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Automatic air and surface temperature measure by IR thermography with perspective correction

机译:通过红外热像仪自动测量空气和表面温度并进行透视校正

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Abstract: uilding quantitative inspection needs both automatic correction of perspective distortion and precise air and surface temperature measurement. Unfortunately these operations are heavily time consuming if performed manually by a human operator. We present a dedicated algorithm devoted to this task. The procedure first of all detects suitable reference structures put in the field of view, by means of a visual image processing and identifies the 3D position of the wall. The second step matches the thermogram with the visual image of the object. The third step performs an inverse perspective projection applying a thermal camera model, the output is a corrected radiance field. The fourth step measures the air temperature on the reference and the surface temperature map. The surface temperature can be obtained by absolute, relative or differential methods mainly depending on object emissivity value and its spatial distribution.!8
机译:摘要:建立定量检查既需要自动校正透视畸变,又需要精确的空气和表面温度测量。不幸的是,如果由人工操作者手动执行,这些操作将非常耗时。我们提出了专用于此任务的专用算法。该过程首先通过视觉图像处理来检测放置在视场中的合适参考结构,并识别墙的3D位置。第二步将热分析图与对象的可视图像进行匹配。第三步应用热像仪模型执行反向透视投影,输出是校正后的辐射场。第四步在参考值和表面温度图上测量空气温度。表面温度可以通过绝对,相对或差分方法获得,主要取决于物体的发射率值及其空间分布。8

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