Title :
Overview and comparison of equalization schemes for space-time-coded signals with application to EDGE
Author :
Al-Dhahir, Naofal
Author_Institution :
AT&T Shannon Lab., Florham Park, NJ, USA
fDate :
10/1/2002 12:00:00 AM
Abstract :
This paper describes and compares several practical equalization schemes for space-time-coded transmissions over broadband wireless channels. For space-time trellis codes (STTCs), we describe and compare two reduced-complexity trellis-based joint equalization and decoding schemes whose performance is further optimized by a front-end finite-impulse response (FIR) channel-shortening prefilter. For space-time block codes, we describe and compare three joint equalization and decoding schemes based on a block-level implementation of the well-known Alamouti scheme either in the time or frequency domains. We consider the third-generation time division multiple access (TDMA) cellular system known as Enhanced Data rates for Global Evolution (EDGE) and recommend a promising equalization scheme for space-time trellis-coded and for Alamouti-type space-time block-coded dual-antenna transmissions based on simulation results for typical urban channel conditions where the delay spread is few symbol periods.
Keywords :
FIR filters; antenna arrays; block codes; broadband networks; cellular radio; decoding; equalisers; time division multiple access; trellis codes; Alamouti scheme; EDGE; STTCs; TDMA cellular system; block-level implementation; broadband wireless channels; delay spread; dual-antenna transmissions; enhanced data rates for global evolution; equalization schemes; front-end finite-impulse response channel-shortening prefilter; reduced-complexity trellis-based joint equalization/decoding schemes; space-time trellis codes; space-time-coded signals; third-generation time division multiple access cellular system; urban channel conditions; Bandwidth; Bit rate; Constellation diagram; Costs; Decoding; Delay effects; Intersymbol interference; Radio frequency; Time division multiple access; Transmitting antennas;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2002.803321