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Korea Culture Technology institute

Research Development

Develop advanced shooting and rendering technology

Developing a cutting-edge photographing and rendering technology with multiple self=control air vehicles for a large-scale performance and broadcasting

Research Objective

  • Navigation control technology and optimal path design technology of unmanned aerial vehicle for multi-point imaging
    • Position estimation accuracy of drones: within 0.5 meters
    • Accuracy of attitude estimation of drones: 3 degrees
    • Position control accuracy of drone: Position within 0.1 meter
    • Drones scion control accuracy: 0.1 degree
  • Development of gimbal mechanism control technology and Lidar sensor for camera image tracking and aviation collision avoidance
    • Bending load bending control band: 10 Hz
    • Bimp bending bend control accuracy: 0.1 degree
    • Flight recognition speed: 3 frame / sec
    • Accuracy error of aircraft recognition: 0.1 degree
  • Development of Deblurring technology considering position / direction of aircraft
    • Deburrrring with depth change using sensor information

Research Contents

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  • Development of multi-view image based single object tracking module
    • Precision posture and positioning technology of single body
    • Developed a hovering and movement control technology for a single vehicle with minimum level of noise
    • Optimal Path Generation and Multiple Unmanned Vehicle Control Technology Based on Image Servo Tracking
  • Development of gimbal mechanism control technology and Lidar sensor for camera image tracking and aviation collision avoidance
    • Configuration and control of 3-axis camera gimbal mechanism for image tracking control
    • Identification of multiple autonomous vehicles and obstacles using Lidar sensor
    • Sensor fusion and image tracking control
  • Improved input image quality
    • High-resolution reconstruction algorithm based on video frame
    • Database learning based high resolution restoration algorithm
    • Deblurring technology development
    • Development of Rolling Shutter Calibration Technology
  • Image-based 3D reconstruction technology
    • Key frame based 3D mesh reconstruction
    • Restoration model optimization and texture technology

Applications

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  • Real-time multi-point relay and recording service using multi-vehicle
    • A service that can relay images of various viewpoints about cultural contents such as performances and sports in real time and record them according to the user's request
  • 3D contents viewer service through restoration of indoor and outdoor environment
    • It is a service that allows the user to check the advanced 3-dimensional contents reproduced in a new form through stereoscopic rendering technique after recording cultural contents such as performances and sports
  • Commercialization of multi-point imaging system using multi-vehicle
    • Provides multi-point imaging system for filmmakers such as film and TV programs (automatic shooting equipment such as multi-vehicle and gimbal equipment)
  • Airplanes capable of flighting with Lidar sensors
    • Commercialization of a flying body using Lidar sensor to enable flight formation even in an indoor situation where GPS is impossible
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