Druart Guillaume, Guérineau Nicolas, Taboury Jean, Rommeluère Sylvain, Haïdar Riad, Primot Jérôme, Fendler Manuel, Cigna Jean-Charles
ONERA, Chemin de la Hunière, Palaiseau Cedex, France.
Appl Opt. 2009 Feb 20;48(6):1104-13. doi: 10.1364/ao.48.001104.
The performances of a compact infrared optical system using advanced pinhole optics for wide field applications are given. This concept is adapted from the classical Tisse design in order to fit with infrared issues. Despite a low light gathering efficiency and a low resolution in comparison with classical lenses, pinhole imagery provides a long depth of field and a wide angular field of view. Moreover, by using a simple lens that compresses the field of view, the angular acceptance of this pinhole camera can be drastically widened to a value around 180°. This infrared compact system is named pinhole fisheye since it is based on the field lens of a classical fisheye system.
给出了一种用于宽视场应用的采用先进针孔光学器件的紧凑型红外光学系统的性能。该概念是从经典的蒂塞设计改编而来,以适应红外问题。尽管与传统透镜相比,针孔成像的光收集效率低且分辨率低,但它提供了长景深和宽视角。此外,通过使用一个压缩视场的简单透镜,这种针孔相机的角度接受范围可以大幅拓宽至约180°的值。这种红外紧凑型系统被称为针孔鱼眼镜头,因为它基于经典鱼眼系统的场镜。