Construction of Capacity-Achieving Lattice Codes: Polar Lattices
Abstract
In this paper, we propose a new class of lattices constructed from polar codes, namely polar lattices, to achieve the capacity of the additive white Gaussian-noise (AWGN) channel. Our construction follows the multilevel approach of Forney \textit{et al.}, where we construct a capacity-achieving polar code on each level. The component polar codes are shown to be naturally nested, thereby fulfilling the requirement of the multilevel lattice construction. We prove that polar lattices are \emph{AWGN-good}. Furthermore, using the technique of source polarization, we propose discrete Gaussian shaping over the polar lattice to satisfy the power constraint. Both the construction and shaping are explicit, and the overall complexity of encoding and decoding is for any fixed target error probability.
Keywords
Cite
@article{arxiv.1411.0187,
title = {Construction of Capacity-Achieving Lattice Codes: Polar Lattices},
author = {Ling Liu and Yanfei Yan and Cong Ling and Xiaofu Wu},
journal= {arXiv preprint arXiv:1411.0187},
year = {2018}
}
Comments
full version of the paper to appear in IEEE Trans. Communications