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Multispectral polarimeter imaging in the visible to near IR

机译:MultiSpectral偏振仪在IR附近的可见中成像

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Polarization imaging can provide significant improvements in contrast in a number of target detection and discrimination applications. A multi-spectral imaging polarimeter has been constructed for the development of discrimination methods that exploit the polarization properties of a scene. The Stokes vector of a given scene is computed from a sequence of retardance measurements made with the instrument. A significant effort has been made to create a fast polarimeter which can make the necessary retardance measurements to produce a set of Stokes images in a minimum amount of time before the scene changes significantly, which shows up as errors in the resultant Stokes images. A number of wavebands spanning from 600 to 850 nm are considered to determine the dependence of polarization on the wavelength of light both emitted and reflected from various scene topologies. The retardance measurements are made using a rotating quarter- waveplate as opposed to using liquid crystal technology and benefits and drawbacks are discussed for this type of device. Extensive calibration of the instrument is performed to ensure the accuracy of the retardance measurements. This paper will discuss calibration methods, general operation, and results characterizing the polarization properties of numerous targets.
机译:偏振成像可以在许多目标检测和辨别应用中具有显着的改进。已经构建了一种多光谱成像偏振仪,用于开发利用场景的偏振特性的辨别方法。给定场景的Stokes向量从用仪器制造的一系列延迟测量计算。已经进行了重大努力来创建一个快速偏振计,这可以使必要的延迟测量能够在场景显着变化之前在最短的时间内产生一组Stokes图像,这在结果斯托克斯图像中显示出误差。跨越600至850nm的许多波段被认为是确定极化对从各种场景拓扑发射和反射的光波长的依赖性。使用旋转四分之一波板制造延迟测量,而不是使用液晶技术,并且对于这种类型的装置讨论了益处和缺点。进行广泛校准仪器以确保延迟测量的准确性。本文将讨论校准方法,通用操作和结果表征众多靶标的偏振特性。

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