Title :
Low-rate multi-dimensional space-time codes for both slow and rapid fading channels
Author :
Tarokh, V. ; Naguib, A. ; Seshadri, N. ; Calderbank, A.R.
Author_Institution :
AT&T Labs.-Res., Florham Park, NJ, USA
Abstract :
We consider the design of channel codes for improving the data rate and/or the reliability of communications using multiple transmit antennas over a fading channel. It is assumed that the transmitter does not know the channel but seeks to choose a codebook that guarantees a diversity gain of r1 when there is no mobility and a diversity gain of r2⩾r1 when the channel is fast fading. A solution to this problem is unveiled in this paper. Here, the encoded data is split into n streams that are simultaneously transmitted using n transmit antennas. The signal received at each receive antenna is a superposition of the faded versions of the n transmitted signals. We derive performance criteria for designing codes having the aforementioned properties. Performance is shown to be determined by diversity advantage quantified by a rank/distance and coding advantage quantified by a determinant/product criterion. The criteria is used to design codes for both slow and rapid fading channels. The constructed codes have remarkable performance in low signal to noise ratios and are suitable for improving the frequency reuse factor under a variety of mobility conditions
Keywords :
antenna arrays; channel coding; diversity reception; fading; frequency allocation; land mobile radio; mobile antennas; radio transmitters; telecommunication network reliability; time-varying channels; transmitting antennas; channel codes; codebook; data rate; determinant/product criterion; diversity gain; frequency reuse factor; low-rate multi-dimensional space-time codes; mobility; multiple transmit antennas; performance criteria; rapid fading channels; receive antenna; reliability; slow fading channels; transmit antennas; transmitter; Convolutional codes; Data communication; Diversity methods; Fading; Frequency; Mobile antennas; Receiving antennas; Signal to noise ratio; Space time codes; Transmitting antennas;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1997. Waves of the Year 2000. PIMRC '97., The 8th IEEE International Symposium on
Conference_Location :
Helsinki
Print_ISBN :
0-7803-3871-5
DOI :
10.1109/PIMRC.1997.627077