arXiv:2604.22269cs.ITcs.AI2026-04被引 2

用语义纠错提升短码通信的可靠性,让语言传输更准确高效

Semantic Error Correction and Decoding for Short Block Codes

  • 分段编码+语义模型修复,利用上下文纠正传输错误
  • 相比传统短码提升0.8 dB误块率性能,长码传输延迟降低90%
  • 无需校验码,通过置信度选择重传,适合低时延语言通信

本文提出一种语义增强的接收端框架,用于在噪声无线信道中传输自然语言句子。句子经ASCII编码后分为多个段落,每段独立使用短块码编码,并通过加性高斯白噪声(AWGN)信道发送。接收端并行解码各段后,采用语义错误纠正(SEC)模型,利用语言模型上下文重构受损段落。进一步提出语义列表解码(SLD),生成多个候选重构结果,并通过加权汉明距离选择最优解;还设计了语义置信度引导的混合自动重传请求(SHARQ)机制,以置信度替代CRC进行错误检测,实现无开销的选择性重传。所有模块基于双向和自回归变压器(BART)设计与训练。仿真结果表明,该方案显著优于传统容量逼近短码和长码,在相同速率下表现更优。具体而言,SEC带来约0.4 dB BLER增益,SLD进一步提升至0.8 dB。相较于将整句作为单一5G LDPC码字传输,本方法大幅提高语义保真度,解码延迟降低高达90%。SHARQ相较传统HARQ再获1.5 dB增益。

原文摘要 · Abstract (English)

This paper presents a semantic-enhanced receiver framework for transmitting natural language sentences over noisy wireless channels using multiple short block codes. After ASCII encoding, the sentence is divided into segments, each independently encoded with a short block code and transmitted over an AWGN channel. At the receiver, segments are decoded in parallel, followed by a semantic error correction (SEC) model, which reconstructs corrupted segments using language model context. We further propose the semantic list decoding (SLD), which generates multiple candidate reconstructions and selects the best one via weighted Hamming distance, and a semantic confidence-guided HARQ (SHARQ) mechanism that replaces CRC-based error detection with a confidence score, enabling selective segment retransmission without CRC overhead. All modules are designed and trained using bidirectional and auto-regressive transformers (BART). Simulation results demonstrate that the proposed scheme significantly outperforms conventional capacity-approaching short codes and long codes at the same rate. Specifically, SEC provides approximately 0.4 dB BLER gain over plain short-code transmission, while SLD extends this to 0.8 dB. Compared to transmitting the entire sentence as a single long 5G LDPC codeword, our approach significantly improves semantic fidelity and reduces decoding latency by up to 90\%. SHARQ further provides an additional 1.5 dB gain over conventional HARQ.

语义通信短码编码语言纠错智能解码

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