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Infrared hyperspectral imaging Fourier transform and dispersive spectrometers: comparison of signal-to-noise based performance

机译:红外高光谱成像傅里叶变换和分散光谱仪:基于信号对噪声的性能的比较

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We compare the signal-to-noise ratio (SNR) based performance of scanning dispersive and staring (Michelson interferometer based) Fourier transform spectrometer approaches to hyperspectral infrared imaging. The information collected by the focal planes of these two spectrometer types is very different. In the scanning dispersive spectrometer, the 2-D focal plane array (FPA) collects spatial information in one direction and spectral information in the other, while the second spatial dimension is swept out in time by the scanning mechanism. The Fourier transform spectrometer 2-D focal plane array acquires 2-D spatial information while the spectrum (interferogram) is swept out in time. The formation of the signal and propagation of noise from the focal plane data collection to the final hyperspectral data cube are significantly different for each type of instrument, and distinct signal and noise models apply to each. Using the noise equivalent spectral radiance (NESR) as a figure of merit, we compare the performance of the two types of instrument with the same optical system, equal spatial resolution, image area, spectral resolution, spectral span, and imaging time. Under photon noise limited conditions (for each instrument), which are made possible by the proper design of modern infrared focal plane arrays, the traditional multiplex (Fellgett) and throughput (Jacquinot) advantages associated with non-imaging Fourier transform spectrometers vanish for reasons that will be made clear in the paper. We discuss 2-D focal plane array characteristics for each instrument, such as frame rate, dynamic range, etc., and show why they are so different (by design) between these two instruments. Finally, the consequences of the signal processing requirements implied by the two instruments are summarized.
机译:我们比较了扫描色散和凝视(Michelson干涉仪的SNR)的傅立叶变换光谱仪接近高光谱红外成像的发射信噪比(SNR)性能。这两个光谱仪类型的焦平面收集的信息非常不同。在扫描色散光谱仪中,2-D焦平面阵列(FPA)在一个方向上收集空间信息和另一个方向和光谱信息,而第二空间尺寸通过扫描机构扫过。傅里叶变换光谱仪2-D焦平面阵列获取二维空间信息,同时频谱(干涉图)被及时扫除。对于每种类型的仪器形成信号和来自焦平面数据收集的噪声传播,对每个类型的仪器显着不同,并且每个类型的仪器都适用于各种信号和噪声模型。使用噪声等效光谱辐射(NESR)作为优点的图形,我们将两种类型的仪器的性能与相同的光学系统,相同的空间分辨率,图像区域,光谱分辨率,光谱跨度和成像时间进行比较。在光子噪声有限的条件下(对于每个仪器),由现代红外焦平面阵列的适当设计实现,传统的多路复用(COLLEGETT)和吞吐量(jacquinot)优点与非成像傅里叶变换光谱仪消失的原因将在论文中明确。我们讨论了每个仪器的2-D焦平面阵列特性,例如帧速率,动态范围等,并显示它们在这两个仪器之间如此不同(通过设计)。最后,总结了两种仪器所暗示的信号处理要求的后果。

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