DocumentCode :
1332562
Title :
Increasing data rate over wireless channels
Author :
Naguib, Ayman F. ; Seshadri, Nambi ; Calderbank, A.R.
Author_Institution :
AT&T Labs., Florham Park, NJ, USA
Volume :
17
Issue :
3
fYear :
2000
fDate :
5/1/2000 12:00:00 AM
Firstpage :
76
Lastpage :
92
Abstract :
Space-time coding (STC) is a new coding/signal processing framework for wireless communication systems with multiple transmit and multiple receive antennas. This new framework has the potential of dramatically improve the capacity and data rates. In addition, this framework presents the best trade-off between spectral efficiency and power consumption. ST codes (designed so far) come in two different types. ST trellis codes offer the maximum possible diversity gain and a coding gain without any sacrifice in the transmission bandwidth. The decoding of these codes, however, would require the use of a vector form of the Viterbi decoder. Space-time block codes (STBCs) offer a much simpler may of obtaining transmit diversity without any sacrifice in bandwidth and without requiring huge decoding complexity. In fact, the structure of the STBCs is such that it allows for very simple signal processing (linear combining) for encoding/decoding, differential encoding/detection, and interference cancellation. This new signal processing framework offered by ST codes can be used to enhance the data rate and/or capacity in various wireless applications. That is the reason many of these STC ideas have already found their way to some of the current third-generation wireless systems standards
Keywords :
block codes; cellular radio; channel capacity; data communication; decoding; differential detection; diversity reception; interference suppression; multipath channels; personal communication networks; radiofrequency interference; signal processing; trellis codes; PCS; ST codes; ST trellis codes; Viterbi decoder; cellular radio; channel capacity; coding gain; data rate; decoding; decoding complexity; differential encoding/detection; diversity gain; encoding/decoding; interference cancellation; linear combining; multipath channels; multiple receive antennas; multiple transmit antennas; power consumption; signal processing; space-time block codes; space-time coding; spectral efficiency; third-generation wireless systems standards; transmission bandwidth; transmit diversity; wireless applications; wireless channels; wireless communication systems; Bandwidth; Convolutional codes; Decoding; Diversity methods; Energy consumption; Receiving antennas; Signal processing; Vectors; Viterbi algorithm; Wireless communication;
fLanguage :
English
Journal_Title :
Signal Processing Magazine, IEEE
Publisher :
ieee
ISSN :
1053-5888
Type :
jour
DOI :
10.1109/79.841731
Filename :
841731
Link To Document :
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