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DMD diffraction measurements to support design of projectors for test and evaluation of multispectral and hyperspectral imaging sensors

机译:DMD衍射测量,以支持投影仪设计,用于测试和评估多光谱和高光谱成像传感器

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We describe our use of Digital Micromirror Devices (DMDs) for the performance testing, characterization, calibration, and system-level data product validation of multispectral and hyperspectral imaging sensors. We have developed a visible Hyperspectral Image Projector (HIP), which is capable of projecting any combination of many different arbitrarily programmable basis spectra into each image pixel at up to video frame rates. For the full HIP, we use a scheme whereby one DMD array is used in a spectrally programmable source, to produce light having the spectra of materials in the scene (i.e. grass, ocean, target, etc), and a second DMD, optically in series with the first, reflects any combination of these programmable spectra into the pixels of a 1024 x 768 element spatial image, thereby producing temporally-integrated 2D images having spectrally-mixed pixels. The HIP goes beyond conventional Digital Light Processing (DLP) projectors in that each spatial pixel can have an arbitrary spectrum, not just an arbitrary color. As such, the resulting spectral and spatial content of the projected image can simulate realistic scenes that a sensor system must acquire during its use, and can be calibrated using NIST reference instruments. Here we discuss our current HIP developments that span the visible/infrared spectral range of 380 nm through 5400 nm, with articular emphasis on DMD diffraction efficiency measurements in the infrared part of this range.
机译:我们描述了我们对多光谱和高光谱成像传感器的性能测试,表征,校准和系统级数据产品验证的数字微镜器件(DMDS)的使用。我们开发了一个可见的高光谱图像投影仪(HIP),其能够将许多不同任意可编程基光谱的任何组合投影到每个图像像素到达视频帧速率。对于完整的HIP,我们使用一个方案,其中一个DMD阵列用于光谱可编程源,以产生在场景中的材料的光谱(即草,海洋,目标等)和第二DMD的光线与第一系列相反,将这些可编程光谱的任何组合反射到1024×768元件空间图像的像素中,从而产生具有光谱混合像素的时间上集成的2D图像。臀部超出传统的数字光处理(DLP)投影仪,因为每个空间像素可以具有任意光谱,而不仅仅是任意颜色。这样,投影图像的产生的光谱和空间内容可以模拟传感器系统必须在使用过程中获取的逼真场景,并且可以使用NIST参考仪器进行校准。在这里,我们讨论了我们目前的臀部开发,跨越380nm至5400nm的可见/红外光谱范围,具有关节强调该范围的红外部分中的DMD衍射效率测量。

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