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Design of improved quasi-cyclic protograph-based Raptor-like LDPC codes for short block-lengths

机译:改进的基于准循环质子的猛禽样LDPC码的设计,用于短块长度

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Protograph-based Raptor-like low-density parity-check codes (PBRL codes) are a recently proposed family of easily encodable and decodable rate-compatible LDPC (RC-LDPC) codes. These codes have an excellent iterative decoding threshold and performance across all design rates. PBRL codes designed thus far, for both long and short block-lengths, have been based on optimizing the iterative decoding threshold of the protograph of the RC code family at various design rates. In this work, we propose a design method to obtain better quasi-cyclic (QC) RC-LDPC codes with PBRL structure for short block-lengths (of a few hundred bits). We achieve this by maximizing an upper bound on the minimum distance of any QC-LDPC code that can be obtained from the protograph of a PBRL ensemble. The obtained codes outperform the original PBRL codes at short block-lengths by significantly improving the error floor behavior at all design rates. Furthermore, we identify a reduction in complexity of the design procedure, facilitated by the general structure of a PBRL ensemble.
机译:基于质子的猛禽样的低密度奇偶校验码(PBRL代码)是最近提出的易于编码和可解码速率兼容LDPC(RC-LDPC)代码的套房。这些代码具有出色的迭代解码阈值和跨所有设计速率的性能。到目前为止设计的PBRL代码是基于在各种设计速率下优化RC代码系列的迭代解码阈值。在这项工作中,我们提出了一种设计方法,以获得具有用于短块长度的PBRL结构的更好的准循环(QC)RC-LDPC码(几百位)。我们通过最大限度地提高任何可以从PBRL合奏的质量获得的QC-LDPC代码的最小距离上的上限来实现这一点。所获得的代码通过显着提高所有设计速率的误差楼层行为来实现在短块长度下的原始PBR码。此外,我们确定了通过PBRL集合的一般结构促进了设计过程的复杂性的减少。

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