Disclosed is a frequency-domain decision feedback equalizing method and device for single carrier modulation, preferably for use in a broadband communication system, wherein in a first section a fast Fourier transformation is performed on a first vector of signals (9) inputted, and as a result a second vector of signals is (Ro,..,Rp-1)provided, a feed forward equalization is performed by multiplying each of the components of said second vector of signals with equalization parameters (Gff.o,…,Gef.p-1), and as a result a third vector of signals (Yo,*…,Yp-1) is provided, an inverse fast Fourier transformation is performed on said third vector of signals, and as a result a fourth vector of signals (2) is provided, and an output signal (4) of said first section is provided on the basis of said fourth vector of signals; and in a second section a linear feedback filtering of a signal derived from an output signal (d) of said second section is performed, and a filtered signal (x) is provided, said filtered signal is added to said output signal (y) of said first section, and an added signal (d) is provided, and said output signal (d) of said second section is generated by extracting samples from said added signal (d).

FREQUENCY-DOMAIN EQUALIZATION FOR SINGLE CARRIER SIGNALS

BENVENUTO, NEVIO;TOMASIN, STEFANO;
2004

Abstract

Disclosed is a frequency-domain decision feedback equalizing method and device for single carrier modulation, preferably for use in a broadband communication system, wherein in a first section a fast Fourier transformation is performed on a first vector of signals (9) inputted, and as a result a second vector of signals is (Ro,..,Rp-1)provided, a feed forward equalization is performed by multiplying each of the components of said second vector of signals with equalization parameters (Gff.o,…,Gef.p-1), and as a result a third vector of signals (Yo,*…,Yp-1) is provided, an inverse fast Fourier transformation is performed on said third vector of signals, and as a result a fourth vector of signals (2) is provided, and an output signal (4) of said first section is provided on the basis of said fourth vector of signals; and in a second section a linear feedback filtering of a signal derived from an output signal (d) of said second section is performed, and a filtered signal (x) is provided, said filtered signal is added to said output signal (y) of said first section, and an added signal (d) is provided, and said output signal (d) of said second section is generated by extracting samples from said added signal (d).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2488065
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