全对焦虹膜相机与一个伟大的捕获量

Kunbo Zhang, Zhenteng Shen, Yunlong Wang, Zhenan Sun
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引用次数: 2

摘要

虹膜识别系统的成像体积限制了生物识别应用的吞吐量和协作便利性。由于性能的不断提高和复杂的光学设计,许多改进试验仍然不现实,以取代占主导地位的定焦镜头在隔离虹膜识别。在本研究中,我们开发了一种新型的全聚焦虹膜成像系统,该系统使用可调焦镜头和二维转向镜,通过时空复用方法大大扩展了捕获体积。我们的虹膜成像景深扩展系统不需要机械运动,能够以极高的速度调整焦平面。此外,电动反射镜自适应地引导光束,以主动的方式扩展水平和垂直视野。所提出的全焦虹膜相机将景深提高到3.9米,是传统长焦镜头的37.5倍。我们还通过实验证明了该3D光束转向成像系统在使用动态焦点堆栈的实时多人虹膜重聚焦中的能力,以及对移动参与者进行连续虹膜识别的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All-in-Focus Iris Camera With a Great Capture Volume
Imaging volume of an iris recognition system has been restricting the throughput and cooperation convenience in biometric applications. Numerous improvement trials are still impractical to supersede the dominant fixed-focus lens in stand-off iris recognition due to incremental performance increase and complicated optical design. In this study, we develop a novel all-in-focus iris imaging system using a focus-tunable lens and a 2D steering mirror to greatly extend capture volume by spatiotemporal multiplexing method. Our iris imaging depth of field extension system requires no mechanical motion and is capable to adjust the focal plane at extremely high speed. In addition, the motorized reflection mirror adaptively steers the light beam to extend the horizontal and vertical field of views in an active manner. The proposed all-in-focus iris camera increases the depth of field up to 3.9 m which is afactor of 37.5 compared with conventional long focal lens. We also experimentally demonstrate the capability of this 3D light beam steering imaging system in real-time multi-person iris refocusing using dynamic focal stacks and the potential of continuous iris recognition for moving participants.
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