This non-provisional application claims priority under 35 U.S.C. §119(a) on Patent Application No. 099145147 filed in Taiwan, R.O.C. on Dec. 22, 2010, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a stereo display device, and more particularly, to a stereo display device capable of adjusting the disparity between left and right frames according to the distance between the stereo display device and a viewer.
2. Description of the Prior Art
A stereoscopic display device produces a stereoscopic effect by exploiting the binocular parallax of the left and right eyes. As the eyes are in slightly different biological positions of a human body, the views perceived are slightly different, and such binocular parallax contributes to the formation of a stereoscopic effect. A conventional stereo display device alternately displays left and right frames with a fixed disparity in between.
Generally, left and right frames are taken by different cameras and thus have a disparity in between. Therefore, the disparity between left and right frames is determined when left and right frames are taken and is associated with the distances between cameras and the object to be imaged. However, the distance between the stereo display device and the viewer may not be the same as the distances between cameras and the object to be imaged. Therefore, the disparity between left and right frames displayed on the stereo display device may not be an appropriate one for the viewer.
Therefore, a need exists in the art for a stereo display device for displaying left and right frames alternately having an adjusted disparity in between.
One object of the present invention is to adjust the disparity between left and right frames according to the distance between the stereo display device and the viewer so as to reduce the discomfort experienced by the viewer.
To achieve the aforementioned object, the present invention provides a stereo display device for displaying left and right frames alternately with an adjusted disparity in between, comprising: a distance measurement module configured to measure a distance between the stereo display device and a viewer; and an adjustment module configured to receive left and right frames with an original disparity in between, to adjust the original disparity between left and right frames according to the distance between the stereo display device and the viewer, and output left and right frames having an adjusted disparity in between.
The present invention provides another stereo display device for displaying left and right frames alternately with an adjusted disparity in between, comprising: a distance measurement module configured to measure the distances between the stereo display device and a plurality of viewers; and an adjustment module configured to receive left and right frames with an original disparity in between, to adjust the original disparity between left and right frames according to the distances between the stereo display device and the plurality of viewers with outputs of the left and right frames having an adjusted disparity in between.
The stereo display device of the present invention can effectively display left and right frames having an adjusted disparity in an alternating order.
The present invention will be described more fully hereinafter with reference to the accompanying drawings, in which preferred embodiments of the present invention are shown.
The distance measurement module 210 is configured to measure the distance between the stereo display device 200 and a viewer 230. The distance measurement module 210 comprises a projection module 211, a reception module 212 and a computation module 213. The projection module 211 projects a pattern to the viewer 230, and then the projected pattern will be reflected off the viewer 230. Therefore, the reception module 212 is provided to receive the image of the pattern reflected off the viewer 230. From the above, it is known that the reception module 212 receives the reflected projected pattern.
The adjustment module 220 receives left and right frames 240 with an original disparity in between. As described above, the original disparity between left and right frames 240 is equivalent to the disparity between left and right frames captured through photographing. The adjustment module 220 receives the distance between the stereo display device 200 and the viewer 230 from the distance measurement module 210, adjusts the original disparity between left and right frames according to the distance between the stereo display device 200 and the viewer 230, and outputs left and right frames 250 with an adjusted disparity. From the above, the adjusted disparity between left and right frames 250 would be more suitable for the viewer 230.
The distance measurement module 410 is configured to measure the distance between the stereo display device 400 and a viewer 430. The distance measurement module 410 comprises an image capturing module 411, which is provided with a movable lens assembly 412 and a sensor 413, and a computation module 414. When the distance between the movable lens assembly 412 and the sensor 413 changes (see
Accordingly, the computation module 414 can calculate the distance between the stereo display device 400 and the viewer 430.
The adjustment module 420 receives left and right frames 440 having an original disparity in between. As described above, the original disparity between left and right frames 440 is equivalent to the disparity between left and right frames captured through photographing. The adjustment module 420 receives the distance between the stereo display device 400 and the viewer 430 from the distance measurement module 410, adjusts the original disparity between left and right frames 440 according to the distance between the stereo display device 400 and the viewer 430, and outputs left and right frames 450 having an adjusted disparity in between. From the above, the adjusted disparity between left and right frames 450 would be suitable for the viewer 430.
Alternatively, the distance measurement module 410 of the second embodiment as shown in
The adjustment module receives left and right frames having an original disparity in between, adjusts the original disparity between left and right frames according to the distances between the stereo display device 600 and the plurality of viewers 610, 620 and 630, and outputs left and right frames having an adjusted disparity in between. Moreover, the adjustment module can perform a weighted calculation on the distances between the stereo display device 600 and the plurality of viewers 610, 620 and 630, adjust the disparity between left and right frames according to the results of the weighted calculation, and output left and right frames having an adjusted disparity.
From the above, the stereo display device of the present invention can assign a weight to each viewer to perform a weighted calculation on the distances between the stereo display device and the plurality of viewers when the stereo display device is viewed by more than one viewer. Generally, the following formula is applied: D=α1D1+α2D2+α3D3 (2), wherein α1+α2+α3=1 and D is the weighted distance resulting from the weighted calculation. The adjustment module adjusts the disparity between left and right frames according to the weighted distance and outputs left and right frames having an adjusted disparity. While
The aforementioned distance measurement modules 210 and 410 may be equipped with the human feature detection function to identify the locations of the viewers 230, 430, 610, 620 and 630. Generally, the distance measurement modules 210 and 410 are equipped with the face detection function to determine the locations of the viewers 230, 430, 610, 620 and 630.
While this invention has been described by way of examples and in terms of preferred embodiments, it is to be understood that this invention is not limited hereto, and that various changes, substitutions, and alterations can be made herein without departing from the spirit and scope of this invention as defined by the appended claims.
Number | Date | Country | Kind |
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099145147 | Dec 2010 | TW | national |