Presentation 1998/2/6
Adaptive Equalization using Evolvable Hardware based on Radial Basis Functions
Masahiro Murakawa, Makiko Nakane, Tetsuya Higuchi, Tatsumi Furuya, Shuji Yoshizawa,
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Abstract(in English) We propose the use of evolvable hardware based on radial basis functions for the adaptive equalization of digital communication channel. Channel equalization is a method of compensating for channel distortion at the receiver's end to recover the original symbols. It the non-linear channel distortion is too severe to ignore, the conventional adaptive equalizers suffer from severe performance degradation because they are based on linear transversal filters. The proposed equalizer overcomes this difficulty via nonlinear functions implemented by the evolvable hardware. Simulation results show that the proposed equalizers have superior performance to traditional linear equalizers.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Adaptive Equalization / Genetic Algorithms / Evolvable Hardware / Radial Basis Function / Nonlinear Channel
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Conference Information
Committee NLP
Conference Date 1998/2/6(1days)
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Registration To Nonlinear Problems (NLP)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Adaptive Equalization using Evolvable Hardware based on Radial Basis Functions
Sub Title (in English)
Keyword(1) Adaptive Equalization
Keyword(2) Genetic Algorithms
Keyword(3) Evolvable Hardware
Keyword(4) Radial Basis Function
Keyword(5) Nonlinear Channel
1st Author's Name Masahiro Murakawa
1st Author's Affiliation Graduatc School of Engineering, University of Tokyo()
2nd Author's Name Makiko Nakane
2nd Author's Affiliation Faculty of Scence, Toho University
3rd Author's Name Tetsuya Higuchi
3rd Author's Affiliation Electrotechnical Laboratory
4th Author's Name Tatsumi Furuya
4th Author's Affiliation Faculty of Scence, Toho University
5th Author's Name Shuji Yoshizawa
5th Author's Affiliation Graduate School of Engineering, University of Tokyo
Date 1998/2/6
Paper #
Volume (vol) vol.97
Number (no) 531
Page pp.pp.-
#Pages 8
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