Orthogonal Deep Features Decomposition for Age-Invariant Face Recognition
About
As facial appearance is subject to significant intra-class variations caused by the aging process over time, age-invariant face recognition (AIFR) remains a major challenge in face recognition community. To reduce the intra-class discrepancy caused by the aging, in this paper we propose a novel approach (namely, Orthogonal Embedding CNNs, or OE-CNNs) to learn the age-invariant deep face features. Specifically, we decompose deep face features into two orthogonal components to represent age-related and identity-related features. As a result, identity-related features that are robust to aging are then used for AIFR. Besides, for complementing the existing cross-age datasets and advancing the research in this field, we construct a brand-new large-scale Cross-Age Face dataset (CAF). Extensive experiments conducted on the three public domain face aging datasets (MORPH Album 2, CACD-VS and FG-NET) have shown the effectiveness of the proposed approach and the value of the constructed CAF dataset on AIFR. Benchmarking our algorithm on one of the most popular general face recognition (GFR) dataset LFW additionally demonstrates the comparable generalization performance on GFR.
Related benchmarks
| Task | Dataset | Result | Rank | |
|---|---|---|---|---|
| Face Verification | LFW (test) | Verification Accuracy99.35 | 160 | |
| Face Recognition | LFW | Accuracy99.47 | 47 | |
| Face Recognition | CACD Verification Sub-set | Accuracy99.2 | 21 | |
| Face Verification | CACD-VS | Accuracy0.992 | 13 | |
| Face Identification | FG-NET MegaFace Challenge 1 (MF1) Small Protocol | Rank-1 Identification Rate58.21 | 13 | |
| Face Verification | CACD-VS (test) | Accuracy99.2 | 10 | |
| Face Recognition | MORPH Album2 Setting-1 | Rank-1 Rate0.9855 | 9 | |
| Face Identification | MORPH Album 2 | Rank-1 Score98.55 | 8 | |
| Face Recognition | MORPH Setting-2 Album2 | Rank-1 Rate98.67 | 8 | |
| Face Identification | Morph Album 2 (test) | Rank-1 Rate98.55 | 7 |