Efficient adaptive face recognition systems based on capture conditions

C. Pagano, Eric Granger, R. Sabourin, A. Rattani, G. Marcialis, F. Roli
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引用次数: 2

Abstract

In many face recognition (FR) applications, changing capture conditions lead to divergence between facial models stored during enrollment and faces captured during operations. Moreover, it is often costly or infeasible to capture several high quality reference samples a priori to design representative facial models. Although self-updating models using high-confidence face captures appear promising, they raise several challenges when capture conditions change. In particular, face models of individuals may be corrupted by misclassified input captures, and their growth may require pruning to bound system complexity over time. This paper presents a system for self-update of facial models that exploits changes in capture conditions to assure the relevance of templates and to limit the growth of template galleries. The set of reference templates (facial model) of an individual is only updated to include new faces that are captured under significantly different conditions. In a particular implementation of this system, illumination changes are detected in order to select face captures from bio-login to be stored in a gallery. Face captures from a built-in still or video camera are taken at periodic intervals to authenticate the user having accessed a secured computer or network. Experimental results produced with the DIEE dataset show that the proposed system provides a comparable level of performance to the FR system that self-updates the gallery on all high-confidence face captures, but with significantly lower complexity, i.e., number of templates per individual.
基于捕获条件的高效自适应人脸识别系统
在许多人脸识别应用中,不断变化的捕获条件会导致注册期间存储的人脸模型与操作期间捕获的人脸模型之间的差异。此外,先验地获取几个高质量的参考样本来设计具有代表性的面部模型往往是昂贵的或不可行的。尽管使用高置信度面部捕捉的自我更新模型看起来很有希望,但当捕捉条件发生变化时,它们会带来一些挑战。特别是,个体的面部模型可能会被错误分类的输入捕获所破坏,并且随着时间的推移,它们的增长可能需要修剪以约束系统复杂性。本文提出了一个面部模型的自我更新系统,该系统利用捕获条件的变化来确保模板的相关性并限制模板库的增长。个体的参考模板集(面部模型)仅更新为包含在显著不同条件下捕获的新面孔。在该系统的一个特定实现中,检测光照变化,以便从生物登录中选择面部捕获以存储在图库中。每隔一段时间,内置的静止或视频摄像头就会捕捉到人脸,以验证用户是否访问了安全的计算机或网络。使用DIEE数据集产生的实验结果表明,所提出的系统提供了与FR系统相当的性能水平,FR系统在所有高置信度的人脸捕获上自我更新图库,但复杂性显着降低,即每个人的模板数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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