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Geometrical optics analysis for reduction of trapezoidal image distortion in a single prism-based optical fingerprint scanner

机译:几何光学分析可减少基于单棱镜的光学指纹扫描仪中的梯形图像失真

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摘要

A single prism-based optical fingerprint scanner structure is mathematically analyzed by using geometrical optics approach. Important parameters including a tilting angle of the fingerprint accepting plane, a geometrical-optic distant difference, a trapezoidal image distortion, an object compression ratio, and an orientation of a two-dimensional image sensor are formulated for the first time in terms of all three angles of the prism and the prism material. In addition, based on our mathematical model, we propose to design all three angles of the prism in such a way that the plane accepting the fingertip observed from one side of the prism is normal to the optical axis of the system. In this way, the imaging plane is perpendicular to the optical axis, eliminating the trapezoidal image distortion and leading to ease of implementation. Experimental verification using three commercially available dispersion prisms made from three different glass materials and one prism based on our design concept shows that a prism with higher refractive index provides lower trapezoidal image distortion. The experimental data generally obeys our theoretical analysis.
机译:通过使用几何光学方法,对基于单棱镜的光学指纹扫描仪结构进行数学分析。首次就所有三个方面首次制定了重要的参数,包括指纹接收平面的倾斜角度,几何光学距离差,梯形图像失真,物体压缩率和二维图像传感器的方向。棱镜和棱镜材料的角度。另外,基于我们的数学模型,我们建议设计棱镜的所有三个角度,使得从棱镜的一侧观察到的接受指尖的平面垂直于系统的光轴。这样,成像平面垂直于光轴,从而消除了梯形图像失真并简化了实现。根据我们的设计理念,使用三种由三种不同玻璃材料制成的市售色散棱镜和一种棱镜进行的实验验证表明,折射率较高的棱镜可提供较低的梯形图像失真。实验数据通常服从我们的理论分析。

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