摘要:
Disclosed is a method for displaying a panoramic image by an electronic device. According to an example embodiment of the present disclosure, a method for generating a panoramic image may comprise sensing a direction that a first side surface of the electronic device faces through a sensor included in the electronic device, displaying a first partial image of the panoramic image corresponding to the sensed direction of the first side surface, determining a direction corresponding to the reference view information with respect to the first partial image if information regarding the first partial image differs from reference view information indicating a reference view for the panoramic image, and providing information about the determined direction.
摘要:
A transmitter according to the present invention includes a decoder that decodes a video signal received from outside and acquires identification information including a format concerning 2D or 3D of video from a layer corresponding to each frame of the video signal and a backend processor that performs spatial or temporal scaling of video data by the video data based on the identification information and, when the format of the video is switched, switches parameters for the scaling adjusting to switching timing.
摘要:
A stereoscopic endoscope system 1 includes: a stereoscopic endoscope 2 that obtains right and left image pickup signals; a stereoscopic monitor 4 that displays a stereoscopic video corresponding to right and left video signals obtained as a result of predetermined video signal processing performed on the right and left image pickup signals that are obtained with the stereoscopic endoscope 2; a moving amount detection section 31 that detects an amount of right and left parallax and depth information of the inputted right and left video signals; a horizontal position moving section 32 that moves horizontal positions of the right and left video signals, by the amount of the parallax, respectively in directions determined according to the depth information; a vertical/horizontal inversion section 33 that vertically and horizontally inverts the right and left video signals whose horizontal positions have been moved by the horizontal position moving section; and a stereoscopic signal combining section 24 that combines the right and left video signals subjected to the vertical/horizontal inversion by the vertical/horizontal inversion section, and generates a stereoscopic video signal.
摘要:
[PROBLEM TO BE SOLVED] Even if video display of the television broadcast is switched from 2D to 3D, video of television broadcast can be displayed in 3D as effectively as possible. [SOLUTION] A 2D/3D conversion processing section 18 converts 2D contents (television broadcast program) received by a television broadcast receiving section 16 to contents for the right eye and contents for the left eye for 3D, and the contents for 3D obtained by conversion are subjected to 3D display on a display section 17. When switching is made from 2D display to 3D display, a central control section 11 suppresses display of data-broadcast data regarding television video data.
摘要:
An apparatus includes a detection section and a display controller. The detection section is configured to detect an operation input. The display controller is configured to control a display to display a plurality of objects, the display controller configured to control the display to select at least one of the plurality of objects based on the operation input, to modify a depth component of a display position of the at least one object selected, and to display the at least one object selected at the display position having the depth component modified.
摘要:
Provided are a method, an apparatus and a computer program product for a three-dimensional stereo display. The method comprises capturing images of an object for the three-dimensional stereo display, calculating a disparity level of the object by comparing the captured images, adjusting a disparity level of an identification element to be the same as that of the object, and displaying the identification element along with the object in a same depth in the three-dimensional stereo display. Due to being in the same depth of the display, the 3D image displayed in this manner is more natural, vivid and clear and it is easier for the objects in such 3D image to be identified. Thereby, a viewer would enjoy a better user experience in the 3D stereo display.
摘要:
A control point detection unit (20) detects control points for associating a video with regions of a panoramic image by extracting characteristic features between the panoramic image and some of the frames from the video. An alignment processing unit (12) adjusts the alignment of the video to the panoramic image on the basis of the control points. A mapping processing unit (14) maps the processed panoramic image and the aligned still frames of the video to a 3D panoramic space as a texture. A 3D image generation unit (16) generates a 3D panoramic image in which the 3D panoramic space is viewed in a designated line of sight. A video generation unit (22) generates a video when a command is received to playback the video inside the 3D panoramic image.
摘要:
Methods and arrangements for compression and de-compression of N-stream multi-view 3D video in data handling entities, e.g. a data providing node and a data presenting node. The methods and arrangements involve multiplexing (802) of at least some of the N streams of the N-stream multi-view 3D video into one pseudo 2D stream, which appears as a 2D video stream to a 2D encoder. Further, the pseudo 2D stream is provided (804) to a replaceable 2D encoder, for encoding of the pseudo 2D stream, resulting in encoded data having a 2D codec format. This codec-agnostic modular approach to 3D compression and de-compression ensures a fast and convenient access to flexible virtual 3D codecs for handling of N-stream multi-view 3D video.
摘要:
There is provided an imaging system comprising image capture apparatus and display apparatus. The image capture apparatus is for capturing an image of an operator work site, the image including depth information. The display apparatus is in communication with the image capture apparatus, and comprises at least one display screen. The display apparatus is arranged to receive the image captured by the image capture apparatus, including the depth information, and display to the operator the image captured by the image capture apparatus, including the depth information, on the display screen. The display screen is located between the operator's eyes and the position of the work site. There is also provided a method for capturing and displaying an image of an operator work site.