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Multilevel lattices based on spatially-coupled LDPC codes with applications

机译:基于空间耦合LDPC码的多级晶格及其应用

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We propose a class of lattices constructed using Construction D where the underlying linear codes are nested binary spatially-coupled low-density parity-check codes (SC-LDPC) codes with uniform left and right degrees. By leveraging recent results on the optimality of spatially-coupled codes for binary input memoryless channels and Forney et al.'s earlier results on the optimality of construction D, we show that the proposed lattices achieve the Poltyrev limit under multistage belief propagation decoding. Lattice codes constructed from these lattices are shown to provide excellent performance for the three user symmetric interference channel. They can also be naturally used in applications such as integer-forcing and compute-and-forward.
机译:我们提出使用构造D构造的一类晶格,其中底层线性代码是嵌套的左右空间度均一的嵌套二进制空间耦合低密度奇偶校验码(SC-LDPC)代码。通过利用关于二进制输入无记忆通道的空间耦合码的最优性的最新结果以及Forney等人关于结构D的最优性的较早结果,我们证明了所提出的晶格在多级置信度传播解码下达到了Poltyrev极限。由这些晶格构成的格码显示为三个用户对称干扰信道提供了出色的性能。它们也可以自然地用于整数强制和计算转发等应用程序中。

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