Weakly Aligned Multimodal Flame Detection for Fire-Fighting Robots

被引:6
|
作者
Chaoxia, Chenyu [1 ]
Shang, Weiwei [1 ]
Zhang, Fei [1 ]
Cong, Shuang [1 ]
机构
[1] Univ Sci & Technol China, Dept Automat, Hefei 230026, Peoples R China
基金
中国国家自然科学基金;
关键词
Fires; Image color analysis; Feature extraction; Robots; Cameras; Proposals; Color; Fire-fighting robot; flame detection; multimodal detection; weakly aligned image pairs; FASTER R-CNN; FIRE DETECTION; REGISTRATION;
D O I
10.1109/TII.2022.3158668
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Flame detection is a key module of fire-fighting robots, especially for autonomous fire suppression. To effectively tackle the fire-fighting tasks, fire-fighting robots are usually equipped with multimodal vision systems. On the one hand, cameras of different modalities can provide complementary visual information. On the other hand, the differences in installation position and resolution between different cameras also result in weakly aligned image pairs, that is, the positions of the same object in different modal images are inconsistent. Directly fusing the image features of different modalities is difficult to meet the accuracy and false alarm requirements of fire-fighting robots. Therefore, we propose a multimodal flame detection model based on projection and attention guidance. First, we use projection to obtain the approximate position of the flame in the thermal image and employ a neighbor sampling module to detect flames around it. Second, we design an attention guidance module based on index matching, which applies the attention map generated by the thermal modality to optimize the regional feature of the color modality. Experiments on multimodal datasets collected by an actual fire-fighting robot validate that the proposed method is effective in both fire and nonfire environments.
引用
收藏
页码:2866 / 2875
页数:10
相关论文
共 50 条
  • [31] Using Directional Antennas as Sensors to Assist Fire-fighting Robots in Large Scale Fires
    Min, Byung-Cheol
    Matson, Eric T.
    Smith, Anthony
    Dietz, J. Eric
    2014 IEEE SENSORS APPLICATIONS SYMPOSIUM (SAS), 2014, : 360 - 365
  • [32] The clean, green fire-fighting machine
    不详
    MECHANICAL ENGINEERING, 2003, 125 (08) : 25 - 25
  • [33] Warehouse-Oriented Optimal Path Planning for Autonomous Mobile Fire-Fighting Robots
    Liu, Yong-tao
    Sun, Rui-zhi
    Zhang, Tian-yi
    Zhang, Xiang-nan
    Li, Li
    Shi, Guo-qing
    SECURITY AND COMMUNICATION NETWORKS, 2020, 2020 (2020)
  • [34] Fire-fighting foam is highly fluid
    不详
    HYDROCARBON PROCESSING, 1999, 78 (11): : 36 - 37
  • [35] CHEMICALS MAKE FIRE-FIGHTING DANGEROUS
    Arnold, Lionel K.
    SCIENTIFIC MONTHLY, 1932, 35 : 276 - 279
  • [36] HOW TO SELL ... FIRE-FIGHTING EQUIPMENT
    不详
    INDUSTRIAL DISTRIBUTION, 1978, 68 (11): : 49 - 50
  • [37] Automatic fire-fighting systems in tunnels
    Klaffenböck T.
    Gertl R.
    Geomechanik und Tunnelbau, 2019, 12 (06): : 681 - 689
  • [38] Safety in work with fire-fighting aerosols
    Sedov, A.V.
    Surovtsev, N.A.
    Akin'shina, A.V.
    Lukicheva, T.A.
    Meditsina Truda I Promyshlennaya Ekologiya, 1994, (08): : 35 - 37
  • [39] Design of an intelligent fire-fighting robot
    Li, Ze Lun
    Huang, Zhi Cheng
    Deng, Xian Ling
    HYDRAULIC EQUIPMENT AND SUPPORT SYSTEMS FOR MINING, 2013, 619 : 376 - +
  • [40] Fire-fighting inside the archives -: The problem?
    Hamalová, M
    Pecník, P
    WOOD & FIRE SAFETY, PT 1 PROCEEDINGS, 2000, : 111 - 116