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Stereo Vision Reconstruction of Infrared Temperature in Microwave Reaction Chamber

机译:微波反应室红外温度的立体视觉重建

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Conventional uncooled infrared temperature detectors can only detect targets in two-dimensional temperature field. We propose to achieve three-dimensional temperature field in microwave reaction chamber through binocular visual reconstruction. The infrared and visible multispectral images at two-views are acquisitioned via an infrared detector. To improve consistency of feature point detection results, we perform stereo matching at visible band with high spatial resolution. Disparity mapping with epipolar geometry constraints between two multiscale images are estimated, with which three-dimensional temperature field of depth information is reconstructed by triangulation back projection. This method does not require calibration of infrared detectors and possess certain research and application significance for carrying out the full range observation of heated objects as well as timely regulation of microwave intensity.
机译:传统的未加工红外线温度检测器只能检测二维温度场中的目标。我们建议通过双目视觉重建实现微波反应室中的三维温度场。通过红外检测器获取双视图的红外和可见多光谱图像。为了提高特征点检测结果的一致性,我们在具有高空间分辨率的可见频带处执行立体声匹配。估计两种多尺度图像之间的截二型几何约束的差异映射,通过三角测量投影重建了深度信息的三维温度场。该方法不需要校准红外探测器,并且具有一定的研究和应用意义,用于执行加热物体的全系列观察以及及时调节微波强度。

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