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NASA NTRS · 19900047421

Neural controller for adaptive movements with unforeseen payloads

Abstract

A theory and computer simulation of a neural controller that learns to move and position a link carrying an unforeseen payload accurately are presented. The neural controller learns adaptive dynamic control from its own experience. It does not use information about link mass, link length, or direction of gravity, and it uses only indirect uncalibrated information about payload and actuator limits. Its average positioning accuracy across a large range of payloads after learning is 3 percent of the positioning range. This neural controller can be used as a basis for coordinating any number of sensory inputs with limbs of any number of joints. The feedforward nature of control allows parallel implementation in real time across multiple joints.

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BibTeXRIS

Kuperstein, Michael, Wang, Jyhpyng. 1990-03-01. Neural controller for adaptive movements with unforeseen payloads. https://ntrs.nasa.gov/citations/19900047421

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