中国安全科学学报 ›› 2026, Vol. 36 ›› Issue (8): 233-242.doi: 10.16265/j.cnki.issn1003-3033.2026.08.1432

• 公共安全与应急管理 • 上一篇    下一篇

基于双波长特征的线型光束式烟雾-甲烷复合探测算法

李泊宁1,2,3(), 王力1,2,3, 张曦1,2,3,**(), 吕寻斋1, 时屹嵩1   

  1. 1 应急管理部 沈阳消防研究所, 辽宁 沈阳 110034
    2 消防与应急救援国家工程研究中心, 辽宁 沈阳 110034
    3 城市火灾监测预警应急管理部重点实验室, 辽宁 沈阳 110034
  • 收稿日期:2026-04-14 修回日期:2026-06-20 出版日期:2026-08-28
  • 通信作者:
    **张曦(1982—),男,辽宁沈阳人,本科,副研究员,主要从事火灾精准探测技术方面的研究。E-mail:
  • 作者简介:

    李泊宁 (1996—),男,河北邢台人,硕士,主要从事人工智能技术在火灾探测方面的应用工作。E-mail:

    王力 副研究员

  • 基金资助:
    国家重点研发计划项目(2023YFC3010004); 辽宁省自然科学基金面上项目资助(2024-MS-243)

Linear-beam smoke-methane composite detection algorithm based on dual-wavelength features

Li Boning1,2,3(), Wang Li1,2,3, Zhang Xi1,2,3,**(), Lyu Xunzhai1, Shi Yisong1   

  1. 1 Shenyang Fire Science and Technology Research Institute of MEM, Shenyang Liaoning 110034, China
    2 National Engineering Research Center of Fire and Emergency Rescue, Shenyang Liaoning 110034, China
    3 Key Laboratory of Urban Fire Monitoring and Early Warning, Ministry of Emergency Management, Shenyang Liaoning 110034, China
  • Received:2026-04-14 Revised:2026-06-20 Published:2026-08-28

摘要:

为解决长距离空间中火灾烟雾与甲烷泄漏共存时,传统单一探测系统成本高、信号不同步、复合场景下误漏报率高的问题,提出一种基于双波长特征的线型光束式烟雾-甲烷复合探测算法。搭建总长 120 m 的长光程光谱测量平台,系统分析烟雾减光与甲烷吸收的光谱特性,设计850与1 653.7 nm双波长探测架构。算法采用三分支并行结构:烟雾探测分支通过双输入通道学习双波长信号的时序衰减特征;甲烷探测分支结合注意力机制提取吸收峰形态特征,再经门控循环单元(GRU)捕捉动态变化;合并分支通过特征融合与时序累积逻辑实现3类场景的综合研判。对比6种传统火灾与气体探测算法的试验结果表明:该算法准确率达 95.0%,误报率 2.3%,漏报率 1.7%,响应时间 6.9 s,推理时间 0.28 s,综合性能显著优于传统方法。

关键词: 双波长特征, 线型光束, 烟雾探测, 甲烷探测, 门控循环单元(GRU), 复合探测

Abstract:

To address the problems of high cost, asynchronous signals, and high false and missed alarm rates in complex scenarios of traditional single detection systems when fire smoke and methane leakage coexist in long-distance spaces, a linear-beam smoke-methane composite detection algorithm based on dual-wavelength characteristics was proposed. A long optical path spectral measurement platform with a total length of 120 m was constructed, the spectral characteristics of smoke attenuation and methane absorption were systematically analyzed, and a dual-wavelength detection architecture at 850 nm and 1 653.7 nm was designed. The algorithm adopted a three-branch parallel structure: the smoke detection branch learned the temporal attenuation characteristics of dual-wavelength signals through dual input channels. The methane detection branch extracted the morphological features of absorption peaks combined with an attention mechanism, and then captured dynamic signal changes via a GRU. The merging branch realized comprehensive judgment of three types of scenarios through feature fusion and temporal accumulation logic. Comparative experiments with six traditional fire and gas detection algorithms show that the proposed algorithm achieves an accuracy of 95.0%, false alarm rate of 2.3%, missed alarm rate of 1.7%, response time of 6.9 s and inference time of 0.28 s, with overall performance significantly superior to traditional methods.

Key words: dual-wavelength feature, linear-beam, smoke detection, methane detection, gated recurrent unit (GRU), composite detection

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