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Remote Sensing Space Science Enabled by the Multiple Instrument Distributed Aperture Sensor (MIDAS) Concept

机译:多仪器分布式孔径传感器(MIDAS)概念支持的遥感空间科学

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摘要

The science capabilities and features of an innovative and revolutionary approach to remote sensing imaging systems aimed at increasing the return on future planetary science missions many fold are described. Our concept, called Multiple Instrument Distributed Aperture Sensor (MIDAS), provides a large-aperture, wide-field, diffraction-limited telescope at a fraction of the cost, mass and volume of conventional space telescopes, by integrating advanced optical imaging interferometer technologies into a multi-functional remote sensing science payload. MIDAS acts as a single front-end actively controlled telescope array for use on common missions, reducing the cost, resources, complexity, and risks of developing a set of back-end science instruments (SIs) tailored to each specific mission. By interfacing to multiple science instruments, MIDAS enables either sequential or concurrent SI operations in all functional modes. Passive imaging modes enable remote sensing at diffraction-limited resolution sequentially by each SI, as well as at somewhat lower resolution by multiple SIs acting concurrently on the image, such as in different wavebands. MIDAS inherently provides nanometer-resolution hyperspectral passive imaging without the need for any moving parts in the SI's. Our optical design features high-resolution imaging for long dwell times at high altitudes,
机译:描述了一种创新和革命性的遥感成像系统方法的科学能力和特点,旨在提高未来几倍的行星科学任务的回报。我们的概念称为多仪器分布式孔径传感器(MIDAS),通过将先进的光学成像干涉仪技术集成到大空间,宽视野,衍射受限的望远镜中,而成本,质量和体积却仅是传统太空望远镜的一小部分多功能遥感科学有效载荷。 MIDAS充当单个前端主动控制望远镜阵列,用于常见任务,从而降低了成本,资源,复杂性和开发针对每个特定任务的一套后端科学仪器(SI)的风险。通过连接多种科学仪器,MIDAS可以在所有功能模式下进行顺序或并发的SI运算。无源成像模式可以通过每个SI依次以衍射极限分辨率进行遥感,以及通过同时作用在图像上(例如在不同的波段中)的多个SI以较低的分辨率进行遥感。 MIDAS固有地提供了纳米分辨率的高光谱无源成像,而无需SI中的任何移动部件。我们的光学设计具有在高海拔地区长时间停留的高分辨率成像功能,在5000 km的螺旋轨道范围内

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