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Protograph Based LDPC Codes with Minimum Distance Linearly Growing with Block Size

机译:基于质量图的LDPC代码,具有最小距离,块尺寸线性生长

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We propose several LDPC code constructions that simultaneously achieve good threshold and error floor performance. Minimum distance is shown to grow linearly with block size (similar to regular codes of variable degree at least 3) by considering ensemble average weight enumerators. Our constructions are based on projected graph, or protograph, structures that support high-speed decoder implementations. As with irregular ensembles, our constructions are sensitive to the proportion of degree-2 variable nodes. A code with too few such nodes tends to have an iterative decoding threshold that is far from the capacity threshold. A code with too many such nodes tends to not exhibit a minimum distance that grows linearly in block length. In this paper we also show that precoding can be used to lower the threshold of regular LDPC codes. The decoding thresholds of the proposed codes, which have linearly increasing minimum distance in block size, outperform that of regular LDPC codes. Furthermore, a family of low to high rate codes, with thresholds that adhere closely to their respective channel capacity thresholds, is presented. Simulation results for a few example codes show that the proposed codes have low error floors as well as good threshold SNR performance.
机译:我们提出了几种LDPC代码结构,同时实现了良好的阈值和误差楼层性能。通过考虑集合平均重量枚举器,显示最小距离与块大小(类似于可变度至少3的正则代码)。我们的结构基于投影图形或质量图,支持高速解码器实现的结构。与不规则的合奏一样,我们的结构对学位-2变量节点的比例敏感。具有太少这​​些节点的代码倾向于具有远离容量阈值的迭代解码阈值。具有太多这样的节点的代码倾向于不呈现在块长度中线性生长的最小距离。在本文中,我们还表明,可以使用预编码来降低常规LDPC代码的阈值。所提出的代码的解码阈值,其具有线性增加的块大小的最小距离,越高常规LDPC码。此外,呈现了一系列低到高速率码的阈值,其阈值密切相关,阈值紧密地粘合到它们各自的信道容量阈值。少数示例代码的仿真结果表明,所提出的代码具有低误差地板以及良好的阈值SNR性能。

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