arXiv · 2605.30885
Beyond 1$\to$N Decoding: Capacity-Aware Rateless Polar Codes for IR-HARQ
Abstract
This paper introduces a novel framework for polar codes, designed for flexible Incremental Redundancy Hybrid Automatic Repeat Request (IR-HARQ). By generalizing the decoding order beyond the standard 1$\to$N sequence, we enable a capacity-aware scheduling strategy that prioritizes the decoding of reliable subblocks. The framework integrates nested parity-check polar construction and reverse bit-mapping to support continuous and arbitrary transmission lengths $E \in [N_{\min}, N_{\max}]$. Simulation results show that the proposed rateless codes match the coding gain of independently optimized fixed-rate codes across the entire range of rates and lengths. With a validated hardware implementation, this work provides a practical solution for next-generation wireless data channels.
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Huazi Zhang, Xianbin Wang, Jiajie Tong, Jun Wang, Wen Tong. 2026-05-29. Beyond 1$\to$N Decoding: Capacity-Aware Rateless Polar Codes for IR-HARQ. https://arxiv.org/abs/2605.30885
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