• Journal of Infrared and Millimeter Waves
  • Vol. 44, Issue 2, 227 (2025)
Li-Feng YANG1,2, Zhuo CHEN3, Fan-Sheng CHEN4, and Jian-Yu WANG1,*
Author Affiliations
  • 1Key Laboratory of Space Active Opto-Electronics Technology,Shanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,China
  • 2University of Chinese Academy of Sciences,Beijing 100049,China
  • 3Beijing Remote Sensing Information Research Institute,Beijing 100011,China
  • 4Key Laboratory of Intelligent Infrared Perception,Shanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,China
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    DOI: 10.11972/j.issn.1001-9014.2025.02.011 Cite this Article
    Li-Feng YANG, Zhuo CHEN, Fan-Sheng CHEN, Jian-Yu WANG. Aircraft altitude estimate method based on thermal infrared multispectral feature matching[J]. Journal of Infrared and Millimeter Waves, 2025, 44(2): 227 Copy Citation Text show less
    References

    [1] M Papazoglou, J L Krolik. Multi-dwell matched-field altitude estimation for over-the-horizon radar, 4, 2533-2536(1998).

    [2] Y D Zhang, A Ahmed, B Himed. Target altitude estimation in over-the-horizon radar. IEEE Access, 10, 11260-11273(2022).

    [3] K Zhao, C Yu, G Zhou et al. Simultaneous altitude and RCS estimation with propagation attenuation in bistatic HFSWR. International Journal of Antennas and Propagation, 4, 1-8(2013).

    [4] L Yongtan. Target detection and tracking with a high frequency ground wave over-the-horizon radar, 29-33(1996).

    [5] Z Chen, M J Schwartz, P K Bhartia et al. Mesospheric and upper stratospheric temperatures from OMPS‐LP. Earth and Space Science, 10, e2022EA002763(2023).

    [6] D Piontek, L Bugliaro, R Müller et al. Multi-channel spectral band adjustment factors for thermal infrared measurements of geostationary passive imagers. Remote Sensing, 15, 1247(2023).

    [7] Z Hu, M Zhu, Q Wang et al. SDGSAT-1 TIS prelaunch radiometric calibration and performance. Remote Sensing, 14, 4543(2022).

    [8] F Zhao, L Xia, A Kylling et al. Detection flying aircraft from Landsat 8 OLI data. Isprs Journal of Photogrammetry & Remote Sensing, 141, 176-184(2018).

    [9] F Zhao, L Xia, A Kylling. Mapping global flying aircraft activities using Landsat 8 and cloud computing. Isprs Journal of Photogrammetry & Remote Sensing, 184, 19-30(2022).

    [10] L Li, X Zhou, Z Hu et al. On-orbit monitoring flying aircraft day and night based on SDGSAT-1 thermal infrared dataset. Remote Sensing of Environment, 298, 113840(2023).

    [11] L Li, L Jiang, J Zhang et al. A complete YOLO-based ship detection method for thermal infrared remote sensing images under complex backgrounds. Remote Sensing, 14, 1534(2022).

    [12] A J Schreiner, T J Schmit, W P Menzel. Observations and trends of clouds based on GOES sounder data. Journal of Geophysical Research Atmospheres, 106, 20349-20363(2001).

    [13] Y Zhang. Research on inversion of cloud and aerosol parameters by oxygen A absorption band(2011).

    [14] W E Shenk, R J Curran. A multi-spectral method for estimating cirrus cloud top heights. J. appl. Meteor., 12, 1213-1216(1973).

    [15] A Hamada, N Nishi, S Iwasaki et al. Cloud type and top height estimation for tropical upper-tropospheric clouds using GMS-5 split-window measurements combined with cloud radar measurements. Sola, 4, 57-60(2008).

    [16] Jian-Ming Hu, Xi-Yang Zhi et al. Influence of complex environment on the detectability of weak and small aerial target under space-based observation mode. J. Infrared Millim. Waves, 38, 351-357(2019).

    [17] Hong-Xia Mao, Zhong-Ling Liu, Yan Tian. Infrared radiation and target recognition, 94-95(2022).

    [18] Jun Ma, Mao-Xing Wen, Feng Zhou. Skin radiation measurement method of high altitude aircraft based on long wave infrared light. Infrared Technology, 43, 284-291(2021).

    [19] X Zhou, X Ni, J Zhang et al. A novel detection performance modular evaluation metric of space-based infrared system. Optical and Quantum Electronics, 54, 274(2022).

    [20] J Li, H Zhao, X Gu et al. Analysis of space-based observed infrared characteristics of aircraft in the air. Remote Sensing, 15, 535(2023).

    [21] S Yu, X Ni, X Li et al. Real-time dynamic optimized band detection method for hypersonic glide vehicle. Infrared Physics & Technology, 121, 104020(2022).

    Li-Feng YANG, Zhuo CHEN, Fan-Sheng CHEN, Jian-Yu WANG. Aircraft altitude estimate method based on thermal infrared multispectral feature matching[J]. Journal of Infrared and Millimeter Waves, 2025, 44(2): 227
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