A new type of polar-code pre-transformation enables subcode ensemble decoding, which matches the error performance of larger list-size decoders at the same hardware list budget.
Subcode Ensemble Decoding of Linear Block Codes
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abstract
Low-density parity-check (LDPC) codes together with belief propagation (BP) decoding yield exceptional error correction capabilities in the large block length regime. Yet, there remains a gap between BP decoding and maximum likelihood decoding for short block length LDPC codes. In this context, ensemble decoding schemes yield both reduced latency and good error rates. In this paper, we propose subcode ensemble decoding (SCED), which employs an ensemble of decodings on different subcodes of the code. To ensure that all codewords are decodable, we use the concept of linear coverings and explore approaches for sampling suitable ensembles for short block length LDPC codes. Monte-Carlo simulations conducted for three LDPC codes demonstrate that SCED improves decoding performance compared to stand-alone decoding and automorphism ensemble decoding. In particular, in contrast to existing schemes, e.g., multiple bases belief propagation and automorphism ensemble decoding, SCED does not require the NP-complete search for low-weight dual codewords or knowledge of the automorphism group of the code, which is often unknown.
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cs.IT 1years
2025 1verdicts
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Subcode Ensemble Decoding of Polar Codes
A new type of polar-code pre-transformation enables subcode ensemble decoding, which matches the error performance of larger list-size decoders at the same hardware list budget.