Title :
Joint optimal impulse response shortening
Author :
Melsa, Peter J W ; Rohrs, Charles E. ; Younce, Richard C.
Author_Institution :
Tellabs Res. Center, Mishawaka, IN, USA
Abstract :
In discrete multitone 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 CP length is determined by the impulse response length of the effective physical channel. The cyclic prefix reduces the throughput of the transceiver. When the transceiver is used in a full-duplex environment the portion of the receive signal arising from echo must be reduced through the use of echo cancellation, the complexity of which is directly related to the length of the echo path impulse response. To alleviate both problems a short time-domain FIR filter can be used to shorten both the effective channel and echo impulse responses. This paper explores a joint optimal algorithm for determining the coefficients of this time-domain filter, resulting in reduced ISI and echo canceller complexity. For the simulations a configuration is chosen which is representative of that encountered by the remote terminal in the asymmetrical digital subscriber lines (ADSL) environment
Keywords :
FIR filters; echo suppression; filtering theory; intersymbol interference; optimisation; signal sampling; subscriber loops; telecommunication channels; transceivers; ADSL; ISI reduction; asymmetrical digital subscriber lines; cyclic prefix length; discrete multitone; echo cancellation; echo canceller complexity; echo impulse response; echo path impulse response; full-duplex environment; impulse response length; joint optimal algorithm; joint optimal impulse response shortening; physical channel; receive signal; remote terminal; short time-domain FIR filter; simulations; time-domain filter coefficients; transceiver throughput reduction; Echo cancellers; Finite impulse response filter; Frequency domain analysis; Intersymbol interference; Lakes; OFDM modulation; Signal generators; Throughput; Time domain analysis; Transceivers;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1996. ICASSP-96. Conference Proceedings., 1996 IEEE International Conference on
Print_ISBN :
0-7803-3192-3
DOI :
10.1109/ICASSP.1996.544207