English

Ozone Cues Mitigate Reflected Downwelling Radiance in LWIR Absorption-Based Ranging

Computer Vision and Pattern Recognition 2026-03-03 v1 Signal Processing

Abstract

Passive long-wave infrared (LWIR) absorption-based ranging relies on atmospheric absorption to estimate distances to objects from their emitted thermal radiation. First demonstrated decades ago for objects much hotter than the air and recently extended to scenes with low temperature variations, this ranging has depended on reflected radiance being negligible. Downwelling radiance is especially problematic, sometimes causing large inaccuracies. In two new ranging methods, we use characteristic features from ozone absorption to estimate the contribution of reflected downwelling radiance. The quadspectral method gives a simple closed-form range estimate from four narrowband measurements, two at a water vapor absorption line and two at an ozone absorption line. The hyperspectral method uses a broader spectral range to improve accuracy while also providing estimates of temperature, emissivity profiles, and contributions of downwelling from a collection of zenith angles. Experimental results demonstrate improved ranging accuracy, in one case reducing error from over 100 m when reflected light is not modeled to 6.8 m with the quadspectral method and 1.2 m with the hyperspectral method.

Keywords

Cite

@article{arxiv.2603.00273,
  title  = {Ozone Cues Mitigate Reflected Downwelling Radiance in LWIR Absorption-Based Ranging},
  author = {Unay Dorken Gallastegi and Wentao Shangguan and Vaibhav Choudhary and Akshay Agarwal and Hoover Rueda-Chacón and Martin J. Stevens and Vivek K Goyal},
  journal= {arXiv preprint arXiv:2603.00273},
  year   = {2026}
}

Comments

15 pages, 10 figures

R2 v1 2026-07-01T10:56:33.551Z