1. Technical Field
The present disclosure relates to a video communication system, and, particularly to a system for rectifying the images transmitted in the video communication system and a method using the same.
2. Description of Related Art
Video communication system is widely used when having a remote chat or remote meeting. When using a video communication system for chatting or meeting, the user sometimes may not face a camera of the video communication system and the camera cannot capture the front view of a face of the user, thereby the user at the other end cannot get the front view of the face of the user.
The components of the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout several views.
The electronic device 200 further includes a processor 30. The processor 30 includes a 3D image forming module 301, a face recognition module 302, a face deflection angle determined module 303, a rectifying module 304, and a data transmitting module 305. The 3D image forming module 301 is used for controlling the cameras 20 to capture depth images in front of the electronic device 200 periodically and forms 3D images according to the captured depth images. The method for forming the 3D image according to the captured depth images is familiar to the skilled person in this art, so the description for such method is omitted here.
The face recognition module 302 is used for recognizing a face of the user from the formed 3D image. The deflection angle determining module 303 is used for determining the deflection angles that the detected face deflected from a front view of the face in the 3D image in vertical direction and Horizontal direction. The method for determining the deflection angle of the face can refer to the technology which is titled as “Support Vector Regression and Classification Based Multi-View Face Detection and Recognition” and published by Y. Li, S. Gong and H. Liddell in IEEE international conference on Automatic Face and Gesture Recognition 2000. The rectifying module 304 is used for separating the recognized face from the background of the 3D image and rotating the recognize face according to the deflection angles of the face in the 3D image in vertical direction and horizontal direction to rectify the recognized face to a front face facing to the display 10. The data transmitting module 305 is used for transmitting the rectified 3D image through the network 400 to the electronic devices 200 at the other end.
In other embodiment, the electronic device 200 can rectify the 3D image transmitted from another electronic devices 200 of the video communication system 100. The rectified image is displayed on the display 10 of the electronic devices 200.
In step S21, the 3D image forming module 301 controls the cameras 20 to capture depth images in front of the electronic device 200 periodically and forms 3D images according to the captured depth images.
In step S22, the face recognition module 302 recognizes the face of the user from the formed 3D image.
In step S23, the deflection angle determining module 303 determines the deflection angle of the face in the 3D image in vertical direction and horizontal direction.
In step S24, the rectifying module 304 separates the recognized face from the background of the 3D image.
In step S25, the rectifying module 304 rotates the recognized face according to the deflection angles of the face in the 3D image in vertical direction and horizontal direction to rectify the recognized face to a front face facing to the display 10.
In step S26, the data transmitting module 305 transmits the rectified 3D image through the network 400 to the electronic devices 200 at the other end.
Although the present disclosure has been specifically described on the basis of preferred embodiments, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiment without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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100137992 | Oct 2011 | TW | national |