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Pixel-wise real-time advanced calibration method for thermal infraredcameras

机译:Pixel-Wise实时高级校准用于热射频射频的校准方法

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Accurate radiometric calibration is a key feature of modern infrared cameras. Considering the newly available infrared focal plane arrays (FPA) exhibiting very high spatial resolution and faster readout speed, we developed a method to provide a dedicated radiometric calibration of every pixel. The novel approach is based on detected fluxes rather than detected counts as is customarily done. This approach features many advantages including the explicit management of the main parameter used to change the gain of the camera, namely the exposure time. The method not only handles the variation of detector spectral responsivity across the FPA pixels but also provides an efficient way to correct for the change of signal offset due to camera self-emission and detector dark current. The method is designed to require as few parameters as possible to enable a real-time implementation for megapixel-FPAs and for data throughputs larger than 100 Mpixels/s. Preliminary results with a high-speed 3 μm to 5 um infrared camera demonstrate that the method is viable and yields small radiometric errors.
机译:精确的辐射校准是现代红外摄像头的关键特性。考虑到具有非常高空间分辨率和更快的读出速度的新可用红外焦平面阵列(FPA),我们开发了一种提供每个像素的专用辐射校准的方法。新颖的方法是基于检测到的助焊剂而不是习惯地完成的计数。这种方法具有许多优点,包括用于改变相机增益的主参数的显式管理,即曝光时间。该方法不仅处理FPA像素上的检测器光谱响应率的变化,而且还提供了校正由于摄像机自发射和检测器暗电流的信号偏移的变化的有效方法。该方法旨在要求尽可能少的参数,以便为Megapixel-FPAS和大于100 mmixels / s的数据吞吐量来实现实时实现。具有高速3μm至5μm红外摄像机的初步结果证明了该方法是可行的并且产生小的辐射误差。

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