Method for transmission line impulse response equalization and a

Pulse or digital communications – Equalizers – Automatic

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375350, 3647242, 333166, H04L 2701

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058704329

ABSTRACT:
A set of parameters (W) is calculated for an equalizer which equalizes a transmission line impulse response (LIR) in such a way that the equalized impulse response (EIR) approximates a target impulse response (TIR) with predetermined length (L). An error function (E) is minimized via eigenvalue-eigenvector calculation of a channel dependent matrix (O). This channel dependent matrix (O) is built up from a signal (X), a distorted signal (Y), and length (L) and delay (D) of the target impulse response (TIR). The error function (E) comprises a first contribution which represents the difference between the equalized impulse response (EIR) and the target impulse response (TIR) and a second contribution which represents the energy (E.sub.DC) that is transmitted in unused frequency bands. The eigenvector corresponding to the minimum eigenvalue of the channel dependent matrix (O) represents the set of equalizer parameters (W).

REFERENCES:
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patent: 5675394 (1997-10-01), Choi
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Uyematsu T. et al.: `An Optimization of the Stable Tap Adjustment Algorithm for the Fractionally Spaced Equalizer`, IEEE International Conference on Communications, ICC '88 Conference Record (Cat No. 88CH2538-7), pp. 366-370, U.S.A.
"Equalizer Training Algorithms for Multicarrier Modulation Systems", J. Chow et al, Proc. IEEE, 1993, pp. 761-765.
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