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논문검색

Facial Shape Recognition Using Self Organized Feature Map(SOFM)

원문정보

초록

영어

This study proposed a robust detection algorithm. It detects face more stably with respect to changes in light and rotation for the identification of a face shape. The proposed algorithm uses face shape as input information in a single camera environment and divides only face area through preprocessing process. However, it is not easy to accurately recognize the face area that is sensitive to lighting changes and has a large degree of freedom, and the error range is large. In this paper, we separated the background and face area using the brightness difference of the two images to increase the recognition rate. The brightness difference between the two images means the difference between the images taken under the bright light and the images taken under the dark light. After separating only the face region, the face shape is recognized by using the self-organization feature map (SOFM) algorithm. SOFM first selects the first top neuron through the learning process. Second, the highest neuron is renewed by competing again between the highest neuron and neighboring neurons through the competition process. Third, the final top neuron is selected by repeating the learning process and the competition process. In addition, the competition will go through a three-step learning process to ensure that the top neurons are updated well among neurons. By using these SOFM neural network algorithms, we intend to implement a stable and robust real-time face shape recognition system in face shape recognition.

목차

Abstract
1. Introduction
2. Facial shape detection
2.1 Skin Color Filtering
2.2 Facial shape detection
3. Facial shape recognition
3.1 Neural network algorithm
3.2 SOFM process
3.3 SOFM Learning 3 Steps
4. Experiment result
5. Conclusion
References

저자정보

  • Seung-Jae Kim Visiting Professor, SW Convergence Education Institute, Chosun University, Korea
  • Jung-Jae Lee Professor, Department of Computer Information, Songwon University, Korea

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