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用于远距离生物识别的基于扩展景深(EDoF)的图像传感器的实用性和可行性测试

Test of the Practicality and Feasibility of EDoF-Empowered Image Sensors for Long-Range Biometrics.

作者信息

Hsieh Sheng-Hsun, Li Yung-Hui, Tien Chung-Hao

机构信息

Department of Photonics, National Chiao Tung University, 1001 University Road, Hsinchu 30010, Taiwan.

Department of Computer Science & Information Engineering, National Central University, No. 300 Zhongda Road, Zhongli District, Taoyuan 32001, Taiwan.

出版信息

Sensors (Basel). 2016 Nov 25;16(12):1994. doi: 10.3390/s16121994.

Abstract

For many practical applications of image sensors, how to extend the depth-of-field (DoF) is an important research topic; if successfully implemented, it could be beneficial in various applications, from photography to biometrics. In this work, we want to examine the feasibility and practicability of a well-known "extended DoF" (EDoF) technique, or "wavefront coding," by building real-time long-range iris recognition and performing large-scale iris recognition. The key to the success of long-range iris recognition includes long DoF and image quality invariance toward various object distance, which is strict and harsh enough to test the practicality and feasibility of EDoF-empowered image sensors. Besides image sensor modification, we also explored the possibility of varying enrollment/testing pairs. With 512 iris images from 32 Asian people as the database, 400-mm focal length and F/6.3 optics over 3 m working distance, our results prove that a sophisticated coding design scheme plus homogeneous enrollment/testing setups can effectively overcome the blurring caused by phase modulation and omit Wiener-based restoration. In our experiments, which are based on 3328 iris images in total, the EDoF factor can achieve a result 3.71 times better than the original system without a loss of recognition accuracy.

摘要

对于图像传感器的许多实际应用而言,如何扩展景深(DoF)是一个重要的研究课题;如果成功实现,它在从摄影到生物识别等各种应用中都可能有益。在这项工作中,我们希望通过构建实时远距离虹膜识别并进行大规模虹膜识别,来检验一种著名的“扩展景深”(EDoF)技术或“波前编码”的可行性和实用性。远距离虹膜识别成功的关键包括长景深以及图像质量对各种物体距离的不变性,这对测试基于EDoF的图像传感器的实用性和可行性来说足够严格和苛刻。除了对图像传感器进行改进,我们还探索了改变注册/测试对的可能性。以32名亚洲人的512幅虹膜图像作为数据库,在3米工作距离上采用400毫米焦距和F/6.3光学系统,我们的结果证明,一种复杂的编码设计方案加上均匀的注册/测试设置可以有效克服相位调制引起的模糊,并省略基于维纳的恢复。在我们总共基于3328幅虹膜图像的实验中,EDoF因子能够在不损失识别准确率的情况下,实现比原始系统好3.71倍的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf31/5190975/45ae93c826a8/sensors-16-01994-g001.jpg

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