DocumentCode :
1685017
Title :
Unified Analysis of Linear Block Precoding for Distributed Antenna Systems
Author :
Koike-Akino, Toshiaki ; Molisch, Andreas F. ; Tao, Zhifeng ; Orlik, Philip ; Kuze, Toshiyuki
Author_Institution :
SEAS, Harvard Univ., Cambridge, MA, USA
fYear :
2009
Firstpage :
1
Lastpage :
6
Abstract :
Block transmission with cyclic prefix is a promising technique to realize high-speed data rates in frequency selective fading channels. Many popular linear precoding schemes, including orthogonal frequency-division multiplexing (OFDM), single-carrier (SC) block transmission, and time-reversal (TR), can be interpreted as such a block transmission. This paper presents a unified performance analysis which shows how the optimal precoding strategy depends on the receiver type and the optimization criterion (capacity and mean-square error). We analyze three variants of TR methods (based on maximum-ratio combining, equal-gain combining and selective combining) and two-types of pre-equalization methods (zero-forcing and minimum mean-square error). As one application of our framework, we derive optimal power control for OFDM in the presence of interference limitation for distributed antenna systems; we find that without power control, OFDM does not have any capacity advantage over SC transmissions. When comparing SC and TR, we verify that for single-antenna systems at high SNRs, SC has a capacity advantage; however, TR performs better in the low SNR regime. For multiple-antenna systems, TR always provides higher capacity, and the capacity of TR can approach that of optimal precoders with a number of distributed antennas.
Keywords :
OFDM modulation; antenna arrays; block codes; fading channels; linear codes; power control; precoding; distributed antenna systems; frequency selective fading channels; linear block precoding; multiple-antenna systems; optimal power control; optimal precoders; orthogonal frequency-division multiplexing single-carrier block transmission; pre-equalization methods; unified performance analysis; Diversity reception; Fading; Frequency division multiplexing; Interference; OFDM; Performance analysis; Power control; Receiving antennas; Transmitters; Transmitting antennas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Telecommunications Conference, 2009. GLOBECOM 2009. IEEE
Conference_Location :
Honolulu, HI
ISSN :
1930-529X
Print_ISBN :
978-1-4244-4148-8
Type :
conf
DOI :
10.1109/GLOCOM.2009.5425550
Filename :
5425550
Link To Document :
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