Optimizing power normalization for G.fast linear precoder by linear programming

The use of vectoring for crosstalk cancellation in the new ITU-T G.fast standard for next generation DSL systems becomes essential for efficient utilization of the extended bandwidth (up to 200 MHz). In VDSL2 (up to 30 MHz), a zero-forcing-based linear precoder is used in downstream which approaches...

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Vydané v:2014 IEEE International Conference on Communications (ICC) s. 4160 - 4165
Hlavní autori: Muller, Francisco C. B. F., Chenguang Lu, Eriksson, Per-Erik, Host, Stefan, Klautau, Aldebaro
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Jazyk:English
Vydavateľské údaje: IEEE 01.06.2014
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ISSN:1550-3607
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Abstract The use of vectoring for crosstalk cancellation in the new ITU-T G.fast standard for next generation DSL systems becomes essential for efficient utilization of the extended bandwidth (up to 200 MHz). In VDSL2 (up to 30 MHz), a zero-forcing-based linear precoder is used in downstream which approaches single-line performance. However, at high frequencies, the linear precoder may amplify the signal power substantially since the crosstalk channel is much stronger than at lower frequencies. Performance could be significantly degraded by power normalization to keep the PSD below the mask. In this work, we extended a per-line power normalization scheme by linear programming (LP) optimization. By simulations using measured cable data it is shown how the LP-based scheme further improves the linear precoder and it is also capable of balancing the data rate between lines. Further, the simulations also show the non-linear Tomlinson-Harashima precoder performs better than the linear precoders.
AbstractList The use of vectoring for crosstalk cancellation in the new ITU-T G.fast standard for next generation DSL systems becomes essential for efficient utilization of the extended bandwidth (up to 200 MHz). In VDSL2 (up to 30 MHz), a zero-forcing-based linear precoder is used in downstream which approaches single-line performance. However, at high frequencies, the linear precoder may amplify the signal power substantially since the crosstalk channel is much stronger than at lower frequencies. Performance could be significantly degraded by power normalization to keep the PSD below the mask. In this work, we extended a per-line power normalization scheme by linear programming (LP) optimization. By simulations using measured cable data it is shown how the LP-based scheme further improves the linear precoder and it is also capable of balancing the data rate between lines. Further, the simulations also show the non-linear Tomlinson-Harashima precoder performs better than the linear precoders.
Author Klautau, Aldebaro
Host, Stefan
Eriksson, Per-Erik
Chenguang Lu
Muller, Francisco C. B. F.
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  givenname: Francisco C. B. F.
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  surname: Chenguang Lu
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  givenname: Per-Erik
  surname: Eriksson
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  givenname: Stefan
  surname: Host
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  email: stefan.host@eit.lth.se
  organization: Dept. of Electr. & Inf. Technol., Lund Univ., Lund, Sweden
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  givenname: Aldebaro
  surname: Klautau
  fullname: Klautau, Aldebaro
  email: aldebaro@ufpa.br
  organization: Signal Process. Lab., Fed. Univ. of Para, Pará, Brazil
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Snippet The use of vectoring for crosstalk cancellation in the new ITU-T G.fast standard for next generation DSL systems becomes essential for efficient utilization of...
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StartPage 4160
SubjectTerms Bit rate
Communication cables
Crosstalk
Optimization
Quadrature amplitude modulation
Signal to noise ratio
Vectors
Title Optimizing power normalization for G.fast linear precoder by linear programming
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