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

机译:短块长度的改进的基于准循环原型的基于Raptor的LDPC码的设计

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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:基于原型的猛禽样低密度奇偶校验码(PBRL码)是最近提出的易于编码和可解码的速率兼容LDPC(RC-LDPC)码系列。这些代码在所有设计速率下均具有出色的迭代解码阈值和性能。到目前为止,针对长块和短块长度设计的PBRL代码都基于在各种设计速率下优化RC代码系列的原型的迭代解码阈值。在这项工作中,我们提出一种设计方法,以针对较短的块长度(几百个比特)获得具有PBRL结构的更好的准循环(QC)RC-LDPC码。我们通过最大化可以从PBRL集成体的原型获得的任何QC-LDPC码的最小距离的上限来实现这一点。通过显着改善所有设计速率下的错误基底性能,所获得的代码在短块长度上的性能优于原始PBRL代码。此外,我们发现在PBRL集成的总体结构的帮助下,设计过程的复杂性降低了。

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