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Near-infrared and visible-light periocular recognition with Gabor features using frequency-adaptive automatic eye detection

机译:具有Gabor功能的自适应红外自动眼睛检测功能的近红外和可见光视野识别

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摘要

Periocular recognition has gained attention recently due to demands of increased robustness of face or iris in less controlled scenarios. We present a new system for eye detection based on complex symmetry filters, which has the advantage of not needing training. Also, separability of the filters allows faster detection via one-dimensional convolutions. This system is used as input to a periocular algorithm based on retinotopic sampling grids and Gabor spectrum decomposition. The evaluation framework is composed of six databases acquired both with near-infrared and visible sensors. The experimental setup is complemented with four iris matchers, used for fusion experiments. The eye detection system presented shows very high accuracy with near-infrared data, and a reasonable good accuracy with one visible database. Regarding the periocular system, it exhibits great robustness to small errors in locating the eye centre, as well as to scale changes of the input image. The density of the sampling grid can also be reduced without sacrificing accuracy. Lastly, despite the poorer performance of the iris matchers with visible data, fusion with the periocular system can provide an improvement of more than 20%. The six databases used have been manually annotated, with the annotation made publicly available. © The Institution of Engineering and Technology 2015.
机译:由于在不受控制的情况下增加面部或虹膜的鲁棒性的要求,近眼识别得到了关注。我们提出了一种基于复杂对称滤波器的新型眼睛检测系统,其优点是无需培训。而且,滤波器的可分离性允许通过一维卷积更快地进行检测。该系统用作基于视网膜视点采样网格和Gabor频谱分解的眼周算法的输入。该评估框架由通过近红外和可见光传感器获取的六个数据库组成。实验装置配有四个虹膜匹配器,用于融合实验。所展示的眼睛检测系统对近红外数据显示出非常高的准确度,并且对于一个可见数据库显示出了相当高的准确性。关于眼周系统,它对于定位眼中心的小误差以及缩放输入图像的变化都表现出强大的鲁棒性。在不牺牲精度的情况下,也可以降低采样网格的密度。最后,尽管具有可见数据的虹膜匹配器的性能较差,但与眼周系统融合可以提供超过20%的改善。所使用的六个数据库已被手动注释,并且注释已公开可用。 ©工程技术学院,2015年。

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