic dispersion
Optical fiber communication
Wavelength division multiplexing
Multiplexing
dc.title.none.fl_str_mv Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/doctoralThesis
description A Master of Science thesis in Computer Engineering by Rami Yousef Al-Dalky entitled, "Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion," submitted in January 2013. Thesis advisor is Dr. Taha Landolsi and Co-Advisors are Dr. Aly Elrefaie and Dr. Mohamed Hassan. Available are both soft and hard copies of the thesis.
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spelling Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic DispersionAl-Dalky, Rami Youseftransmission fiberfilter cascadedual carrier systemschromatic dispersionOptical fiber communicationWavelength division multiplexingMultiplexingA Master of Science thesis in Computer Engineering by Rami Yousef Al-Dalky entitled, "Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion," submitted in January 2013. Thesis advisor is Dr. Taha Landolsi and Co-Advisors are Dr. Aly Elrefaie and Dr. Mohamed Hassan. Available are both soft and hard copies of the thesis.In the near future, data rates of 100 Gb/s and 400 Gb/s will be used to match the increase in bandwidth demand for capacity. Wavelength division multiplexing (WDM) systems transmit multiple wavelengths simultaneously at high data rates over long distances where the signal passes through multiple optical add drop multiplexers (OADMs) along the fiber link towards the destination. The transmitted signals su_er from dispersion induced from the fiber and OADMs, where these e_ects are an important limiting factor. The success of high-bit rate, long-haul, point-to-point optical transmission networks depends on the management of the fiber's linear and non-linear e_ects. In this thesis, we propose to study the impact of cascaded filters as the signals pass through multiple OADMs to determine its e_ect on the next generation network's data rates. We aim to study the impact of cascaded filters on single-carrier and dual-carrier 100 and 400 Gb/s optical transmission systems. The eye closure penalty (ECP) will be used as a performance evaluation metric. The results indicate that the filter cascade has a severe impact on the performance of dual-carrier systems relative to the case of single-carrier systems. Secondly, chromatic dispersion (CD) e_ect will be mitigated electronically for 100 and 400 Gb/s systems using fiber-dispersion finite impulse response (FD-FIR) filter. The compensating FIR filter's coe_cient will be computed from the impulse response of the inverse of the fiber's transfer function. Bit error rate (BER) versus optical signalto- noise ratio (OSNR) curve will be used to evaluate the compensating technique. The results indicate that for 100 Gb/s PM-QPSK systems, using 2 samples/symbol with maximum number of taps is the best approach to compensate for CD. While for 400 Gb/s PM-16QAM systems, using 4 samples/symbol with 50% of the maximum number of taps is the best approach to compensate for CD.College of EngineeringDepartment of Computer Science and EngineeringMaster of Science in Computer Engineering (MSCoE)Landolsi, TahaElrefaie, AlyHassan, Mohamed2013-02-10T06:19:56Z2013-02-10T06:19:56Z2013-01info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisapplication/pdfapplication/vnd.openxmlformats-officedocument.presentationml.presentation35.232-2013.02http://hdl.handle.net/11073/4816en_USoai:repository.aus.edu:11073/48162025-06-26T12:29:01Z
spellingShingle Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
Al-Dalky, Rami Yousef
transmission fiber
filter cascade
dual carrier systems
chromatic dispersion
Optical fiber communication
Wavelength division multiplexing
Multiplexing
status_str publishedVersion
title Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
title_full Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
title_fullStr Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
title_full_unstemmed Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
title_short Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
title_sort Performance Degradation of 100Gb/s PM-QPSK and 400 Gb/s PM-16QAM Coherent Communication Systems Due to Optical Filter Cascade and Chromatic Dispersion
topic transmission fiber
filter cascade
dual carrier systems
chromatic dispersion
Optical fiber communication
Wavelength division multiplexing
Multiplexing
url http://hdl.handle.net/11073/4816