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Practical Encoder and Decoder for Power Constrained QC LDPC-Lattice Codes

机译:功率受限的QC LDPC格码的实用编码器和解码器

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摘要

Low density parity check (LDPC) lattices were the first family of lattices equipped with iterative decoding algorithms. We introduce quasi-cyclic LDPC (QC LDPC) lattices as a special case of LDPC lattices with one binary QC-LDPC code as their underlying code. These lattices are obtained from the Construction A of lattices providing us to encode them efficiently using shift registers. To benefit from an encoder with linear complexity in the lattice dimension, we obtain the generator matrix of these lattices in quasi-cyclic form. We generalize the proposed quasi-cyclic form of the generator matrix for other Construction A lattices, namely the LDA lattices, with a non-binary QC-LDPC code as their underlying code. We provide a low-complexity decoding algorithm of QC LDPC-lattices based on the sum product algorithm. To design lattice codes, QC LDPC-lattices are combined with the nested lattice shaping that uses the Voronoi region of a sublattice for shaping. The shaping gain and the shaping loss of our lattice codes with dimensions 40, 50, and 60 using an optimal quantizer, are presented. The guidelines for applying efficient shaping methods, like hypercube shaping, for QC LDPC-lattices are also given. Consequently, we establish a family of lattice codes that perform practically close to the sphere bound.
机译:低密度奇偶校验(LDPC)晶格是配备迭代解码算法的第一个晶格家族。我们引入准循环LDPC(QC LDPC)晶格作为LDPC晶格的特例,以一个二进制QC-LDPC码作为其基础代码。这些晶格是从晶格的结构A中获得的,这使我们可以使用移位寄存器对它们进行有效编码。为了受益于在晶格维度上具有线性复杂度的编码器,我们以准循环形式获得了这些晶格的生成矩阵。我们使用其他非构造QC-LDPC码作为其他构造A晶格(即LDA晶格),对生成矩阵的拟循环形式进行了概括。我们基于和积算法提供了一种低复杂度的QC LDPC晶格解码算法。为了设计晶格代码,将QC LDPC晶格与嵌套晶格成形相结合,后者使用子晶格的Voronoi区域进行成形。给出了使用最佳量化器的尺寸为40、50和60的晶格码的整形增益和整形损耗。还提供了适用于QC LDPC晶格的有效成形方法(如超立方体成形)的指南。因此,我们建立了一系列晶格代码,它们实际上接近球体边界。

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