Efficient time domain equalizer design for DWMT data transmission

DWMT 데이타 전송을 위한 효율적인 시간영역 등화기 설계

  • 홍훈희 (전북대학교 전자정보공학부 정보통신연구소) ;
  • 박태윤 (전북대학교 전자정보공학부 정보통신연구소) ;
  • 유승선 (전북대학교 전자정보공학부 정보통신연구소) ;
  • 곽훈성 (전북대학교 전자정보공학부 정보통신연구소) ;
  • 최재호 (전북대학교 전자정보공학부 정보통신연구소)
  • Published : 1999.06.01

Abstract

In this paper, an efficient time domain equalization algorithm for discrete wavelet multitone(DWMT) data transmission is developed. In this algorithm, the time domain equalizer(TEQ) consists of two stages, i.e., the channel impulse response shortening equalizer(TEQ-S) in the first stage and the channel frequency flattening equalizer(TEQ-F) in the second stage. TEQ-S reduces the length of transmission channel impulse response to decrease intersymbol interference(ISI) followed by TEQ-F that enhances the channel frequency response characteristics to the level of an ideal channel, hence diminishes the bit error rate. TEQ-S is implemented using the least-squares(LS) method, while TEQ-F is designed by using the least mean-square(LMS) algorithm. Since DWMT system also requires of the frequency domain equalizer in order to further reduce ICI and ISI the hardware complexity is an another concern. However, by adopting an well designed and trained TEQ, the hardware complexity of the whole DWMT system can be greatly reduced.

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