This application claims priority from Korean Patent Application No. 10-2011-0141142, filed on Dec. 23, 2011 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference in its entirety.
1. Field
Apparatuses and methods consistent with the exemplary embodiments relate to a display apparatus and a control method thereof, and more particularly to a display apparatus which alternately displays three-dimensional (3D) images including left-eye and right-eye images, and a control method thereof.
2. Description of the Related Art
A display apparatus, such as a monitor for an imaging device and a television (TV), alternately displays left-eye and right-eye images to provide three-dimensional (3D) images. Generally, such 3D images are obtained by at least two cameras. Here, left-eye and right-eye images may have different values from each other due to differences in characteristics between the cameras, and thus there is needed an operation of adapting white balance between the two images. To this end, for example, there is a method of correcting characteristics of cameras or an imaging device while taking pictures of white paper with a plurality of cameras at the same time and observing disparities between left-eye images and right-eye images.
However, accuracy of such correction changes depending on skill of a person who conducts correction. Further, it is inconvenient to observe an image disparity with the naked eye.
One or more exemplary embodiments provide a display apparatus which accurately and conveniently indicates a disparity between left-eye and right-eye images, and a control method thereof.
According to an aspect of an exemplary embodiment, there is provided a display apparatus including: an image processor processing a three-dimensional (3D) image including a left-eye image and a right-eye image; a display unit alternately displaying the left-eye image and the right-eye image of the 3D image processed by the image processor; and a controller determining representative values of images in reference regions of the left-eye image and the right-eye image, the reference regions referring to corresponding positions of the left-eye and right-eye images, and displaying the determined representative values of the reference regions on at least one of the left-eye image and the right-eye image.
The representative value may include an average value of pixels included the reference region of the image.
The controller may superimpose a boundary of the reference region on at least one of the left-eye image and the right eye image.
The controller may superimpose the representative value on at least one of the left-eye image and the right-eye image as on-screen display information (OSD).
The controller may determine at least one of a position and a size of the OSD according to a format of the 3D image.
The OSD may have a first height and a first width when the left-eye image and the right-eye image are transmitted in separate frames
The controller may convert the left-eye image and the right-eye image into a single frame in a first format. The OSD may have a second height when the left-eye image and the right-eye image are converted into a single frame, and the second height may be half the first height. Alternatively, the OSD may have a second width when the left-eye image and the right-eye image are converted into a single frame, and the second width may be half the first width.
The controller may convert the left-eye image and the right-eye image into a single frame in a second format, and the second format may be different than the first format.
According to another aspect of an exemplary embodiment, there is provided a control method of a display apparatus which alternately displays a left-eye image and a right-eye image of a three-dimensional (3D) image, the method including: determining representative values of images in reference regions of the left-eye image and the right-eye image, the reference regions referring to corresponding positions of the left-eye and right-eye images; and displaying the determined representative values of the reference regions on at least one of the left-eye image and the right-eye image.
The representative value may include an average value of pixels included in the reference region of the image.
The control method may further include superimposing a boundary of the reference region on at least one of the left-eye image and the right-eye image.
The control method may include superimposing the representative values on at least one of the left-eye image and the right-eye image as on-screen display information (OSD).
The control method may further include determining at least one of a position and a size of the OSD according to a format of the 3D image. The OSD may have a first height and a first width when the left-eye image and the right-eye image are transmitted in separate frames.
The left-eye image and the right-eye image may be converted into a single frame in a first format.
The OSD may have a second height when the left-eye image and the right-eye image are converted into a single frame and the second height may be half the first height. The OSD may have a second height when the left-eye image and the right-eye image are converted into a single frame and the second height may be half the first height.
The left-eye image and the right-eye image may be converted into a single frame in a second format and the second format may be different from the first format.
According to another aspect of an exemplary embodiment, there is provided an image processing method, the method including processing, by a processor, a three-dimensional (3D) image including a left-eye image and a right-eye image, superimposing boundaries of reference regions on the left-eye image and the right-eye image (the reference regions referring to corresponding positions of the left-eye image and the right-eye image), determining an average value of pixels in the reference regions; and superimposing the average values on the left-eye image and the right-eye image.
As described above, a display or image processing apparatus according to exemplary embodiments may accurately and indicate a disparity between left-eye and right-eye images.
The above and/or other aspects will become apparent and more readily appreciated from the following description of exemplary embodiments, taken in conjunction with the accompanying drawings, in which:
Below, exemplary embodiments will be described in detail with reference to accompanying drawings so as to be easily realized by a person having ordinary knowledge in the art. Exemplary embodiments may be embodied in various forms without being limited to exemplary embodiments set forth herein. Descriptions of well-known parts are omitted for clarity and conciseness, and like reference numerals refer to like elements throughout.
The reception unit 11 receives a signal of a three-dimensional (3D) image. The 3D image includes a left-eye image and a right-eye image. The left-eye and right-eye images may be obtained by taking images using at least two cameras.
The image processor 12 performs image processing on a 3D image received by the reception unit 11 and extracts left-eye and right-eye images.
The display unit 13 alternately displays the left-eye and the right-eye images extracted by the image processor 12.
The controller 14 provides information for correcting a disparity between left-eye and right-eye images of a 3D image. That is, the controller 14 displays representative values of images in reference regions of left-eye and right-eye images of a 3D image on the display unit 13, the reference regions referring to corresponding positions of the left-eye and right-eye images. As explained in more detail below, the representative values of reference regions may be, for example, an average value of pixels included in a corresponding area, an accumulated value of pixels included in a corresponding area for a predetermined period of time, etc.
The reception unit 11, the image processor 12, and the controller 14 may alternatively be embodied in an image processing apparatus that does not include a display unit. In that instance, the image processing apparatus may output the representative values of reference regions along with the left-eye and right-eye images of the 3D image to an external display unit.
Although not shown in
Reference regions 33 and 34 refer to predetermined-sized corresponding regions of the left-eye image 31 and the right-eye image 32. The reference regions 33 and 34 may have a polygonal shape, e.g., a rectangular shape. Position and size of the reference regions 33 and 34 may be predetermined or determined by a user. For example, as shown in
The representative values of the reference regions 33 and 34 are a value representing an image in a corresponding area. For example, the representative values of the reference regions 33 and 34 may be an average value of pixels included in a corresponding area. Alternatively, the representative values of the reference regions 33 and 34 may be an accumulated value of pixels included in a corresponding area for a predetermined period of time.
Referring back to
Thus, a user may accurately and conveniently recognize a disparity between the left-eye image 31 and the right-eye image 32 through the representative values of the reference regions 33 and 34 of the left-eye image 31 and the right-eye image 32 displayed on the display apparatus 1.
The method illustrated in
Next, in operation S42, the display apparatus 1 determines position and/or size of OSDs denoting the representative values according to a format of the 3D image. The 3D image may have a format in which a left-eye image and a right-eye image are loaded in a single frame, for example, top/bottom, side-by-side, line-by-line, or pixel-by-pixel formats.
The method illustrated in
Then, when separately displaying a left-eye image 57 and a right-eye image 58 from the frame 5a, OSDs 59 and 60 denoting the representative values may be displayed with the normal lengths V3 and V4.
Then, when separately displaying a left-eye image 67 and a right-eye image 68 from the frame 6a, OSDs 69 and 70 denoting the representative values may be displayed with the normal widths h3 and h4.
Although a few exemplary embodiments have been shown and described, it will be appreciated by those skilled in the art that changes may be made in these exemplary embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Number | Date | Country | Kind |
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10-2011-0141142 | Dec 2011 | KR | national |