Sub-Block Rearranged Staircase Codes
Min Qiu, Jinhong Yuan

TL;DR
This paper introduces sub-block rearranged staircase (SR-staircase) codes, a new spatially coupled product code family that improves decoding thresholds and error floor performance over traditional staircase codes through innovative sub-block rearrangement and analysis.
Contribution
The paper presents a novel SR-staircase code construction with adjustable block size, analyzes its decoding threshold and error floor, and demonstrates performance improvements over conventional staircase codes.
Findings
SR-staircase codes outperform staircase codes in waterfall region.
They achieve better error floor performance.
Performance improves with larger coupling width.
Abstract
We propose a new family of spatially coupled product codes, called sub-block rearranged staircase (SR-staircase) codes. Each code block of SR-staircase codes is obtained by encoding rearranged preceding code blocks and new information block, where the rearrangement involves sub-blocks decomposition and transposition. The proposed codes can be constructed to have each code block size of to that of the conventional staircase codes while having the same rate and component codes, for any positive integer . In this regard, we can use strong algebraic component codes to construct SR-staircase codes with a similar or the same code block size and rate as staircase codes with weak component codes. We characterize the decoding threshold of the proposed codes under iterative bounded distance decoding (iBDD) by using density evolution. We also derive the conditions under which they achieve…
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Taxonomy
TopicsAdvanced Data Storage Technologies · Error Correcting Code Techniques · Cellular Automata and Applications
