Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems

We present a bit rate maximising per-tone equalisation (BM-PTEQ) cost function that is based on an exact subchannel SNR as a function of per-tone equaliser in discrete multitone (DMT) systems. We then introduce the proposed BM-PTEQ criterion whose derivation for solution is shown to inherit from the...

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Main Authors: Suchada Sitjongsataporn, Peerapol Yuvapoositanon
Format: Article
Language:English
Published: SpringerOpen 2009-01-01
Series:EURASIP Journal on Advances in Signal Processing
Online Access:http://dx.doi.org/10.1155/2009/380560
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spelling doaj-351939e85ff4449d9c432eefe3b2d1952020-11-25T01:38:28ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61721687-61802009-01-01200910.1155/2009/380560Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based SystemsSuchada SitjongsatapornPeerapol YuvapoositanonWe present a bit rate maximising per-tone equalisation (BM-PTEQ) cost function that is based on an exact subchannel SNR as a function of per-tone equaliser in discrete multitone (DMT) systems. We then introduce the proposed BM-PTEQ criterion whose derivation for solution is shown to inherit from the methodology of the existing bit rate maximising time-domain equalisation (BM-TEQ). By solving a nonlinear BM-PTEQ cost function, an adaptive BM-PTEQ approach based on a recursive Levenberg-Marquardt (RLM) algorithm is presented with the adaptive inverse square-root (iQR) algorithm for DMT-based systems. Simulation results confirm that the performance of the proposed adaptive iQR RLM-based BM-PTEQ converges close to the performance of the proposed BM-PTEQ. Moreover, the performance of both these proposed BM-PTEQ algorithms is improved as compared with the BM-TEQ. http://dx.doi.org/10.1155/2009/380560
collection DOAJ
language English
format Article
sources DOAJ
author Suchada Sitjongsataporn
Peerapol Yuvapoositanon
spellingShingle Suchada Sitjongsataporn
Peerapol Yuvapoositanon
Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
EURASIP Journal on Advances in Signal Processing
author_facet Suchada Sitjongsataporn
Peerapol Yuvapoositanon
author_sort Suchada Sitjongsataporn
title Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
title_short Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
title_full Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
title_fullStr Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
title_full_unstemmed Bit Rate Maximising Per-Tone Equalisation with Adaptive Implementation for DMT-Based Systems
title_sort bit rate maximising per-tone equalisation with adaptive implementation for dmt-based systems
publisher SpringerOpen
series EURASIP Journal on Advances in Signal Processing
issn 1687-6172
1687-6180
publishDate 2009-01-01
description We present a bit rate maximising per-tone equalisation (BM-PTEQ) cost function that is based on an exact subchannel SNR as a function of per-tone equaliser in discrete multitone (DMT) systems. We then introduce the proposed BM-PTEQ criterion whose derivation for solution is shown to inherit from the methodology of the existing bit rate maximising time-domain equalisation (BM-TEQ). By solving a nonlinear BM-PTEQ cost function, an adaptive BM-PTEQ approach based on a recursive Levenberg-Marquardt (RLM) algorithm is presented with the adaptive inverse square-root (iQR) algorithm for DMT-based systems. Simulation results confirm that the performance of the proposed adaptive iQR RLM-based BM-PTEQ converges close to the performance of the proposed BM-PTEQ. Moreover, the performance of both these proposed BM-PTEQ algorithms is improved as compared with the BM-TEQ.
url http://dx.doi.org/10.1155/2009/380560
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AT peerapolyuvapoositanon bitratemaximisingpertoneequalisationwithadaptiveimplementationfordmtbasedsystems
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