Title :
A low-latency 60 Hz stereo vision system for real-time visual control
Author :
Andersson, Russell L.
Author_Institution :
AT&T Bell Lab., Holmdel, NJ, USA
Abstract :
The author presents an image acquisition and processing system designed for real-time six-dimensional object tracking with the precise temporal semantics and low latency required for use within the feedback loops of robotic applications. To achieve real-time performance, the system must extract from the image only the information needed to accomplish the task. Successful task performance depends on an integrated system. rather than on a collection of components. The hardware design takes the form of two large complementary VME-compatible cards: TRIAX, capable of simultaneously acquiring and processing two high-resolution video streams, and JIFFE, capable of 20 MFLOPS for the three-dimensional calculations. Algorithms are described that enable the system to track a rectangular solid, intended to track objects held by a robot hand. The algorithms hinge on scanning only small line segments of the image, followed by techniques for reconstructing object location from sparse edge points. The system tracks a cardboard box
Keywords :
computer vision; real-time systems; robots; signal processing equipment; tracking; 20 MFLOPS; 60 Hz; JIFFE; TRIAX; VME-compatible cards; cardboard box; feedback loops; high-resolution video streams; image acquisition; image processing; line segments; low-latency 60 Hz stereo vision system; object location; object tracking; real-time six-dimensional object tracking; real-time visual control; rectangular solid; robot hand; robotic applications; sparse edge points; task success; temporal semantics; three-dimensional calculations; Data mining; Delay; Feedback loop; Hardware; Process design; Real time systems; Robots; Stereo vision; Streaming media; Tracking loops;
Conference_Titel :
Intelligent Control, 1990. Proceedings., 5th IEEE International Symposium on
Conference_Location :
Philadelphia, PA
Print_ISBN :
0-8186-2108-7
DOI :
10.1109/ISIC.1990.128455