Abstract:
An encoding/decoding apparatus and method for an orientation interpolator node are provided. The encoding/decoding apparatus for an orientation interpolator node, which provides rotational information of an object in a 3-dimensional space, is formed of “key information” which indicates a time when a rotational movement occurs and “key value information” which indicates a rotational posture corresponding to the time. A predictive coding apparatus is used in the encoding process for compressing the information of the key and key value information. Therefore, in encoding an input orientation interpolator node in an information compression method of a predictive encoding method, the efficiency of encoding is improved and an reverse rotation due to an encoding error from lossy coding can be corrected.
Abstract:
A marker-less augmented reality system that may extract a plurality of planes included in an image generated by a camera, based on three-dimensional (3D) information of the image, and may estimating a pose of the camera based on a correspondence among the plurality of planes extracted, and an operating method thereof.
Abstract:
An apparatus and method for controlling an avatar using expression control points are provided. The apparatus may track positions of feature points and a head movement from an expression of a user, remove the head movement from the positions of the feature points, and generate expression control points. Accordingly, the expression of the user may be reflected to a face of the avatar.
Abstract:
A method and apparatus for temporally interpolating a three-dimensional (3D) depth image are provided to generate an intermediate depth image in a desired time. The apparatus may interpolate depth images generated by a depth camera, using a temporal interpolation procedure, may generate an intermediate depth image in a new time using the interpolated depth images, and may combine the generated intermediate depth image with color images, to generate a high-precision 3D image.
Abstract:
A scalable three-dimensional (3D) mesh encoding method includes dividing the 3D mesh into layers of complexity into a plurality of graduated levels and generating vertex position information and connectivity information of each of the plurality of levels. The vertex position information about the 3D mesh is encoded based on a weighting in each bit plane and vertex position information having a higher weighting in each bit plane is first encoded.
Abstract:
A graphic processing unit (GPU) and method for decompressing compressed 3-dimensional (3D) compressed data. The GPU may extract segment information by analyzing a compressed data header and decompress segments included in a bit stream based on the segment information.
Abstract:
An apparatus and method for generating a skeleton model using motion data and image data. The apparatus for generating the skeleton model may synchronize the image data and the motion data, and generate a three-dimensional (3D) skeleton model of an entire body of a user using a silhouette extracted from the image data and also using a position or orientation of a joint of the user extracted from the motion data. The skeleton model may be generated using the image data and the motion data, thereby improving accuracy of the skeleton model of the entire body of the user.
Abstract:
A device and method for processing virtual worlds. According to embodiments of the present disclosure, information which is measured from the real world using characteristics of a sensor is transferred to a virtual world, to thereby implement an interaction between the real world and the virtual world. The disclosed device and method for processing virtual worlds involve selectively transferring information, from among the measured information, which is different from previously measured information. The disclosed device and method for processing virtual worlds involve transferring the entire measured information in the event that the measured information is significantly different from the previously measured information and for selectively transferring information, from among the measured information, which is different from the measured information in the event that the difference is not significant.
Abstract:
A method and apparatus for obtaining geometry information, material information, and lighting information in an image modeling system are provided. Geometry information, material information, and lighting information of an object may be extracted from a single-view image captured in a predetermined light condition, by applying pixel values defined by a geometry function, a material function, and a lighting function.
Abstract:
Provided are a method and apparatus for generating an image of an organ. A medical image is input in real time. The medical image is compared with an image previously obtained using a 3D model, and an image obtained by combining the medical image with the 3D model is output.