Robust Face Recognition Against Expressions and Partial Occlusions
Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest that the contribution of these features on final classification should be determined. In order to represent facial features' contribution ac...
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Published in | International journal of automation and computing Vol. 13; no. 4; pp. 319 - 337 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Beijing
Institute of Automation, Chinese Academy of Sciences
01.08.2016
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 1476-8186 2153-182X 1751-8520 2153-1838 |
DOI | 10.1007/s11633-016-0974-6 |
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Abstract | Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest that the contribution of these features on final classification should be determined. In order to represent facial features' contribution according to their variations, we propose a feature selection process that describes facial features as local independent component analysis (ICA) features. These local features are acquired using locally lateral subspace (LLS) strategy. Then, through linear discriminant analysis (LDA) we investigate the intraclass and interclass representation of each local ICA feature and express each feature's contribution via a weighting process. Using these weights, we define the contribution of each feature at local classifier level. In order to recognize faces under single sample constraint, we implement LLS strategy on locally linear embedding (LLE) along with the proposed feature selection. Additionally, we highlight the efficiency of the implementation of LLS strategy. The overall accuracy achieved by our approach on datasets with different facial expressions and partial occlusions such as AR, JAFFE, FERET and CK% is 90.70%. We present together in this paper survey results on face recognition performance and physiological feature selection performed by human subjects. |
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AbstractList | Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest that the contribution of these features on final classification should be determined. In order to represent facial features’ contribution according to their variations, we propose a feature selection process that describes facial features as local independent component analysis (ICA) features. These local features are acquired using locally lateral subspace (LLS) strategy. Then, through linear discriminant analysis (LDA) we investigate the intraclass and interclass representation of each local ICA feature and express each feature’s contribution via a weighting process. Using these weights, we define the contribution of each feature at local classifier level. In order to recognize faces under single sample constraint, we implement LLS strategy on locally linear embedding (LLE) along with the proposed feature selection. Additionally, we highlight the efficiency of the implementation of LLS strategy. The overall accuracy achieved by our approach on datasets with different facial expressions and partial occlusions such as AR, JAFFE, FERET and CK+ is 90.70%. We present together in this paper survey results on face recognition performance and physiological feature selection performed by human subjects. Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest that the contribution of these features on final classification should be determined. In order to represent facial features' contribution according to their variations, we propose a feature selection process that describes facial features as local independent component analysis (ICA) features. These local features are acquired using locally lateral subspace (LLS) strategy. Then, through linear discriminant analysis (LDA) we investigate the intraclass and interclass representation of each local ICA feature and express each feature's contribution via a weighting process. Using these weights, we define the contribution of each feature at local classifier level. In order to recognize faces under single sample constraint, we implement LLS strategy on locally linear embedding (LLE) along with the proposed feature selection. Additionally, we highlight the efficiency of the implementation of LLS strategy. The overall accuracy achieved by our approach on datasets with different facial expressions and partial occlusions such as AR, JAFFE, FERET and CK% is 90.70%. We present together in this paper survey results on face recognition performance and physiological feature selection performed by human subjects. |
Author | Fadhlan Kamaru Zaman Amir Akramin Shafie Yasir Mohd Mustafah |
AuthorAffiliation | Faculty of Electrical Engineering, Universiti Teknologi MARA, Shah Alam 40450, Selangor, Malaysia Department of Mechatronics Engineering, International Islamic University Malaysia, Kuala Lumpur 50728, Malaysia |
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CitedBy_id | crossref_primary_10_1007_s11633_017_1085_8 crossref_primary_10_1007_s00779_020_01419_x crossref_primary_10_2174_1872212112666181116125033 crossref_primary_10_1007_s11633_020_1261_0 crossref_primary_10_46300_9106_2022_16_119 crossref_primary_10_1088_1757_899X_341_1_012026 crossref_primary_10_1007_s11277_019_06881_2 crossref_primary_10_1049_iet_ipr_2018_6576 crossref_primary_10_1007_s11633_019_1176_9 crossref_primary_10_1007_s00138_017_0895_6 crossref_primary_10_1016_j_cogsys_2018_06_008 crossref_primary_10_1049_iet_cvi_2019_0531 crossref_primary_10_1007_s11633_018_1153_8 |
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Keywords | dimensionality reduction Face recognition single sample feature selection facial expressions |
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Notes | Face recognition, facial expressions, dimensionality reduction, single sample, feature selection. Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest that the contribution of these features on final classification should be determined. In order to represent facial features' contribution according to their variations, we propose a feature selection process that describes facial features as local independent component analysis (ICA) features. These local features are acquired using locally lateral subspace (LLS) strategy. Then, through linear discriminant analysis (LDA) we investigate the intraclass and interclass representation of each local ICA feature and express each feature's contribution via a weighting process. Using these weights, we define the contribution of each feature at local classifier level. In order to recognize faces under single sample constraint, we implement LLS strategy on locally linear embedding (LLE) along with the proposed feature selection. Additionally, we highlight the efficiency of the implementation of LLS strategy. The overall accuracy achieved by our approach on datasets with different facial expressions and partial occlusions such as AR, JAFFE, FERET and CK% is 90.70%. We present together in this paper survey results on face recognition performance and physiological feature selection performed by human subjects. 11-5350/TP ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 14 |
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PublicationTitle | International journal of automation and computing |
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Snippet | Facial features under variant-expressions and partial occlusions could have degrading effect on overall face recognition performance. As a solution, we suggest... |
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SubjectTerms | CAE) and Design Computer Applications Computer-Aided Engineering (CAD Control Discriminant analysis Engineering Face recognition Facial recognition technology Feature recognition Feature selection Human performance Independent component analysis Mechatronics Research Article Robotics Strategy 人脸识别 局部线性嵌入 独立成分分析 线性判别分析 部分遮挡 面部特征 面部表情 鲁棒 |
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Title | Robust Face Recognition Against Expressions and Partial Occlusions |
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