Iretec d.o.o., 4000 Kranj, Slovenia.
Faculty of Electrical Engineering, University of Ljubljana, 1000 Ljubljana, Slovenia.
Sensors (Basel). 2021 Sep 15;21(18):6185. doi: 10.3390/s21186185.
In this work, we present an eye-image acquisition device that can be used as an image acquisition front-end application in compact, low-cost, and easy-to-integrate products for smart-city access control applications, based on iris recognition. We present the advantages and disadvantages of iris recognition compared to fingerprint- or face recognition. We also present the main drawbacks of the existing commercial solutions and propose a concept device design for door-mounted access control systems based on iris recognition technology. Our eye-image acquisition device was built around a low-cost camera module. An integrated infrared distance measurement was used for active image focusing. FPGA image processing was used for raw-RGB to grayscale demosaicing and passive image focusing. The integrated visible light illumination meets the IEC62471 photobiological safety standard. According to our results, we present the operation of the distance-measurement subsystem, the operation of the image-focusing subsystem, examples of acquired images of an artificial toy eye under different illumination conditions, and the calculation of illumination exposure hazards. We managed to acquire a sharp image of an artificial toy eye sized 22 mm in diameter from an approximate distance of 10 cm, with 400 pixels over the iris diameter, an average acquisition time of 1 s, and illumination below hazardous exposure levels.
在这项工作中,我们提出了一种眼图像采集设备,可作为基于虹膜识别的智能城市门禁控制应用中紧凑、低成本且易于集成的产品的图像采集前端应用。我们介绍了与指纹或人脸识别相比,虹膜识别的优缺点。我们还介绍了现有商业解决方案的主要缺点,并提出了一种基于虹膜识别技术的门控系统用概念设备设计。我们的眼图像采集设备是围绕低成本相机模块构建的。集成的红外测距用于主动图像聚焦。FPGA 图像处理用于原始 RGB 到灰度去马赛克和被动图像聚焦。集成的可见光照明符合 IEC62471 光生物安全标准。根据我们的结果,我们展示了距离测量子系统的操作、图像聚焦子系统的操作、在不同照明条件下获取的人工玩具眼图像的示例以及照明曝光危害的计算。我们成功地从大约 10 厘米的近似距离处采集到直径为 22 毫米的人工玩具眼的清晰图像,虹膜直径上有 400 个像素,平均采集时间为 1 秒,且照明低于危险暴露水平。