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Analysis of the imaging performance of panoramic annular lens with conic conformal dome

机译:圆锥形环形圆顶全景环形晶状体成像性能分析

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Panoramic annular lens (PAL) is a kind of the specific wide angle lenses which is widely applied in panoramic imaging especially in aerospace field. As we known, to improve the aerodynamic performance of the aircraft, conformal dome, which notably reduces the drag of an aircraft, is also functioning as an optical window for the inbuilt optical system. However, there is still no report of the specific analysis of the imaging performance of PAL with conformal dome, which is imperative in its aerospace-related applications. In this paper, we propose an analysis of the imaging performance of a certain PAL with various conic conformal domes. Working in visible wavelength, the PAL in our work observes 360° surroundings with a large field of view (FOV) ranging from 30°~105° . Meanwhile, various thicknesses, half-vertex angles, materials of the conic dome and the central distances between the dome and PAL are considered. The imaging performances, mainly indicated by modulation transfer function (MTF) as well as RMS radius of the spot diagram, are systematically compared. It is proved that, on the contrary to the general cases, the dome partly contributes to the imaging performance of the inbuilt PAL. In particular, with a conic conformal dome in material of K9 glass with a half-vertex angle of 25° and a thickness of 6mm, the maximum MTF at 1001p/mm could be improved by 6.68% with nearly no degeneration of the minimum MTF, and the RMS radius could be improved by 14.76% to 19.46% in different FOV. It is worth to note that the PAL is adaptive to panoramic aerospace applications with conic or quasi-conic conformal dome and the co-design of both PAL and the dome is very important.
机译:全景环形透镜(PAL)是一种特定的广角镜头,其广泛应用于全景成像,特别是在航空航天场。如我们所知,为了提高飞机的空气动力学性能,符合性地减少飞机拖动的共形圆顶也用作内置光学系统的光学窗口。但是,仍然没有报告PAL的成像性能与保形圆顶的成像性能,这在其航空航天相关的应用中是必不可少的。在本文中,我们提出了一种分析了各种圆锥形成形圆顶的某个PAL的成像性能。在可见波长中工作,我们的工作中的PAL观察了360°的周围环境,大视野(FOV)范围为30°〜105°。同时,考虑各种厚度,半顶角,圆顶和圆顶和PAL之间的中央距离的各种厚度,半顶角,和中心距离。系统地比较了由调制传递函数(MTF)以及点图的RMS半径表示的成像性能。事实证明,与一般情况相反,圆顶部分有助于内置PAL的成像性能。特别地,在K9玻璃材料中具有锥形共形圆顶,半顶点角度为25°和6mm的厚度,1001p / mm的最大MTF可以提高6.68%,几乎没有最小的MTF变性,在不同的FOV中,RMS半径可提高14.76%至19.46%。值得注意的是,PAL适用于全景航空航天应用,具有圆锥形或准圆锥共形圆顶和PAL和圆顶的共同设计非常重要。

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