Evaluating Morphological Computation in Muscle and DC-Motor Driven Models of Hopping Movements. In the context of embodied artificial intelligence, morphological computation refers to processes, which are conducted by the body (and environment) that otherwise would have to be performed by the brain.
Dec 1, 2015 · In this work, we evaluate two different measures of morphological computation that can be applied in robotic systems and in computer simulations ...
Jun 19, 2024 · In this work, we evaluate two different measures of morphological computation that can be applied in robotic systems and in computer simulations ...
This work evaluates two different measures of morphological computation that can be applied in robotic systems and in computer simulations of biological ...
Evaluating Morphological Computation in Muscle and DC-Motor Driven Models of Hopping Movements. 2016. Ghazi-Zahedi, Keyan;; Haeufle, Daniel FB;; Montúfar, Guido ...
Our focus will be on the introduction of the morphological paradigm in a new type of robotics and to contrast the interests behind this development with the ...
Evaluating Morphological Computation in Muscle and DC-Motor Driven Models of Hopping Movements · Keyan Ghazi-Zahedi, Daniel F. B. Haeufle, Guido Montúfar, Syn ...
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May 31, 2021 · Evaluating Morphological Computation in Muscle and DC-motor Driven Models of Hopping Movements. Front. Robot. AI 3 (7), 42. 10.3389/frobt ...
Evaluating morphological computation in muscle and DC-motor driven models of human hopping. ... muscle viscoelasticity in wrist movements. J. Neurophysiol ...
Evaluating Morphological Computation in Muscle and DC-motor Driven Models of Hopping Movements. K Ghazi-Zahedi, DFB Haeufle, GF Montufar, S Schmitt, N Ay.