Underwater polarization pattern for bionic navigation under different environments

For underwater vehicles, autonomous navigation technology is a key technology. Drawing inspiration from creatures, polarization navigation represents a satellite–free navigation approach with significant potential for application in underwater environments. However, due to the complexity of the underwater environment, achieving polarization navigation for underwater vehicles is highly challenging. The realization of underwater polarization navigation technology is inseparable from the study of the underwater polarization pattern. To further advance the underwater polarization navigation technology, this review presents the research progress on the underwater polarization pattern by analyzing current studies on the model, simulation, experiment, and navigation. Researchers have established a relatively mature model based on the Stokes vector and Mueller matrix. The simulation results, which considered the atmospheric scattering, surface refraction, and underwater scattering simultaneously, are compared with the measurements. At the same time, the research progress of bionic navigation based on underwater polarization patterns is presented. Ultimately, certain existing challenges and future research priorities are suggested. This paper aims to offer insight into the current research status of underwater polarization patterns, thereby fostering the advancement of underwater autonomous navigation and positioning.

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Publication Details

Journal
Optics & Laser Technology
Published
2026-09-24
DOI
https://doi.org/10.1016/j.optlastec.2026.116472
Primary Topic
Underwater Vehicles and Communication Systems
Type
article
Field-Weighted Citation Impact
0.00

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article

Underwater polarization pattern for bionic navigation under different environments

Zhenhua Wan, Chuanyun Su, Haoyuan Cheng, Hongshen Sui et al.
Optics & Laser Technology
Underwater Vehicles and Communication Systems
article

Underwater polarization pattern for bionic navigation under different environments

Zhenhua Wan, Chuanyun Su, Haoyuan Cheng, Hongshen Sui, Zihao Wei
article en

Abstract

For underwater vehicles, autonomous navigation technology is a key technology. Drawing inspiration from creatures, polarization navigation represents a satellite–free navigation approach with significant potential for application in underwater environments. However, due to the complexity of the underwater environment, achieving polarization navigation for underwater vehicles is highly challenging. The realization of underwater polarization navigation technology is inseparable from the study of the underwater polarization pattern. To further advance the underwater polarization navigation technology, this review presents the research progress on the underwater polarization pattern by analyzing current studies on the model, simulation, experiment, and navigation. Researchers have established a relatively mature model based on the Stokes vector and Mueller matrix. The simulation results, which considered the atmospheric scattering, surface refraction, and underwater scattering simultaneously, are compared with the measurements. At the same time, the research progress of bionic navigation based on underwater polarization patterns is presented. Ultimately, certain existing challenges and future research priorities are suggested. This paper aims to offer insight into the current research status of underwater polarization patterns, thereby fostering the advancement of underwater autonomous navigation and positioning.

Optics & Laser TechnologyVol. 204
Guangxi University (CN), Ocean University of China (CN)
National Natural Science Foundation of China, China Postdoctoral Science Foundation, Natural Science Foundation of Shandong Province, National University's Basic Research Foundation of China
Life below water
Openalex Percentile: Top 16%
Underwater Vehicles and Communication Systems
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