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A low cost, large aperture optical receiver for remote sensing and imaging applications

机译:用于遥感和成像应用的低成本,大光圈光学接收器

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An inexpensive large aperture (10 m class) receiver for optical wavelength imaging and remote sensing applications is discussed. The design was developed for active (laser illumination) imaging of remote objects using pupil plane measurement techniques, where relatively low optical quality collecting elements can be used. The approach is also well suited for conventional imaging at lower resolutions when light collection capability is of primary importance. The approach relies on a large aperture heliostat consisting of an array of flat mirror segments, like those used in solar collector systems, to collect light from the region of interest. The heliostat segments are tilted in a manner to concentrate the light, by making the light from all segments overlap at a common point, resulting in a region of higher intensity about the size of a segment at the heliostat "focus". A smaller secondary collector, consisting of a concave mirror located at the overlap point, further concentrates the light and forms a pupil image of the heliostat. Additional optics near the pupil image collimate the light for efficient transmission though a narrow band interference filter used to reduce sky background, and focus the light onto a PMT, or other sensor, for detection. Several design approaches for the collimating optics are discussed as well as system performance and limitations.
机译:讨论了用于光波长成像和遥感应用的廉价的大孔径(10米)接收器。该设计是用于使用瞳孔平面测量技术的远程物体的主动(激光照明)成像,可以使用相对低的光学质量收集元件。当光收集能力主要重要时,该方法在较低分辨率下,该方法也非常适用于较低分辨率。该方法依赖于由太阳能收集器系统中使用的扁平镜片段阵列组成的大孔径光晕,如太阳能收集器系统,从感兴趣的区域收集光。通过使来自所有区段的光在常见点重叠的光,从而以浓缩光的方式倾斜,从而导致Heliostat“焦点”的段尺寸的尺寸更高强度的区域。一个较小的二次收集器,由位于重叠点处的凹面镜,进一步集中光并形成Heliostat的瞳孔图像。在瞳孔图像附近的额外光学器件充气,虽然用于减少天空背景的窄带干涉滤光器,并将光聚焦到PMT或其他传感器,以进行检测,但是将光线凝聚。讨论了准直光学的几种设计方法以及系统性能和限制。

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