具有普遍良好性能和高速解码的新型涡轮式码

K. Chugg, P. Thiennviboon, Georgios D. Dimou, Paul Gray, Jordan Melzer
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引用次数: 40

摘要

现代类涡轮码(TLC),包括级联卷积码和低密度奇偶校验码(LDPC),已被证明在加性高斯白噪声(AWGN)信道上接近香农极限,然而,许多设计方面仍然相对未被探索,包括TLC设计的最大灵活性,非常低的错误率性能,以及对简单或非常高速硬件编解码器的适应性。在本文中,我们通过提出一类新的tlc来解决这些设计问题,我们称之为系统串行连接奇偶校验(S-SCP)码。这个家族的一个示例成员是广义(或系统)重复累积代码。我们描述了这个家族的另外两个成员,它们在广泛的块大小、码率、调制和目标错误概率方面都表现出良好的性能。其中一种提供了错误层性能,这是以前任何其他TLC结构都没有证明的,另一种被证明提供了非常低的复杂度和良好的性能解码。这两种编码已在高速硬件编解码器中实现,并给出了基于它们的误码率低于10-10的性能曲线。
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New class of turbo-like codes with universally good performance and high-speed decoding
Modern turbo-like codes (TLCs), including concatenated convolutional codes and low density parity check (LDPC) codes, have been shown to approach the Shannon limit on the additive white Gaussian noise (AWGN) channel Many design aspects remain relatively unexplored, however, including TLC design for maximum flexibility, very low error rate performance, and amenability to simple or very high-speed hardware codecs. In this paper we address these design issues by suggesting a new class of TLCs that we call systematic with serially concatenated parity (S-SCP) codes. One example member of this family is the Generalized (or Systematic) repeat accumulate code. We describe two other members of this family that both exhibit good performance over a wide range of block sizes, code rates, modulation, and target error probability. One of these provides error floor performance not previously demonstrated with any other TLC construction and the other is shown to offer very low complexity decoding with good performance. These two codes have been implemented in high-speed hardware codecs and performance curves based on these down to bit error rates below 10-10 are provided.
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