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Robust facial landmark detection based on initializing multiple poses

Xin Chai, Qisong Wang, Yong-Ping Zhao, Yongqiang Li

Year
2016
Citations
5
Access
Open access

Abstract

For robot systems, robust facial landmark detection is the first and critical step for face-based human identification and facial expression recognition. In recent years, the cascaded-regression-based method has achieved excellent performance in facial landmark detection. Nevertheless, it still has certain weakness, such as high sensitivity to the initialization. To address this problem, regression based on multiple initializations is established in a unified model; face shapes are then estimated independently according to these initializations. With a ranking strategy, the best estimate is selected as the final output. Moreover, a face shape model based on restricted Boltzmann machines is built as a constraint to improve the robustness of ranking. Experiments on three challenging datasets demonstrate the effectiveness of the proposed facial landmark detection method against state-of-the-art methods.

Keywords

LandmarkComputer scienceInitializationRobustness (evolution)Artificial intelligencePattern recognition (psychology)Ranking (information retrieval)Face (sociological concept)Machine learningComputer vision

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