Title :
Double-equalization-algorithm for time and frequency selective multiuser channels
Author :
Reinhardt, M. ; Schurr, M. ; Lindner, J.
Author_Institution :
Dept. of Inf. Technol., Ulm Univ., Germany
Abstract :
We describe a transmission scheme and a new low complexity equalization algorithm for a multiuser system to equalize time and frequency selective multiuser channels. Under appropriate assumptions the channels are asymptotically transformed into AWGN subchannels. The transmission scheme for each user is a block transmission scheme based on a Walsh-Hadamard transform. The receiver is a combination of a vector decision feedback equalizer to equalize the multiple access interference due to multipath propagation in a multiuser environment and an iterative block decision feedback equalizer to equalize the intra block interference caused by the time variance of the channel. The algorithm combining the two types of equalizers in a suitable way by means of an additional interleaver is called the double-equalization-algorithm. It is shown in simulations that the performance of the system with antipodal signalling in a time varying multipath environment is close to the performance of antipodal signalling in AWGN
Keywords :
Gaussian channels; Hadamard transforms; decision feedback equalisers; digital radio; diversity reception; fading; interference suppression; iterative methods; land mobile radio; multipath channels; radiofrequency interference; telecommunication signalling; time-varying channels; AWGN subchannels; Walsh-Hadamard transform; antipodal signalling; block transmission scheme; double equalization algorithm; fading channels; frequency selective multiuser channels; interleaver; intrablock interference; iterative block decision feedback equalizer; low complexity equalization algorithm; mobile digital communication systems; multipath propagation; multiple access interference; multiuser environment; multiuser system; receiver; system performance; time selective multiuser channels; time variance; time varying multipath environment; vector decision feedback equalizer; AWGN channels; Bandwidth; Decision feedback equalizers; Fading; Frequency; Information technology; Intersymbol interference; Iterative algorithms; Multiple access interference; Multiuser channels;
Conference_Titel :
Spread Spectrum Techniques and Applications Proceedings, 1996., IEEE 4th International Symposium on
Conference_Location :
Mainz
Print_ISBN :
0-7803-3567-8
DOI :
10.1109/ISSSTA.1996.563240