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Fast and robust pushbroom hyperspectral imaging via DMD-based scanning

机译:通过基于DMD的扫描实现快速稳定的推扫式高光谱成像

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We describe a new pushbroom hyperspectral imaging device that has no macro moving part. The main components of the proposed hyperspectral imager are a digital micromirror device (DMD), a CMOS image sensor with no filter as the spectral sensor, a CMOS color (RGB) image sensor as the auxiliary image sensor, and a diffraction grating. Using the image sensor pair, the device can simultaneously capture hyperspectral data as well as RGB images of the scene. The RGB images captured by the auxiliary image sensor can facilitate geometric co-registration of the hyperspectral image slices captured by the spectral sensor. In addition, the information discernible from the RGB images can lead to capturing the spectral data of only the regions of interest within the scene. The proposed hyperspectral imaging architecture is cost-effective, fast, and robust. It also enables a trade-off between resolution and speed. We have built an initial prototype based on the proposed design. The prototype can capture a hyperspectral image datacube with a spatial resolution of 400x400 pixels and a spectral resolution of 500 bands in less than thirty seconds.
机译:我们描述了一种没有宏观运动部分的新型推扫式高光谱成像设备。提出的高光谱成像仪的主要组件是数字微镜器件(DMD),不带滤光片的CMOS图像传感器作为光谱传感器,作为辅助图像传感器的CMOS彩色(RGB)图像传感器以及衍射光栅。使用图像传感器对,设备可以同时捕获场景的高光谱数据和RGB图像。辅助图像传感器捕获的RGB图像可以促进光谱传感器捕获的高光谱图像切片的几何共配准。另外,从RGB图像中可辨别的信息可能导致捕获场景中仅感兴趣区域的光谱数据。所提出的高光谱成像体系结构具有成本效益,快速且稳定。它还可以在分辨率和速度之间进行权衡。我们已根据建议的设计构建了初始原型。该原型可以在不到三十秒的时间内捕获具有400x400像素的空间分辨率和500个波段的光谱分辨率的高光谱图像数据立方体。

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