Abstract
In this paper, a low-complexity approach for the automorphism ensemble decoder (AED) using successive cancellation (SC) as constituent decoders is proposed. The approach sequentially activates sub-decoders and terminates the decoding process based on pre-optimized parameters, derived from the strong correlation observed between the decoding outcome and the SC path metric. An algorithm is proposed to find a list of early termination thresholds that minimize average decoding complexity subject to a block-error rate (BLER) constraint. For various code parameters and a BLER below 10−3, simulation results show that average decoding complexity is reduced by a factor of at least 6×, and up to 22×, compared to the original AED complexity, with a negligible degradation in BLER.
| Original language | English |
|---|---|
| Journal | IEEE Communications Letters |
| DOIs | |
| Publication status | In press - 2026 |
!!!Keywords
- Automorphism ensemble decoding
- Decoding complexity
- Polar codes
- Reed-Muller codes
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