TY - JOUR
T1 - BP-LCGCD
T2 - A Gaussian-Elimination-Free and High-Performance Decoder for Surface Codes
AU - Wang, Qianfan
AU - Liang, Jifan
AU - Li, Lvzhou
AU - Song, Linqi
AU - Ma, Xiao
N1 - Publisher Copyright:
© 1997-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Belief propagation (BP) combined with ordered statistics decoding (OSD) can achieve near-optimal logical error rates for surface codes. However, OSD requires high-latency and unstable-complexity Gaussian elimination (GE), limiting its practicality. In this letter, we propose BP-LCGCD, a GE-free and high-performance decoder that replaces the GE-based OSD with the GE-free LC-GCD. Moreover, in contrast to the original BP-OSD, which adopts a single fixed normalization factor α, we further propose a list-parameterized variant, BP-LCGCD+α, which performs multiple BP decodings with different α to generate diverse posterior LLRs. We present complexity analysis, demonstrating that at low physical error rates, the average decoding complexity of the proposed algorithm approaches that of standard BP. Simulation results demonstrate that BP-LCGCD achieves logical error rates close to BP-OSD, while BP-LCGCD+α nearly matches the performance of the BP-OSD. They also show that both proposed decoders significantly outperform standard BP and minimum-weight perfect matching (MWPM) in terms of logical error rate and threshold.
AB - Belief propagation (BP) combined with ordered statistics decoding (OSD) can achieve near-optimal logical error rates for surface codes. However, OSD requires high-latency and unstable-complexity Gaussian elimination (GE), limiting its practicality. In this letter, we propose BP-LCGCD, a GE-free and high-performance decoder that replaces the GE-based OSD with the GE-free LC-GCD. Moreover, in contrast to the original BP-OSD, which adopts a single fixed normalization factor α, we further propose a list-parameterized variant, BP-LCGCD+α, which performs multiple BP decodings with different α to generate diverse posterior LLRs. We present complexity analysis, demonstrating that at low physical error rates, the average decoding complexity of the proposed algorithm approaches that of standard BP. Simulation results demonstrate that BP-LCGCD achieves logical error rates close to BP-OSD, while BP-LCGCD+α nearly matches the performance of the BP-OSD. They also show that both proposed decoders significantly outperform standard BP and minimum-weight perfect matching (MWPM) in terms of logical error rate and threshold.
KW - Locally constrained guessing codeword decoding (LC-GCD)
KW - logical error rate
KW - OSD
KW - surface codes
UR - https://www.scopus.com/pages/publications/105025797265
U2 - 10.1109/LCOMM.2025.3646724
DO - 10.1109/LCOMM.2025.3646724
M3 - 文章
AN - SCOPUS:105025797265
SN - 1089-7798
VL - 30
SP - 782
EP - 786
JO - IEEE Communications Letters
JF - IEEE Communications Letters
ER -