Fire Detection and Safety SystemsFire dynamics and safety researchAdvanced Optical Sensing Technologies

Zilin Deng, Shuyi Huang, Sicheng Long, Yuting Zhang, Jiale Lin, Yufeng Wang, Haofeng Ding, Yifan Tang, Zibang Zhang, Qianlong Wang, Jingang Zhong

2026.6.1APL Photonics

DOI: 10.1063/5.0331337

Abstract

A typical fire extinguisher puts out a fire by chemical or physical means. The “fire extinguisher” proposed in this paper is essentially a computational through-fire imaging method that features a single-pixel detector for image acquisition. This method can produce full-color fire-free video in real time. On the one hand, the method benefits from a high dynamic range, high sensitivity, and quick response given by the single-pixel detector. The single-pixel detector can accurately record the light intensity change of the fire scene without the risk of the detector’s saturation by the fire. On the other hand, the method utilizes a high-speed spatial light modulator and a programmable light source to generate color-coded, flashing structured illumination. Such spatial-temporal light modulation allows the spatial and color information of the fire scene to be encoded into a sequence of single-pixel measurements. More importantly, the fire’s component in the single-pixel measurements can be separated and computationally eliminated differentially. As such, fire-free images can be reconstructed. We demonstrate the reported optical “fire extinguisher” through a series of experiments, showcasing its potential applications in fire visual extinguishing and through-fire imaging. We also demonstrate the method’s ability to image against strong light interference.

Citation format

DENG, Zilin, et al. Optical “fire extinguisher”. APL Photonics, 2026, 11(6).