Abstract:
Disclosed is an operation method of smart glasses, which includes displaying a key pad on a monitor in response to that a target object is recognized through a camera, identifying a reference area on the displayed key pad, which corresponds to a pointing area detected through the camera, recognizing a key value corresponding to the identified reference area, and performing a communication function based on the recognized key value.
Abstract:
A system and method for automatically shifting tracking control authority between cameras, regardless of whether shooting ranges of cameras overlap, by allowing target object information to be shared between all IP cameras, receiving reports on a position of the target object from the respective IP cameras, comparing the received reports on a position of the target object, selecting an IP camera which provides a report of the nearest position of the target object to a center of a shooting range of the IP camera, and assigning tracking control authority to the selected IP camera.
Abstract:
Provided is a pupil tracking device, which measures a pupil center position of an eye moving according to an optokinetic reflex, and a proximity depth between a pupil and an object, the pupil tracking device including a light source configured to output infrared light, a display configured to output object light, a waveguide configured to guide the infrared light and the object light towards a direction to the pupil, a film configured to separate the infrared reflected by a cornea of the eye into a plurality of light beams, and an optical pickup configured to detect the plurality of light beams and measure the pupil center position and the proximity depth.
Abstract:
A multi-vision virtualization system includes a multi-vision virtualization server and two or more scene clients. The multi-vision virtualization server includes a multi-vision virtualization server configured to generate virtual machines for decoding processes based on image content segments, generate synchronous reproduction information for synchronization between two or more scene clients, transmit the generated synchronous reproduction information to a first scene client among the two or more scene clients, and decode the image content segments to generate decoded image segments; and the two or more scene clients including the first scene client that parses the received synchronous reproduction information, and shares the parsed synchronous reproduction information with remaining scene clients, and being configured to reproduce the decoded image segments on screens based on the parsed synchronous reproduction information.
Abstract:
An apparatus and method for providing multimedia content service are provided. A method for providing an image service using at least two screens of different types in an N-screen service providing apparatus includes: separating and extracting independent visual objects from an image based on depth values; grouping the extracted independent visual objects into a number of groups and composing scenes with the respective groups of visual objects; and selectively reproducing one or more scenes with the groups of visual objects on at least two screens in response to a user interaction event.