Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier

In mobile communication, the user’s information is transmitted through a wireless communication link that is subjected to a range of deteriorating effects. The quality of the transmission can be presented by the rate of transfer and the reliability of the received stream. The capacity of the communi...

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Main Author: Salmon, Brian Paxton
Other Authors: Olivier, Jan Corne
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/2263/25369
http://upetd.up.ac.za/thesis/available/etd-01262009-160431/
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-up-oai-repository.up.ac.za-2263-253692017-07-20T04:10:48Z Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier Salmon, Brian Paxton Olivier, Jan Corne brain.salmon@gmail.com Low-density parity-check codes Density evolution Peak-average power-ratio Wimax UCTD In mobile communication, the user’s information is transmitted through a wireless communication link that is subjected to a range of deteriorating effects. The quality of the transmission can be presented by the rate of transfer and the reliability of the received stream. The capacity of the communication link can be reached through the use of channel coding. Channel coding is the method of adding redundant information to the user’s information to mitigate the deteriorating effects of the communication link. Mobile WiMAX is a technology that makes use of orthogonal frequency division multiplexing (OFDM) modulation to transmit information over a wireless communication channel. The OFDM physical layer has a high peak average to power ratio (PAPR) characteristic that saturates the transmitter’s amplifier quite easily when proper backoff is not made in the transmission power. In this dissertation an optimized graph code was used as an alternative solution to improve the system’s performance in the presence of a saturated transmission’s amplifier. The graph code was derived from a degree distribution given by the density evolution algorithm and provided no extra network overhead to implement. The performance analysis resulted in a factor of 10 improvement in the error floor and a coding gain of 1.5 dB. This was all accomplished with impairments provided by the mobile WiMAX standard in the construction of the graph code. Dissertation (MEng)--University of Pretoria, 2009. Electrical, Electronic and Computer Engineering unrestricted 2013-09-06T21:04:39Z 2009-04-09 2013-09-06T21:04:39Z 2008-09-02 2009-04-09 2009-01-26 Dissertation http://hdl.handle.net/2263/25369 2008 E1203/gm http://upetd.up.ac.za/thesis/available/etd-01262009-160431/ ©University of Pretoria 2008 E1203/
collection NDLTD
sources NDLTD
topic Low-density parity-check codes
Density evolution
Peak-average power-ratio
Wimax
UCTD
spellingShingle Low-density parity-check codes
Density evolution
Peak-average power-ratio
Wimax
UCTD
Salmon, Brian Paxton
Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
description In mobile communication, the user’s information is transmitted through a wireless communication link that is subjected to a range of deteriorating effects. The quality of the transmission can be presented by the rate of transfer and the reliability of the received stream. The capacity of the communication link can be reached through the use of channel coding. Channel coding is the method of adding redundant information to the user’s information to mitigate the deteriorating effects of the communication link. Mobile WiMAX is a technology that makes use of orthogonal frequency division multiplexing (OFDM) modulation to transmit information over a wireless communication channel. The OFDM physical layer has a high peak average to power ratio (PAPR) characteristic that saturates the transmitter’s amplifier quite easily when proper backoff is not made in the transmission power. In this dissertation an optimized graph code was used as an alternative solution to improve the system’s performance in the presence of a saturated transmission’s amplifier. The graph code was derived from a degree distribution given by the density evolution algorithm and provided no extra network overhead to implement. The performance analysis resulted in a factor of 10 improvement in the error floor and a coding gain of 1.5 dB. This was all accomplished with impairments provided by the mobile WiMAX standard in the construction of the graph code. === Dissertation (MEng)--University of Pretoria, 2009. === Electrical, Electronic and Computer Engineering === unrestricted
author2 Olivier, Jan Corne
author_facet Olivier, Jan Corne
Salmon, Brian Paxton
author Salmon, Brian Paxton
author_sort Salmon, Brian Paxton
title Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
title_short Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
title_full Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
title_fullStr Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
title_full_unstemmed Optimizing LDPC codes for a mobile WiMAX system with a saturated transmission amplifier
title_sort optimizing ldpc codes for a mobile wimax system with a saturated transmission amplifier
publishDate 2013
url http://hdl.handle.net/2263/25369
http://upetd.up.ac.za/thesis/available/etd-01262009-160431/
work_keys_str_mv AT salmonbrianpaxton optimizingldpccodesforamobilewimaxsystemwithasaturatedtransmissionamplifier
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