Title :
Systematic and optimal cyclotomic lattices and diagonal space-time block code designs
Author :
Wang, Genyuan ; Liao, Huiyong ; Wang, Haiquan ; Xia, Xiang-Gen
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Delaware, Newark, DE, USA
Abstract :
In this correspondence, a new and systematic design of cyclotomic lattices with full diversity is proposed by using some algebraic number theory. This design provides infinitely many full diversity cyclotomic lattices for a given lattice size. Based on the packing theory and the concrete form of the design, optimal cyclotomic lattices are presented by minimizing the mean transmission signal power for a given minimum (diversity) product (or equivalently maximizing the minimum product for a given mean transmission signal power). The newly proposed cyclotomic lattices can be applied to both space-time code designs for multi-antenna systems and linear precode design for signal space diversity in single antenna systems over fast Rayleigh fading channels. Although there are some cyclotomic lattices/space-time codes existing in the literature, most of them are not optimal.
Keywords :
Galois fields; Rayleigh channels; algebraic codes; block codes; diversity reception; linear codes; number theory; space-time codes; Galois theory; Rayleigh fading channel; algebraic number theory; diagonal space-time block code; linear precode design; multiantenna system; optimal cyclotomic lattices; packing theory; signal space diversity; single antenna system; systematic design; Additive noise; Block codes; Concrete; Euclidean distance; Fading; Lattices; Linearity; Maximum likelihood decoding; Resists; Signal design; 211;time block codes; 65; Algebraic number theory; Galois theory; cyclotomic fields; cyclotomic lattices; space
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2004.838096