Title :
New Four-Dimensional Signal Constellations From Lipschitz Integers for Transmission Over the Gaussian Channel
Author :
Freudenberger, Jurgen ; Shavgulidze, Sergo
Author_Institution :
Inst. for Syst. Dynamics, Univ. of Appl. Sci., Konstanz, Germany
Abstract :
Codes over quotient rings of Lipschitz integers have recently attracted some attention. This work investigates the performance of Lipschitz integer constellations for transmission over the AWGN channel by means of the constellation figure of merit. A construction of sets of Lipschitz integers that leads to a better constellation figure of merit compared to ordinary Lipschitz integer constellations is presented. In particular, it is demonstrated that the concept of set partitioning can be applied to quotient rings of Lipschitz integers where the number of elements is not a prime number. It is shown that it is always possible to partition such quotient rings into additive subgroups in a manner that the minimum Euclidean distance of each subgroup is strictly larger than in the original set. The resulting signal constellations have a better performance for transmission over an additive white Gaussian noise channel compared to Gaussian integer constellations and to ordinary Lipschitz integer constellations. In addition, we present multilevel code constructions for the new signal constellations.
Keywords :
AWGN channels; channel coding; 4D signal constellations; AWGN channel; Euclidean distance; Gaussian channel; Gaussian integer constellations; Lipschitz integer constellations; additive white Gaussian noise channel; codes; constellation figure of merit; multilevel code constructions; quotient rings; AWGN channels; Additives; Constellation diagram; Encoding; Euclidean distance; Quaternions; Signal to noise ratio; 4D signal spaces; Gaussian integer constellation; Lipschitz integer constellation; Quadrature amplitude modulation; multilevel code construction;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2015.2441691