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一种集成微机电系统反射镜的宽视场红外扫描系统的设计与实现

Design and realization of a wide field of view infrared scanning system with an integrated micro-electromechanical system mirror.

作者信息

Zhu Chengxi, Hobbs Matthew J, Grainger Matthew P, Willmott Jon R

出版信息

Appl Opt. 2018 Dec 20;57(36):10449-10457. doi: 10.1364/AO.57.010449.

Abstract

We present a wide field of view (FOV) infrared scanning system, designed for single-pixel near-infrared thermal imaging. The scanning system consisted of a two-axis micro-electromechanical system (MEMS) mirror that was incorporated within the lens. The optical system consisted of two groups of lenses and a silicon avalanche photodiode. The system was designed for both the production of thermal images and also to utilize the techniques of radiation thermometry to measure the absolute temperature of targets from 500°C to 1100°C. Our system has the potential for real-time image acquisition, with improved data acquisition electronics. The FOV of our scanning system was ±30° when fully utilizing the MEMS mirror's scanning angle of ±5°. The pixel FOV (calculated from the distance to target size ratio) was 100:1. The image quality was analyzed, including the modulation transfer function, spot diagrams, ray fan plots, lateral chromatic aberrations, distortion, relative illumination, and size-of-source effect. The instrument was fabricated in our laboratory, and one of the thermal images, which was taken with the new lens, is presented as an example of the instrument optical performance.

摘要

我们展示了一种用于单像素近红外热成像的宽视场(FOV)红外扫描系统。该扫描系统由一个集成在透镜内的双轴微机电系统(MEMS)镜组成。光学系统由两组透镜和一个硅雪崩光电二极管组成。该系统旨在用于生成热图像,并利用辐射测温技术测量500°C至1100°C目标的绝对温度。通过改进的数据采集电子设备,我们的系统具有实时图像采集的潜力。当充分利用MEMS镜±5°的扫描角度时,我们扫描系统的视场为±30°。像素视场(根据到目标尺寸的距离比计算)为100:1。分析了图像质量,包括调制传递函数、光斑图、光线扇形图、横向色差、畸变、相对照度和源尺寸效应。该仪器是在我们实验室制造的,作为仪器光学性能的一个示例,展示了使用新透镜拍摄的一张热图像。

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