Spatially Coupled Turbo-Like Codes
Saeedeh Moloudi, Michael Lentmaier, Alexandre Graell i Amat

TL;DR
This paper introduces spatially coupled turbo-like codes (SC-TCs), analyzes their asymptotic behavior on the binary erasure channel, and demonstrates threshold saturation and near-capacity performance with increased coupling memory.
Contribution
It extends turbo-like codes with spatial coupling, derives density evolution equations, and proves threshold saturation for SC-TCs with identical component encoders.
Findings
Threshold saturation occurs for large coupling memory.
SC-TCs achieve near-capacity performance.
Significant BP threshold improvements for SCCs and BCCs.
Abstract
In this paper, we introduce the concept of spatially coupled turbo-like codes (SC-TCs) as the spatial coupling of a number of turbo-like code ensembles. In particular, we consider the spatial coupling of Berrou et al. parallel concatenated codes (PCCs) and Benedetto et al. serially concatenated codes (SCCs). Furthermore, we propose two extensions of braided convolutional codes (BCCs), a class of turbo-like codes which have an inherent spatially coupled structure, to higher coupling memories, and show that these yield improved belief propagation (BP) thresholds as compared to the original BCC ensemble. We derive the exact density evolution (DE) equations for SC-TCs and analyze their asymptotic behavior on the binary erasure channel. We also consider the construction of families of rate-compatible SC-TC ensembles. Our numerical results show that threshold saturation of the belief…
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