DocumentCode :
1355797
Title :
Grassmannian Packings From Operator Reed–Muller Codes
Author :
Ashikhmin, Alexei ; Calderbank, A. Robert
Author_Institution :
Math. of Commun. Res. Dept. Bell Labs., Alcatel-Lucent, Murray Hill, NJ, USA
Volume :
56
Issue :
11
fYear :
2010
Firstpage :
5689
Lastpage :
5714
Abstract :
This paper introduces multidimensional generalizations of binary Reed-Muller codes where the codewords are projection operators, and the corresponding subspaces are widely separated with respect to the chordal distance on Grassmannian space. Parameters of these Grassmannian packings are derived and a low complexity decoding algorithm is developed by modifying standard decoding algorithms for binary Reed-Muller codes. The subspaces are associated with projection operators determined by Pauli matrices appearing in the theory of quantum error correction and this connection with quantum stabilizer codes may be of independent interest. The Grassmannian packings constructed here find application in noncoherent wireless communication with multiple antennas, where separation with respect to the chordal distance on Grassmannian space guarantees closeness to the channel capacity. It is shown that the capacity of the noncoherent multiple-input-multiple-output (MIMO) channel at both low and moderate signal-to-noise ratio (SNR) (under the constraint that only isotropically distributed unitary matrices are used for information transmission) is closely approximated by these packings.
Keywords :
MIMO systems; Reed-Muller codes; binary codes; channel coding; decoding; error correction; matrix algebra; Grassmannian packings; Grassmannian space; MIMO channel; Pauli matrices; SNR; binary Reed-Muller codes; channel capacity; chordal distance; codewords; complexity decoding algorithm; decoding algorithms; information transmission; isotropically distributed unitary matrices; multidimensional generalizations; multiple antennas; multiple-input-multiple-output channel; noncoherent wireless communication; operator Reed-Muller codes; projection operators; quantum error correction; quantum stabilizer codes; signal-to-noise ratio; Channel capacity; MIMO; Modulation; Mutual information; Parity check codes; Signal to noise ratio; Space time codes; Chordal distance; Grassmannian packings; Reed–Muller codes; noncoherent multiple-input–multiple-output (MIMO) channel; space-time codes;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2010.2070192
Filename :
5605381
Link To Document :
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