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Journal ArticleDOI

Impulse response shortening for discrete multitone transceivers

Peter J. W. Melsa, +2 more
- 01 Dec 1996 - 
- Vol. 44, Iss: 12, pp 1662-1672
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TLDR
Various methods of determining the coefficients for this time-domain finite impulse response (FIR) filter are explored and an optimal shortening and a least-squares approach are developed for shortening the channel's impulse response.
Abstract
In discrete multitone (DMT) transceivers an intelligent guard time sequence, called a cyclic prefix (CP), is inserted between symbols to ensure that samples from one symbol do not interfere with the samples of another symbol. The length of the CP is determined by the length of the impulse response of the effective physical channel. Using a long CP reduces the throughput of the transceiver, To avoid using a long CP, a short time-domain finite impulse response (FIR) filter is used to shorten the effective channels impulse response. This paper explores various methods of determining the coefficients for this time-domain filter. An optimal shortening and a least-squares (LS) approach are developed for shortening the channel's impulse response. To provide a computationally efficient algorithm a variation of the LS approach is explored. In full-duplex transceivers the length of the effective echo path impacts the computational requirements of the transceiver. A new paradigm of joint shortening is introduced and three methods are developed to jointly shorten the channel and the echo impulse responses in order to reduce the length of the CP and reduce computational requirements for the echo canceller.

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Citations
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Proceedings ArticleDOI

A new channel shortening method for discrete multitone based modems

TL;DR: A new technique to design time domain equalizer (TEQ) based on vector space projection method (VSPM) is proposed that performs better or at least comparable in terms of achievable bit rate and bit rate consistency when compared to other methods.
Proceedings ArticleDOI

Joint channel equalization and radio frequency interference suppression for DMT using equation-error approach

TL;DR: A novel adaptive training algorithm for joint channel shortening and radio frequency interference suppression is proposed for discrete multi-tone (DMT) using an equation-error based approach that both shortens the channel impulse response and removes the interferences using a short-length FIR filter.

Channel shortening for doubly selective channels using teq, mmse and lms

TL;DR: This paper addresses how to perform calculation for the coefficients of SIRF using Equalization techniques, how to design doubly selective channels and their shortner, and which equalizer is best known and performs well and reformulates it for channel shortening equalizer.

Minimum-Mean-Output-Energy Blind Adaptive Channel Shortening for Multicarrier

TL;DR: In this paper, a blind adaptive channel shortening method for finite-impulse response time-domain equalizers (TEQs) in single-input multiple-output systems employing multicarrier modulations is proposed.
References
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Journal ArticleDOI

A new look at the statistical model identification

TL;DR: In this article, a new estimate minimum information theoretical criterion estimate (MAICE) is introduced for the purpose of statistical identification, which is free from the ambiguities inherent in the application of conventional hypothesis testing procedure.
Journal ArticleDOI

A discrete multitone transceiver system for HDSL applications

TL;DR: A discrete multitone (DMT) transceiver design for high bit rate digital subscriber line (HDSL) access is presented and analyzed and is an excellent candidate for HDSL implementation.
Proceedings ArticleDOI

Equalizer training algorithms for multicarrier modulation systems

TL;DR: Several algorithms for designing the time-domain equalizer, which use adaptation in the frequency domain and windowing in the time domain in order to minimize the mean squared error of the equalized response, are described.
Proceedings ArticleDOI

A cost-effective maximum likelihood receiver for multicarrier systems

TL;DR: Results indicate that near-optimum performance can be achieved by using the general optimum class of structures derived that includes the decision feedback equalizer and the lesser-known autoregressive moving average filters at a great computational reduction.
Proceedings ArticleDOI

Recursive ladder algorithms for ARMA modeling

TL;DR: In this paper, the extension of the all-pole (AR) exact least-squares ladder algorithms to the pole-zero (ARMA) case is presented, based on a general set of recursions obtained by a geometric approach.
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