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MWIR infrared gating imaging with uncooled PbSe FPAs for surveillance applications

机译:具有未冷却PbSe FPA的MWIR红外门控成像,用于监视应用

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Uncooled focal plane arrays have revolutionized the market of infrared technology in the last years, reducing the size, weight, power and cost of thermal detectors, and make them accessible to mass markets. This revolution has been lead by micro-bolometers, considered a mature technology for the long wavelength infrared range. However, there is a lack of uncooled detectors in the mid-wavelength infrared (2 - 5μm) range, one of the most interesting bands for gas identification and temperature measurements of hot objects. Here, we describe the development of a novel gating imaging system for the mid-wavelength infrared. The system is based on unique low cost uncooled PbSe focal plane arrays with a peak response around 3.6 urn. The PbSe detectors present some challenges, such as low sensitivity (which limits their application for imaging objects at temperature above 200°C and low signal-to-noise ratio (mainly due to thermal drifts and electronic noise). On the other hand, the photonic detection technology enables high speed acquisition up to 10000 frames per second depending on the resolution. The proposed system combines a modulated aperture, turning the incident light on and off periodically, and a digital lock-in to demodulate the incoming signal and avoid noise in the unwanted region. Contrary to active lighting approaches, the whole scene is modulated at a high frequency and the signal processing is tailored to reduce the internal noise introduced by the detector, while keeping enough bandwidth to achieve video at 30 frames per second. Two imaging prototypes were built: a camera array with six detectors of resolution 32×32, and a camera array with three detectors with increased resolution (128×128) and sensitivity. The proposed technique significantly improves the SNR and reduces the thermal drifts of the PbSe detectors, enabling the imaging of objects at temperatures below 100°C. The camera array was tested in the field during a firefighting training, showing enhanced capabilities to see through fumes, detect fire hotspots and measure temperature robustly.
机译:过去几年中,未冷却的焦平面阵列彻底改变了红外技术的市场,从而减小了热探测器的尺寸,重量,功率和成本,并使它们进入了大众市场。这场革命由微测辐射热计引领,被认为是一种适用于长波长红外范围的成熟技术。但是,在中波红外(2-5μm)范围内缺乏未冷却的探测器,这是用于气体识别和热物体温度测量的最有趣的波段之一。在这里,我们描述了一种用于中波长红外的新型门控成像系统的开发。该系统基于独特的低成本非冷却PbSe焦平面阵列,其峰值响应约为3.6 um。 PbSe检测器面临一些挑战,例如灵敏度低(这限制了它们在200°C以上的温度下对物体成像的应用以及信噪比低(主要是由于热漂移和电子噪声引起的))。光子检测技术可实现高达10000帧/秒的高速采集(取决于分辨率),该系统结合了调制孔径,周期性地打开和关闭入射光以及数字锁定功能,以解调输入信号并避免噪声。与主动照明方法相反,整个场景以高频率进行调制,并且对信号处理进行了调整,以减少检测器引入的内部噪声,同时保持足够的带宽以每秒30帧的速度实现视频。建立了原型:一个具有六个分辨率为32×32的探测器的摄像机阵列,以及一个具有三个分辨率(128×128)和s更高的探测器的摄像机阵列。敏感度。所提出的技术显着改善了SNR,并减少了PbSe检测器的热漂移,从而能够在低于100°C的温度下对物体成像。该摄像机阵列在一次消防培训中进行了现场测试,显示出增强的功能,可以透视烟雾,检测火灾热点并可靠地测量温度。

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