NASA NTRS · 19910050629
Real-time motion tracking of three-dimensional objects
Abstract
The problem in which the three-dimensional motion of an object corresponding to a known polyhedral model is to be computed using only the motion of edge features in a continuous stream of two-dimensional images is considered. Advantage is taken of the spatiotemporal density of the input signal and the limitations of long-range trajectory-prediction methods are avoided. Two parallel algorithms which use feature-based, short-range (spatiotemporally local) motion processes to achieve real-time tracking of modeled objects are presented. Both algorithms have been implemented and tested on a tightly coupled multiprocessor system consisting of an Aspex Pipe for low-level, image-feature computations and a Sequent Symmetry for high-level, model-based computations. An analysis is given of the actual performance limits of each method using the current hardware configuration.
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Verghese, Gilbert, Gale, Karey Lynch, Dyer, Charles R.. 1990-01-01. Real-time motion tracking of three-dimensional objects. https://ntrs.nasa.gov/citations/19910050629
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