论文标题

跨光谱识别的双向转换网络

A Bidirectional Conversion Network for Cross-Spectral Face Recognition

论文作者

Cao, Zhicheng, Zhang, Jiaxuan, Pang, Liaojun

论文摘要

红外(IR)频段中的面部识别已成为可见光脸部识别的重要补充,因为它具有独立的背景光,强烈的渗透能力,在夜间,雨水和雾之类的恶劣环境下的成像能力。但是,由于可见光和IR成像之间的巨大差异以及缺乏配对的训练数据,因此跨光谱的面部识别(即VEV IR)非常具有挑战性。本文提出了一个双向跨光谱转换(BCSC-GAN)之间的框架,并根据信息融合理论设计了一种自适应加权融合机制。该网络将跨光谱识别问题减少到一个光谱问题中,并通过融合双向信息来提高性能。具体而言,引入了面部身份保留模块(IRM),具有保持身份特征的能力,并设计了新的综合损失函数来克服由不同的光谱特征引起的模态差异。测试了两个数据集和CASIA的数据集,其中比较了FID的性能指标,识别率,相等的错误率和归一化距离。结果表明,我们所提出的网络比其他最先进的方法优越。此外,提议的自适应加权融合(SAWF)规则比未使用的案例和其他常用的其他传统融合规则的识别结果更好,这进一步证明了拟议的双向转换方法的有效性和优势。

Face recognition in the infrared (IR) band has become an important supplement to visible light face recognition due to its advantages of independent background light, strong penetration, ability of imaging under harsh environments such as nighttime, rain and fog. However, cross-spectral face recognition (i.e., VIS to IR) is very challenging due to the dramatic difference between the visible light and IR imageries as well as the lack of paired training data. This paper proposes a framework of bidirectional cross-spectral conversion (BCSC-GAN) between the heterogeneous face images, and designs an adaptive weighted fusion mechanism based on information fusion theory. The network reduces the cross-spectral recognition problem into an intra-spectral problem, and improves performance by fusing bidirectional information. Specifically, a face identity retaining module (IRM) is introduced with the ability to preserve identity features, and a new composite loss function is designed to overcome the modal differences caused by different spectral characteristics. Two datasets of TINDERS and CASIA were tested, where performance metrics of FID, recognition rate, equal error rate and normalized distance were compared. Results show that our proposed network is superior than other state-of-the-art methods. Additionally, the proposed rule of Self Adaptive Weighted Fusion (SAWF) is better than the recognition results of the unfused case and other traditional fusion rules that are commonly used, which further justifies the effectiveness and superiority of the proposed bidirectional conversion approach.

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