Title :
Two-dimensional (recursive) channel equalization for multicarrier systems with soft impulse shaping (MCSIS)
Author :
Matheus, Kirsten ; Knoche, Klaus ; Feuersänger, Martin ; Kammeyer, Karl-Dirk
Author_Institution :
Ericsson Eurolab Deutschland GmbH, Nurnberg, Germany
Abstract :
Multicarrier (MC) systems are attractive for the use in mobile radio environments, because they can handle long echoes better than single carrier (SC) systems. To be able to optimally exploit the diversity immanent in the transmission channels a multicarrier system with soft impulse shaping (MCSIS) has been introduced in previous works. This system, that in itself carries intersymbol and adjacent channel interference (ISI and ACI), has so far been implemented with the suboptimal solution of a one-dimensional equalization in either time or frequency direction only. This paper now investigates the possibilities of using MCSIS with two-dimensional equalization structures, either implemented as a combination of two one-dimensional equalizers (pseudo two-dimensional equalization) or implemented with a real two-dimensional equalizer
Keywords :
AWGN channels; adjacent channel interference; equalisers; intersymbol interference; land mobile radio; multipath channels; transient response; 2D recursive channel equalization; ACI; AWGN channel; ISI; Viterbi equalization; adjacent channel interference; diversity; intersymbol interference; long echoes; mobile radio channels; mobile radio environments; multicarrier systems; multipath propagation; one-dimensional equalization; pseudo two-dimensional equalization; real two-dimensional equalizer; single carrier systems; soft impulse shaping; suboptimal solution; transmission channels; two-dimensional equalization structures; Communications Society; Computer hacking; Equalizers; Filters; Frequency measurement; Interchannel interference; Land mobile radio; OFDM; Radio transmitters; Viterbi algorithm;
Conference_Titel :
Global Telecommunications Conference, 1998. GLOBECOM 1998. The Bridge to Global Integration. IEEE
Conference_Location :
Sydney,NSW
Print_ISBN :
0-7803-4984-9
DOI :
10.1109/GLOCOM.1998.776871