Abstract:
The present invention provides method and apparatus of PUSH & PULL gesture recognition in 3D system. The method comprising determining whether the gesture is PUSH or PULL as a function of distances from the object performing the gesture to the cameras and the characteristics of moving traces of the object in the image planes of the two cameras.
Abstract:
A user assigns a major and minor channel number combination to a media service which does not have such a pre-existing combination, where such a media service is accessed by using such a channel combination without having to resort to the typical means of accessing the media service, such as using a web site URL or radio frequency. Optionally, the invention will automatically update the minor numbers associated with a media service when older versions of the media service become unavailable.
Abstract:
The invention provides a method and apparatus for rendering an object for a plurality of 3D displays. The method comprises determining one of the plurality of 3D displays to render the object according to the relationship, in a global coordinate system, the position of the object and a region defined from a user's eyes to the 3D display; and rendering the object on the determined 3D display.
Abstract:
A method and an apparatus for transmitting a 3D model associated to stereoscopic content are described, and more specifically a method and an apparatus for the progressive transmission of 3D models. Also described are a method and an apparatus for preparing a 3D model associated to a 3D video frame for transmission and a non-transient recording medium comprising such a prepared 3D model. The 3D model is split into one or more components. It is then determined whether a component of the one or more components is hidden by other 3D content. For transmission those components of the 3D model that are not hidden by other 3D content are transmitted first. The remaining components of the 3D model are transmitted subsequently.
Abstract:
One aspect of the disclosed invention relates to a stereoscopic display apparatus comprising: a stereo image acquisition unit configured to acquire a first stereo image for a first image and a second stereo image for a second image; a border generation unit configured to generate a border for separating the first image from the second image; and a displaying unit configured to combine the second stereo image and the generated border with the first stereo image and display the combined stereo images.
Abstract:
The present invention relates to a method for operating a computer device with user's eye movement. The method comprises the steps of detecting the user's eye movement, analyzing the user's eye movement to specify an eye movement pattern in the detected user's eye movement and a time period for completing the eye movement pattern, determining a command associated with a combination of the eye movement pattern and the time period and operating the device according to the command.
Abstract:
The present invention relates to a method for generating 3D viewpoint video content. The method comprising the steps of receiving videos shot by cameras distributed to capture an object; forming a 3D graphic model of at least part of the scene of the object based on the videos; receiving information related to viewpoint and 3D region of interest (ROD in the object; and combining the 3D graphic model and the videos related to the 3D ROI to form a hybrid 3D video content.
Abstract:
It is provided a method for providing a main 3D content and a supplementary content used in a 3D multimedia device. The method comprises the steps of displaying the main 3D content; and triggering the supplementary content by a 3D related event of the main 3D content, wherein, depth value of the supplementary content is updated along with depth value change of the main 3D content.
Abstract:
In ad hoc enabled cellular systems, the terminals in ad hoc communications (1-16) may generate serious interference to the terminals in conventional communications (C1-C7). The possible interference to be generated from the ad hoc mobile terminals to the conventional terminals is estimated, so that the ad hoc mobile terminals can select the proper radio resource for the sake of interference avoidance. The ad hoc mobile terminals may perform interference estimation in three steps: parameter collection (4-1, 4-2, 4-3), parameter calculation (4-5) and then decision making with the comparison of the calculated result and a predefined threshold (4-6). The whole process is easy to implement and can guarantee quality of conventional communication while maintaining high spectrum efficiency.