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Spatially Coupled Codes with Sub-Block Locality: Joint Finite Length-Asymptotic Design Approach

机译:具有子块局部性的空间耦合代码:联合有限长度渐近设计方法

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SC-LDPC codes with sub-block locality can be decoded locally at the level of sub-blocks that are much smaller than the full code block, thus providing fast access to the coded information. The same code can also be decoded globally using the entire code block, for increased data reliability. In this paper, we pursue the analysis and design of such codes from both finite-length and asymptotic lenses. This mixed approach has rarely been applied in designing SC codes, but it is beneficial for optimizing code graphs for local and global performance simultaneously. Our proposed framework consists of two steps: 1) designing the local code for both threshold and cycle counts, and 2) designing the coupling of local codes for the best cycle count in the global design.
机译:具有子块局部性的SC-LDPC代码可以在比完整代码块小得多的子块级别本地解码,从而提供对编码信息的快速访问。相同的代码也可以使用整个代码块进行全局解码,以提高数据可靠性。在本文中,我们从有限长镜头和渐近镜片中进行此类代码的分析和设计。这种混合方法很少用于设计SC代码,但是对于同时针对本地和全局性能优化代码图而言,这是有益的。我们提出的框架包括两个步骤:1)设计用于阈值和循环计数的本地代码,以及2)设计用于全局设计中最佳循环计数的本地代码的耦合。

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