NASA NTRS ยท 19900013750
A real time, FEM based optimal control algorithm and its implementation using parallel processing hardware (transistors) in a microprocessor environment
Abstract
There is an evident need to discover a means of establishing reliable, implementable controls for systems that are plagued by nonlinear and, or uncertain, model dynamics. The development of a generic controller design tool for tough-to-control systems is reported. The method utilizes a moving grid, time infinite element based solution of the necessary conditions that describe an optimal controller for a system. The technique produces a discrete feedback controller. Real time laboratory experiments are now being conducted to demonstrate the viability of the method. The algorithm that results is being implemented in a microprocessor environment. Critical computational tasks are accomplished using a low cost, on-board, multiprocessor (INMOS T800 Transputers) and parallel processing. Progress to date validates the methodology presented. Applications of the technique to the control of highly flexible robotic appendages are suggested.
Keep this discovery
Explore connections, maps & timelines
Patten, William Neff. 1989-12-15. A real time, FEM based optimal control algorithm and its implementation using parallel processing hardware (transistors) in a microprocessor environment. https://ntrs.nasa.gov/citations/19900013750
Cite the original work for its findings. Save a collection to share your selection of sources.