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Design of concentric multiscale optical system for long-wave infrared band

机译:长波红外频带同心多尺度光学系统设计

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With the development of optoelectronic imaging technology, remote sensing optical system gradually develops towards super large imaging field of view in order to obtain target characteristic information in a wider space. Concentric multiscale system is a new type of large field of view optical system. At present, most of the schemes studied are multiscale system based on concentric spherical lens. Due to the limitation of optical materials, this optical system is generally only used in visible and near infrared optical bands, and is difficult to be applied in long-wave infrared band. Starting from the structure principle of concentric multi-scale system and considering the application of long-wave infrared band, this paper proposes to use spherical reflector instead of concentric spherical lens to construct a retracted multi-scale system based on spherical reflector. The system can achieve all the features of multi-scale system and can be applied in the infrared band. According to the construction principle of the system and the design idea of off-axis deviation field, a multi-scale system based on spherical reflector is designed. The main parameters of the single channel of the system are: the focal length is 72mm, the system F#=2, the working band is 8-12um, and the imaging field of view is 20°×0.1°.The imaging quality of the system is close to the diffraction limit in the full field of view, and the distortion of the full field of view is less than 5%. The circular field of view imaging of 360°×0.1° can be achieved by extending the spherical reflector and multi-channel splicing.
机译:随着光电成像技术的发展,遥感光学系统逐渐向超大成像视野逐渐发展,以便在更广泛的空间中获得目标特征信息。同心多尺度系统是一种新型的大视野光学系统。目前,研究的大多数方案是基于同心球形透镜的多尺度系统。由于光学材料的限制,该光学系统通常仅用于可见和近红外光带,并且难以在长波红外带中应用。从同心多尺度系统的结构原理开始,考虑到长波红外频带的应用,本文提出了使用球面反射器而不是同心球形透镜,构建基于球面反射器的缩回的多尺度系统。系统可以实现多尺度系统的所有功能,并且可以应用于红外频带。根据系统的建设原理和轴轴偏差场的设计思想,设计了一种基于球面反射器的多尺度系统。系统的单个通道的主要参数是:焦距为72mm,系统f#= 2,工作带为8-12um,并且成像视野为20°×0.1°。成像质量系统靠近完整视野中的衍射限制,并且完整视野的失真小于5%。通过延伸球形反射器和多通道拼接,可以实现360°×0.1°的圆形视场。

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