Title :
Space-time bit-interleaved coded modulation over frequency selective fading channels with iterative decoding
Author :
Tonello, Andrea M.
Author_Institution :
Dipt. di Elettronica e Inf., Padova Univ., Italy
Abstract :
A space-time serial concatenated coding approach for spectrally efficient and reliable communications over fading channels is presented. The approach is based on bit-interleaved convolutionally coded modulation with multiple transmit antennas. The decoding problem of such a scheme is addressed in frequency selective fading channels, where an iterative procedure is proposed. At the first step a multiple-soft-in multiple-soft-out maximum a posteriori equalizer is deployed. Then, a soft-in soft-out maximum a posteriori convolutional decoder follows after deinterleaving. Soft information is exchanged between the decoder and the equalizer through multiple equalization and decoding iterations. A 2 bits/s/Hz system deploying two transmit antennas is presented. Simulation results show that, with just one receive antenna, few decoding iterations yield significant BER/FER gains in both frequency selective block fading and frequency selective fast fading over the uncoded system with dual receive diversity
Keywords :
antenna arrays; array signal processing; convolutional codes; diversity reception; equalisers; fading channels; interleaved codes; iterative decoding; modulation coding; receiving antennas; transmitting antennas; BER/FER gain; SISO MAP convolutional decoder; antenna arrays; bit error rate; bit-interleaved convolutionally coded modulation; deinterleaving; dual receive diversity; frame error rate; frequency selective block fading; frequency selective fading channels; frequency selective fast fading; iterative decoding; multiple transmit antennas; multiple-soft-in multiple-soft-out MAP equalizer; receive antenna; simulation results; soft information exchange; space-time bit-interleaved coded modulation; space-time serial concatenated coding; spectrally efficient communications; spectrally reliable communications; uncoded system; Concatenated codes; Convolutional codes; Equalizers; Fading; Frequency diversity; Frequency modulation; Interleaved codes; Iterative decoding; Modulation coding; Transmitting antennas;
Conference_Titel :
Global Telecommunications Conference, 2000. GLOBECOM '00. IEEE
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-6451-1
DOI :
10.1109/GLOCOM.2000.891911