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Advanced Geosynchronous Studies Imager: focal plane design

机译:先进的地球同步研究成像仪:焦平面设计

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Abstract: A focal plane system to generate images in 18 spectral channels ranging from visible to long-wave IR has been designed for the AGSI. The system is a line scan imager, comprised for four focal planes populated with linear detector arrays optimized for operating in the various AGSI spectral regions. Light from the AGSI telescope is diverted to the focal planes by spectrally tuned dichroic beam splitters. At the focal planes narrowband interference filters placed in close proximity to the detector arrays further filter the light. Multispectral silicon CCDs are used for visible and near IR channels. Key to system performance is the ability to use time delay and integration (TDI) in some of the narrower or less photon rich spectral channels. Detector arrays are supported by highly modular and therefore flexible and low risk signal processing and control circuits. Performance predictions have been generated for all of the spectral channels and show that the focal planes will meet or exceed NASA's requirements for an advanced imaging observatory to observe weather and climate processes and NOAA's requirements for an advanced GOES imager. !4
机译:摘要:已经为AGSI设计了一种焦平面系统,可在18个光谱通道中生成图像,这些通道从可见光到长波IR。该系统是线扫描成像仪,由四个焦平面组成,这些焦平面上装有线性检测器阵列,这些阵列经优化可在各种AGSI光谱区域中运行。来自AGSI望远镜的光通过光谱调谐的二向色分束器转移到焦平面。在焦平面上,紧靠检测器阵列放置的窄带干涉滤光片进一步滤光。多光谱硅CCD用于可见光和近红外通道。系统性能的关键是在某些较窄或较不盛满光子的光谱通道中使用时间延迟和积分(TDI)的能力。检测器阵列由高度模块化的支持,因此具有灵活且低风险的信号处理和控制电路。已针对所有光谱通道生成了性能预测,结果表明焦平面将达到或超过NASA对高级成像天文台进行观测以观察天气和气候过程的要求以及NOAA对高级GOES成像仪的要求。 !4

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