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Graph Embedding and Extensions: A General Framework for Dimensionality Reduction

Shuicheng YanDong XuBenyu ZhangHao ZhangQiang YangStephen Lin

Abstract

A large family of algorithms - supervised or unsupervised; stemming from statistics or geometry theory - has been designed to provide different solutions to the problem of dimensionality reduction. Despite the different motivations of these algorithms, we present in this paper a general formulation known as graph embedding to unify them within a common framework. In graph embedding, each algorithm can be considered as the direct graph embedding or its linear/kernel/tensor extension of a specific intrinsic graph that describes certain desired statistical or geometric properties of a data set, with constraints from scale normalization or a penalty graph that characterizes a statistical or geometric property that should be avoided. Furthermore, the graph embedding framework can be used as a general platform for developing new dimensionality reduction algorithms. By utilizing this framework as a tool, we propose a new supervised dimensionality reduction algorithm called marginal Fisher analysis in which the intrinsic graph characterizes the intraclass compactness and connects each data point with its neighboring points of the same class, while the penalty graph connects the marginal points and characterizes the interclass separability. We show that MFA effectively overcomes the limitations of the traditional linear discriminant analysis algorithm due to data distribution assumptions and available projection directions. Real face recognition experiments show the superiority of our proposed MFA in comparison to LDA, also for corresponding kernel and tensor extensions

Face and Expression RecognitionFace recognition and analysisBiometric Identification and SecurityDimensionality reductionGraph embeddingMathematicsData pointEmbeddingComputer sciencePattern recognition (psychology)Artificial intelligenceAlgorithm
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2,875
FWCI
68.21
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References
Two-dimensional pca: a new approach to appearance-based face representation and recognition
IEEE Transactions on Pattern Analysis and Machine Intelligence · 2004 · 3,576 citations
An introduction to kernel-based learning algorithms
IEEE Transactions on Neural Networks · 2001 · 3,478 citations
Face recognition using Laplacianfaces
IEEE Transactions on Pattern Analysis and Machine Intelligence · 2005 · 3,279 citations
Eigenfaces vs. Fisherfaces: recognition using class specific linear projection
IEEE Transactions on Pattern Analysis and Machine Intelligence · 1997 · 11,705 citations
PCA versus LDA
IEEE Transactions on Pattern Analysis and Machine Intelligence · 2001 · 3,200 citations
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