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Infrared telephoto lenses design for joint transform correlator

机译:联合变换相关器的红外远摄镜头设计

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Joint transform correlator (JTC) is quite useful for pattern recognition in many fields, which can realize automatic real-time recognition of target in cluttered background with high precision. For military application, JTC can also be applied for thermo target recognition especially at night. To make JTC recognize thermo targets, an infrared telephoto lens is designed in this paper. Long focal length and short tube length are required for this usage. So the structure of a positive lens group and a negative lens group are adopted. Besides, the effective focal length and relative aperture should be large enough to ensure the distant targets can be detected with adequate illumination. In this paper, the working waveband of adopted infrared CCD detector is 8-12μm. According to Nyquist law, the characteristic frequency of the system is 14lp/mm. The optional materials are very few for infrared optical systems, in which only several kinds of materials such as Germanium, ZnSe, ZnS are commonly used. Various aberrations are not easy to be corrected. So it is very difficult to design a good infrared optical system. Besides, doublet or triplet should be avoided to be used in infrared optical system considering possible cracking for different thermal expansion coefficients of different infrared materials. The original configuration is composed of three lenses. After optimization, the image quality can get limit diffraction. The root mean square (RMS) radii of three fields are 6.754μm, 7.301μm and 12.158μm respectively. They are all less than the Airy spot diameter 48.8μm. Wavefront aberration at 0.707 field of view (FOV) is only 0.1 wavelength. After adjusting the radius to surface templates, setting tolerances and giving element drawings, this system has been fabricated successfully. Optical experimental results of infrared target recognition using JTC are given in this paper. The correlation peaks can be detected and located easily, which confirms the good image quality of the designed infrared telephoto lens.
机译:联合变换相关器(JTC)在许多领域中对模式识别非常有用,它可以在杂乱背景中实现高精度的目标的自动实时识别。对于军事应用,JTC也可以用于热目标识别,尤其是在夜间。为了使JTC识别热目标,本文设计了一个红外远摄镜头。这种用法需要长焦距和短管长。因此,采用正透镜组和负透镜组的结构。此外,有效焦距和相对光圈应足够大,以确保可以用足够的照明检测远处的目标。本文采用的红外CCD探测器的工作波段为8-12μm。根据奈奎斯特定律,系统的特征频率为14lp / mm。对于红外光学系统,可选材料很少,其中仅通常使用几种材料,例如锗,ZnSe,ZnS。各种像差不容易校正。因此,设计好的红外光学系统非常困难。此外,在红外光学系统中应避免使用二重态或三重态,考虑到针对不同红外材料的不同热膨胀系数可能会破裂的情况。原始配置由三个镜头组成。经过优化,图像质量可以得到极限衍射。三个场的均方根(RMS)半径分别为6.754μm,7.301μm和12.158μm。它们均小于艾里斑直径48.8μm。 0.707视场(FOV)处的波前像差仅为0.1波长。在将半径调整为曲面模板,设置公差并给出元素图后,该系统已成功制造。本文给出了利用JTC进行红外目标识别的光学实验结果。可以容易地检测和定位相关峰,这确认了所设计的红外远摄镜头的良好图像质量。

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