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Real-Time Optical 3D Tracker for Head-Mounted Display Systems

机译:用于头戴式显示系统的实时光学3D跟踪器

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In this paper, a new optical system for real-time, three-dimensional positiontracking is described. This system adopts and 'inside-out' tracking paradigm. The working environment is a room where the ceiling is lined with a regular pattern of infrared LEDs flashing under the systems's control. Three cameras are mounted on a helmet which the user wears. Each camera uses a lateral effect photodiode as the recording surface. The 2D positions of the LED images inside the field of view of the cameras are detected and reported in real time. The measured 2D image positions and the known 3D positions of the LEDs are used to compute the position and orientation of the camera assembly in space. We have designed an iterative algorithm to estimate the 3D position of the camera assembly in space. The algorithms is a generalized version of the Church's method, and allows for multiple cameras with nonconvergent nodal points. Several equations are formulated to predict the system's error analytically. The requirements of accuracy, speed, adequate working volume, light weight and small size of the tracker are also addressed. (rh)

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