1. Technical Field
The present disclosure relates to a display control technology and particularly to, a display device and a rotation method of such display device.
2. Description of Related Art
Many display devices have a display screen fixed in a horizontal direction or a vertical direction. Thus, the display direction of the display screen cannot be changed without the display device being manually rotated.
When the display device is used, a user usually chooses a comfortable posture to view a figure/graph/e-book/photo on the display screen. However, after a long time of viewing, the user may become tired, and may move his body and his view point away from the central view point of the display screen. The image on the display screen can thus be inclined making the image unclear and hard to view.
Therefore, what is needed is a new display device and a rotation method of the display device that can overcome the described limitations.
Embodiments will now be described in detail below with reference to drawings.
Referring to
The display screen 10 displays the figure/graph/e-book/photo, and includes a top side 11, a bottom side 12 parallel with the top side 11, a left side 13, a right side 14 parallel with the left side 14. A horizontal axis parallel with the top side 11 is defined as a first axis X, and a vertical axis parallel with the left side 13 is defined as a second axis Y.
The image capturing device 20 is arranged on a periphery of the display screen 10, and a specific position of the image capturing device 20 can be chosen freely based on user requirements. In the present embodiment, the image capturing device 20 is arranged above the top side 11 of the display screen 10, the image capturing device 20 is in a working state when the display screen 100 is working. The image capturing device 20 captures a real-time image of the head of the user. In the present embodiment, the image capturing device 20 is a fixed-focus camera module.
The determination unit 30 determines changes in the position of the head of the user based on changes in the position of the head image of the user in captured images. When the position of a central point of the head image in the captured images changes, the direction unit 40, the angle calculation unit 50, and the control unit 60 will be started. In detail, if the position of the central point of the head image in the first shot coincides with the position of the central point of the head image in the second shot, the position of the central point of the head image has not moved (i.e. the head of the user has not moved). If the position of the central point of the head image in the first shot does not coincide with the position of the central point of the head image in the second shot, it is determined that the position of the central point of the head image has moved (i.e. the head of the user has moved). In the actual operation, a time interval between two adjacent shots may be about three seconds. When the position of the central point of the head image in the captured images changes, the time interval between two adjacent shots may be changed to one second, such that the position of the central point of the head image after the user moving can be timely recorded by the image capturing device 20, and subsequent operation can thus be more accurate. In addition, if the head image moves slightly (i.e. the head of the user moves slightly), and the slight movement does not go beyond a central viewpoint for the user to comfortably view the display, the display screen 10 does not need to adjust orientation. That is, in the actual operation, a critical movement of the position of the central point of the head image may be defined. Only when the movement of the position of the central point of the head image is greater than the critical movement, will adjustments to the display screen 10 be made.
Referring also to
For example, if the central point of the head image captured at the original position is positioned at A in a captured image and the central point of the head image captured at the terminal position is positioned at B in another captured image, the head of the user moves to the left lower side based on imaging principle. Accordingly, the display screen 10 should be rotated from right to left around the second axis Y and then rotated from up to down around the first axis X, such that the connecting line between the central point of the head of the user and the central point of the display screen 10 can be perpendicular to the display screen 10. In other embodiments, the display screen 10 may be rotated from up to down around the first axis X and then rotated from right to left around the second axis Y.
Referring to
In detail, based on the position A and the position B in the two captured images, a movement distance X1 of the head image along the first axis X is obtained. A desired rotation angle a of the display screen 10 around the second axis Y can be calculated based on the image distance of the image capturing device 20, the movement distance X1, and tangent function. Based on the position A and the position B in the two captured images, a movement distance Y1 of the head image along the second axis Y is obtained. In addition, a desired rotation angle β of the display screen 10 around the first axis X can be calculated based on the image distance of the image capturing device 20, the movement distance Y1, and tangent function.
The control unit 60 is configured for controlling the display screen 10 to rotate based on rotation directions output by the direction unit 40 and rotation angles output by the angle calculation unit 50. Such that the connecting line between the central point of the head of the user and the central point of the display screen 10 is perpendicular to the display screen 10. It is understood that the display device 100 also includes driving structures (not shown) connected to the display screen 10 and the control unit 60. The control unit 60 controls the driving structures to drive the display screen 10 to rotate around the first axis X or the second axis Y.
Referring to
In step S10, real-time images of the head of one user are captured.
In step S12, changes in the position of the head of the user are determined. If the position of the head of the user changes, step S14 (see details below) is performed. If the position of the head of the user does not change, step 10 is performed again.
In step S14, desired rotation directions of the display screen 10 are obtained based on the changes in the position of the head of the user. In detail, a horizontal rotation direction of the display screen 10 around the second axis Y is determined by a horizontal movement of the head image captured at the original position and the terminal position along the first axis X. In addition, a vertical rotation direction of the display screen 10 around the first axis X is determined by a vertical movement direction of the head image captured at the original position and the terminal position along the second axis Y.
In step S16, desired rotation angles of the display screen 10 are calculated based on the changes in the position of the head of the user. In detail, a desired rotation angle of the display screen 10 around the second axis Y can be calculated based on the movement distance of the head image captured along the second axis Y. In addition, a desired rotation angle of the display screen 10 around the first axis X can be calculated based on the movement distance of the head image captured along the second axis Y.
In step S18, the rotation of the display screen 10 is controlled by the control unit 60 based on the desired rotation directions and the desired rotation angles. Such that the connection line between the central point of the head of the user and the central point of the display screen 10 is perpendicular to the display screen 10.
When the position of the head image changes, the display screen 10 can automatically rotate with the movement of the head of the user, such that the connecting line between the central point of the head of the user and the central point of the display screen 10 is perpendicular to the display screen 10. Accordingly, it is more comfortable for the user to view the figure/graph/e-book/photo on the display screen 10.
While certain embodiments have been described and exemplified above, various other embodiments will be apparent to those skilled in the art from the foregoing disclosure. The disclosure is not limited to the particular embodiments described and exemplified but is capable of considerable variation and modification without departure from the scope and spirit of the appended claims.
Number | Date | Country | Kind |
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201110121599.0 | May 2011 | CN | national |