FPLP3D: Security robot for face recognition in the workplace environment using face pose detection assisted controlled FACE++ tool position: A three-dimensional robot.

BACKGROUND: In recent years, several tracker systems have been developed to monitor a 3-dimensional skull position for facial action whereas, various tracker systems simultaneously analyze the single sequence of video, which can be provided with low-quality cameras and less security. Initially, impl...

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Publicado en:Work Vol. 68; no. 3; pp. 881 - 891
Autores principales: Han, Meifeng, Zhang, Fuli, Ning, Ning, Zhou, Junwei, Shanthini, A., Vivekananda, G.N., Kumar, Priyan Malarvizhi, Pandey, Hari Mohan, Srivastava, Gautam
Formato: algorithm equations & formulas pictorial research Journal Article
Publicado: Sage Publications Inc. 2021
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Sage Publications Inc.
      place: Thousand Oaks, California
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        10.3233/WOR-203422
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        atl: FPLP3D: Security robot for face recognition in the workplace environment using face pose detection assisted controlled FACE++ tool position: A three-dimensional robot.
      aug:
        au:
          Han, Meifeng
          Zhang, Fuli
          Ning, Ning
          Zhou, Junwei
          Shanthini, A.
          Vivekananda, G.N.
          Kumar, Priyan Malarvizhi
          Pandey, Hari Mohan
          Srivastava, Gautam
        affil: Department of Teacher Development, Dalian University of Science and Technology, Dalian, China
      sug:
        subj:
          Face Perception
          Robotics
          Work Environment
          Security Measures
          Models, Structural
          Human
          Descriptive Statistics
          User-Computer Interface
          Clinical Assessment Tools
          Algorithms
      ab: BACKGROUND: In recent years, several tracker systems have been developed to monitor a 3-dimensional skull position for facial action whereas, various tracker systems simultaneously analyze the single sequence of video, which can be provided with low-quality cameras and less security. Initially, implementing a 2-D face detector and an unrepentance system has been suggested; furthermore, it has been improved using an integrated 3-D face initialized scheme for the real-time tracker in the present face recognition systems. OBJECTIVES: To overcome the present setbacks of the conventional systems, Face Pose Detection assisted controlled FACE++ tool position of Three-Dimensional Robot (FPLF3D) has been proposed in this article. Furthermore, the suggested proposed configuration has a high-end monitoring approach, which is used to improve the reliability of the robot's human-machine contact in the workplace environment for security assistance. Additionally, the robot's direction can be controlled by the operator's head position assessment of the camera (or any active viewing system) using a three-dimensional robot. RESULTS: Besides, the applications that are imitated by headers like telepresence, computer-generated reality, and video competitions will directly take advantage of the strategies introduced in this paper. CONCLUSION: Finally, real video tests at the lab-scale level show the accuracy and usefulness of the approaches proposed in this research outperform the existing methods used for tracking.
      pubtype: Academic Journal
      doctype:
        algorithm
        equations & formulas
        pictorial
        research
        Journal Article
      ougenre: Article
    language: English
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