Abstract:
Provided by the present invention is a system for operating a sound-linked type vibrating motion chair in order to provide an image which is more realistic and more three-dimensional for a user because the user is able to directly and indirectly experience a special effect shown in the image on a monitor. The system for operating a sound-linked type vibrating motion chair is especially provided to increase concentration on an image by extracting a vibration according to a sound which corresponds to the image and delivering the vibration to the motion chair. The system for operating a sound-linked type vibrating motion chair according to the present invention includes: an internet motion server (20) for searching image content and supporting a motion code (22) about an image of the searched image content; a VOD server (30) for storing the image and sound of the image content and supporting a motion code (32) about the image of the image content; a set-top box (40) for outputting the image and the sound about the image content provided from the internet motion server (20) and the VOD server (30) and generating motion data (42) depending on the image and sound of the image content; the motion chair (50) for delivering a vibration corresponding to the image of the monitor (100) to a user by being arranged in one side of the monitor (100) so that the user is able to see the image and receiving the motion data (42) of the set-top box (40); and a controller (60) for enabling a search of image content in the internet motion server (20) and the VOD server (30) to be performed by the user and controlling the set-top box (40). [Reference numerals] (100) Monitor;(20) Internet motion server;(22,32) Motion code;(30) VOD server;(40) Set-top box;(42) Motion data;(422) Vibration data;(4222) Vibration motion;(50) Motion chair;(52) Seat;(54) Motion shaft member;(542) Front shaft;(544) Rear shaft;(56) Linear actuator;(58) Motion control board;(60) Controller
Abstract:
PURPOSE: A screen correction method using an automatic screen correction system for stereoscopic image projection is provided to improve matching and convenience of screen correction by automatically performing correction of a projected video image using an infrared projection device, an infrared reflection marker, an infrared detection camera module and a computer device. CONSTITUTION: After binarization of obtained infrared images, a system labels each element of the infrared images. The system performs the blob processing of the each labeled object. If the number of blobs and the number of infrared markers are the same, the system calculates a location of the center point of the each blob. The system converts the obtained homography information into a keystone adjustment variable of first and second beam projectors and automatically performs screen correction of a projected left-eye two-dimensional image and a right-eye two-dimensional image. [Reference numerals] (AA) Step of obtaining infrared images; (BB) Step of binary processing; (CC) Step of label processing; (DD) Step of blob processing; (EE) Step of comparing and judging the number of blobs; (FF) Step of calculating the center point of the each blob; (GG) Step of generating quadrilaterals between blobs; (HH) Step of generating two-dimensional homography; (II) Step of adjusting projected images; (JJ) Otsu binary algorithm; (KK) The number of blobs = The number of infrared reflection makers(4)?
Abstract:
PURPOSE: A motion data generation device of an experience type motion simulator is provided to capture movement of an upper base and use the same as motion data, thereby reducing a manufacturing time and manpower. CONSTITUTION: A moveable axis(3) is arranged between a bottom base(1) and a top base(2). Increasing/decreasing operations are performed corresponding to movement of the top base synchronized to an image. A first motion data generation unit(4) captures movement of the moveable axis and generates first motion data. A second motion data generation unit(5) generates second motion data for providing a vibration, a wind, water, smoke and fire. An operation control unit controls an operation of an experience type motion simulator corresponding to first and second motion data. The number of moveable axes is the same as the number of moveable axes of the experience type motion simulator.
Abstract:
The present invention provides a method for interactive display of a large wall screen of an adaptive viewing position type using an infrared (IR) sensor. According to the present invention, the method for interactive display of a large wall screen of an adaptive viewing position type using an IR sensor can provide converted video content according to the position of a video content viewer in the front of the large wall screen to provide the viewer with an optimized viewing environment, thereby raising the concentration of the viewer, and can change a video content screen when a person passes the front of the large wall screen, thereby causing the interest of people around the large wall screen. According to the present invention, the method for interactive display of a large wall screen of an adaptive viewing position type using an IR sensor comprises, in a large wall screen system in which a plurality of IR sensors for horizontal placement is longitudinally arranged at predetermined intervals on a lower end of the large wall screen formed on a wall surface on the installation space, and a projector interlocked with a video content controller projects video content to the large wall screen, a video content viewer position calculating step of detecting a video content viewer in the front of the large wall screen by the IR sensors for horizontal placement and producing the current position information of the video content viewer by the video content controller in real time; a video converting step of allowing the video content controller to convert a source video of the video content into a position-applied video, based on the produced current position information of the video content viewer; and a position-applied video projecting step of transmitting the position-applied video information of the converted video content to the projector to project the converted video content to the large wall screen.
Abstract:
PURPOSE: A golf ball flight data measuring method is provided, which enables a user to enjoy golf practice more vividly by combining an image of a golf course and flight data of a golf ball. CONSTITUTION: A golf ball flight data measuring method comprises: a step of arranging a golf ball measuring apparatus on a straight line perpendicular to the progressing direction of a golf ball; a step of transmitting a trigger signal to first and second CCD cameras(111,112); a step of photographing the image of a golf ball consecutively; a step pre-processing labeling after obtaining coefficient; and a step of producing flight data related to flying distance, flying speed and flying direction of a golf ball.