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仿生偏振光导航传感器:综述

Biomimetic Polarized Light Navigation Sensor: A Review.

机构信息

College of Electronic and Information Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

College of Electrical Engineering and Automation, Shandong University of Science and Technology, Qingdao 266590, China.

出版信息

Sensors (Basel). 2023 Jun 23;23(13):5848. doi: 10.3390/s23135848.

Abstract

A polarized light sensor is applied to the front-end detection of a biomimetic polarized light navigation system, which is an important part of analyzing the atmospheric polarization mode and realizing biomimetic polarized light navigation, having received extensive attention in recent years. In this paper, biomimetic polarized light navigation in nature, the mechanism of polarized light navigation, point source sensor, imaging sensor, and a sensor based on micro nano machining technology are compared and analyzed, which provides a basis for the optimal selection of different polarized light sensors. The comparison results show that the point source sensor can be divided into basic point source sensor with simple structure and a point source sensor applied to integrated navigation. The imaging sensor can be divided into a simple time-sharing imaging sensor, a real-time amplitude splitting sensor that can detect images of multi-directional polarization angles, a real-time aperture splitting sensor that uses a light field camera, and a real-time focal plane light splitting sensor with high integration. In recent years, with the development of micro and nano machining technology, polarized light sensors are developing towards miniaturization and integration. In view of this, this paper also summarizes the latest progress of polarized light sensors based on micro and nano machining technology. Finally, this paper summarizes the possible future prospects and current challenges of polarized light sensor design, providing a reference for the feasibility selection of different polarized light sensors.

摘要

一种偏振光传感器被应用于仿生偏振光导航系统的前端检测,这是分析大气偏振模式和实现仿生偏振光导航的重要组成部分,近年来受到了广泛关注。本文对比分析了自然界中的仿生偏振光导航、偏振光导航的机理、点源传感器、成像传感器以及基于微纳加工技术的传感器,为不同偏振光传感器的优化选择提供了依据。比较结果表明,点源传感器可分为结构简单的基本点源传感器和应用于集成导航的点源传感器。成像传感器可分为结构简单的分时成像传感器、可检测多方向偏振角图像的实时幅度分光传感器、利用光场相机的实时孔径分光传感器以及具有高集成度的实时焦面分光传感器。近年来,随着微纳加工技术的发展,偏振光传感器正朝着微型化和集成化的方向发展。鉴于此,本文还总结了基于微纳加工技术的偏振光传感器的最新进展。最后,本文总结了偏振光传感器设计的可能未来前景和当前挑战,为不同偏振光传感器的可行性选择提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c66f/10347286/d58913b2438d/sensors-23-05848-g002.jpg

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