Title :
Hierarchical Space-Time Block Code Recognition Using Correlation Matrices
Author :
Choqueuse, Vincent ; Yao, Koffi ; Collin, Ludovic ; Burel, Gilles
Author_Institution :
Lab. E3I2, ENSIETA, Brest
fDate :
9/1/2008 12:00:00 AM
Abstract :
The blind recognition of communication parameters is a key research issue for commercial and military communication systems. The results of numerous investigations about symbol timing estimation, modulation recognition as well as identification of the number of transmitters have been reported in the literature. But, to our knowledge, none of them have dealt with the recognition of the Space-Time Block Codes (STBC) used in multiple transmitter communications. In order to blindly recognize the STBC of a wireless communication, this paper proposes a method based on the space-time correlations of the received signals. Under perfect timing synchronization and under ideal conditions (full rank channel and a number of receivers greater or equal to the number of transmitters), it shows that the Frobenius norms of these statistics present non-null values whose positions only depend on the STBC at the transmitter side. A classifier for the space-time code recognition of 5 linear STBC (Spatial Multiplexing, Alamouti Coding, and 3 Orthogonal STBC using 3 antennas) is presented. Simulations show that the proposed method performs well even at low signal-to-noise ratios.
Keywords :
MIMO communication; antenna arrays; block codes; correlation methods; matrix algebra; radiocommunication; space-time codes; synchronisation; Alamouti Coding; Frobenius norms; MIMO communication; blind recognition; commercial communication systems; communication parameters; correlation matrices; hierarchical space-time block code recognition; low signal-to-noise ratios; military communication systems; modulation recognition; multiple transmitter communications; orthogonal codes; spatial multiplexing; symbol timing estimation; timing synchronization; transmitters identification; wireless communication; Block codes; Decoding; Electronic warfare; MIMO; Military communication; Signal detection; Space time codes; Timing; Transmitters; Wireless communication; MIMO; electronic warfare; space-time coding;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2008.070364