Abstract:
A method and apparatus for implementing cloud computing by efficiently encoding a display screen between a cloud server and a client terminal. The method for encoding a cloud display screen in the cloud server, includes: acquiring region information of currently generated windows based on an application programming interface (API) function information of an Operating System (OS); extracting relative depth information between each of the currently generated windows from the OS; generating an encoding mode map in which an entire screen is divided into a plurality of blocks, based on the acquired region information and the extracted relative depth information; and encoding each of the plurality of blocks based on the generated encoding mode map.
Abstract:
A screen image encoding method includes: obtaining and storing one or more candidate blocks, which are spatially co-located with a current block, from images encoded prior to a current image; determining whether a reference block used to encode the current block exists in the stored one or more candidate blocks; and encoding at least one of index information indicating the reference block, prediction information used to encode the current block from the reference block, and information about the current block, based on a result of the determining.
Abstract:
A similar image detection method can comprise the steps of: adjusting a similarity level to be used to determine the similarity between a plurality of images, on the basis of metadata of each of the plurality of images, wherein the metadata includes time information and/or location information of each of the plurality of images; and determining the similarity on the basis of a hash, which is generated using fingerprint information of each of the plurality of images, and the adjusted similarity level.
Abstract:
A method and device for displaying an image are provided. The method includes acquiring block importance values of a plurality of blocks corresponding to an image, determining a reference region including at least one block among the plurality of blocks based on the acquired block importance values and a predetermined reference, determining a main region that includes the reference region and has a predetermined shape and a predetermined size, based on the block importance values, and displaying a portion of the image corresponding to the main region.
Abstract:
A method of managing sessions between a plurality of cloud servers and a client by a multi-session managing apparatus. The method includes receiving respective screen images of the plurality of cloud servers through a multi-session with the plurality of cloud servers; generating a single bitstream by using the screen images; and transmitting the single bitstream to the client through a single session with the client.
Abstract:
A semiconductor device includes a substrate including a fin-shaped active region that protrudes from the substrate; a gate insulating film covering a top surface and both side walls of the fin-shaped active region; a gate electrode on the top surface and the both side walls of the fin-shaped active region and covering the gate insulating film; one pair of insulating spacers on both side walls of the gate electrode; and a source region and a drain region on the substrate and respectively located on sides of the gate electrode. The source region and the drain region form a source/drain pair. The one pair of insulating spacers include protrusions that protrude from upper portions of the one pair of insulating spacers toward the gate electrode.
Abstract:
A method, medium, and system encoding and/or decoding a moving picture. The moving picture encoding method may include selecting a prediction mode that is optimal for the macro blocks, which correspond to each other, of the color components of a current image based on the characteristics of a predetermined image, generating a predicted image for the current image according to the selected prediction mode, and encoding a moving picture using the predicted image. An optimal prediction mode can be adaptively applied to the macro blocks, which correspond to each other, of the color components, thereby increasing the moving picture's encoding and decoding efficiencies.