Efficient LDLC Decoder Design from the Lattice Viewpoint

Xuebo Wang, Wai Ho Mow · 2019

Low density lattice codes (LDLCs) have been shown to approach the AWGN channel capacity and can be decoded by a message passing decoder. The messages passed between check nodes and variable nodes are probability density functions, which are approximated by Gaussian mixtures in existing LDLC decoders. However, in the best-known M-Gaussian decoder, the Gaussian mixtures for approximating variable node messages still contain unnecessary Gaussian components, resulting in exponential decoding complexity in the LDLC degree d. In this paper, an efficient LDLC decoder is proposed from the lattice viewpoint, which only finds out important Gaussian components for approximating the variable node messages. The decoding complexity for the proposed decoder is linear in d. Numerical results show that the proposed decoder can achieve significant complexity saving without degrading the performance compared with the M-Gaussian decoder. In particular, the runtime saving is 75.3% when the code length is 10000 and d is 7.

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