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Optical design of a coded aperture infrared imaging system withresolution below the pixel limit

机译:编码孔径红外成像系统的光学设计呈排出在像素限制下方

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Adaptive coded aperture imaging systems can resolve objects that are smaller than the pixel-limited resolution of the detector focal plane array. This is done by combining multiple frames of data, where different frames are taken with different coding patterns on the coded-aperture mask. In the mid-wave infrared the required signal to noise ratio necessitates some form of light concentration. Optical design software has been used to model candidate optical systems with the aim of achieving up to four times resolution enhancement along each linear dimension. As in some other computational imaging systems, the requirements on the optical system are found to be different to those that are normally used in more classical optical designs. The basic needs are a point-spread function of suitable extent that changes gradually with angle and does not vary significantly with the expected changes in input spectra or system temperature. Novel metrics have been derived and used to inform the optical design. The modeling and design trade-offs and resulting performance are discussed.
机译:自适应编码孔径成像系统可以解析小于检测器焦平面阵列的像素限制分辨率的对象。这是通过组合多个数据帧来完成的,其中在编码孔径掩模上用不同的编码模式拍摄不同的帧。在中波红外,所需的信噪比需要某种形式的光浓度。光学设计软件已被用于模拟候选光学系统,目的是沿着每个线性尺寸实现多达四次分辨率的增强。与某些其他计算成像系统一样,发现对光学系统的要求与通常在更古典光学设计中使用的那些不同。基本需求是一个点扩散功能,适当的程度,其随角度逐渐变化,并且输入光谱或系统温度的预期变化不会显着变化。已经得出了新颖的指标并用于通知光学设计。讨论了建模和设计权衡和结果绩效。

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