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Sub-pixel motion estimation for terahertz imaging

机译:太赫兹成像的子像素运动估计

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摘要

THz imaging is being increasingly applied to produce images of the interiors of objects and to identify variations. THz detectors are steadily improving, but lag behind visible light systems in terms of their resolution, i.e. due in part to the limited pixel number and the size of the array detector area. Synthetic aperture methods seek to increase the numerical aperture (and so image resolution). For example, the position of the detector is altered, and multiple images are captured in order to obtain the entirety of the image plane information. High precision registration and image fusion algorithms are then required to stitch together the individual images captured. Here, we propose a novel subpixel estimation method for THz imaging, which enables real-time operation with high temporal and spatial resolution. A THz imaging system is implemented using a continuous-wave THz source emitting at 300 GHz and a THz camera with 16×16 pixels. The subpixel estimation method is applied to the resulting THz images. We demonstrate that this method can be used to calculate and calibrate image position in a conventional THz imaging system, with significantly reduced computational expense.
机译:越来越多地应用THz成像以产生物体内部的图像并识别变化。 THz探测器正在稳步改进,但在其分辨率方面,即可见光系统之后,即部分到达有限的像素数和阵列检测器区域的大小。合成孔径方法寻求增加数值孔径(等图像分辨率)。例如,检测器的位置被改变,并且捕获多个图像以便获得全部图像平面信息。然后需要高精度配准和图像融合算法来将各个图像缝合在一起。这里,我们提出了一种用于THz成像的新型子像素估计方法,其能够具有高时间和空间分辨率的实时操作。使用以300 GHz和16×16像素的THz相机发出发射的连续波THz源来实现THz成像系统。子像素估计方法应用于所得的THz图像。我们证明该方法可用于计算和校准传统的THz成像系统中的图像位置,其计算费用显着降低。

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