As both ordinary and well-trained human motion is mostly planned and controlled unconsciously by the central nervous system (CNS), human control mechanisms remain relatively obscure. Despite, they are an interesting topic, for example, with regard to improve protheses or athletic motion. To learn and understand more about the control of human motion, we use rigid multibody systems to represent bones and joints and formulate an optimal control problem (OCP) with the goal to minimise a physiologically motivated cost function, while the equations of motion and further nonlinear constraints have to be fulfilled. The investigated biomechanical movements are induced either via joint torques or via Hill-type muscle forces. We compare several cost ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
In this contribution a framework for digital human modelling using optimal control of a biomechanica...
In this contribution a framework for digital human modelling using optimal control of a biomechanica...
Abstract. In this paper, we propose a model of biological motor control for generation of goal-direc...
Grasping is a complex human action simulated here as an optimal control problem with a three‐dimensi...
The primary objective of this work is the development of robust, accurate and efficient simulation m...
In this contribution, a recently developed optimal control method for constrained mechanical systems...
In this paper we present a framework for digital human modelling using discrete mechanics and optima...
Cruse H. Constraints for joint angle control of the human arm. Biological cybernetics. 1986;54(2):12...
Elastic joints endow robots with advantages including energy-efficiency, safety and performance. To...
International audienceAn important question in the literature focusing on motor control is to determ...
International audienceAn important question in the literature focusing on motor control is to determ...
International audienceAn important question in the literature focusing on motor control is to determ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
In this contribution a framework for digital human modelling using optimal control of a biomechanica...
In this contribution a framework for digital human modelling using optimal control of a biomechanica...
Abstract. In this paper, we propose a model of biological motor control for generation of goal-direc...
Grasping is a complex human action simulated here as an optimal control problem with a three‐dimensi...
The primary objective of this work is the development of robust, accurate and efficient simulation m...
In this contribution, a recently developed optimal control method for constrained mechanical systems...
In this paper we present a framework for digital human modelling using discrete mechanics and optima...
Cruse H. Constraints for joint angle control of the human arm. Biological cybernetics. 1986;54(2):12...
Elastic joints endow robots with advantages including energy-efficiency, safety and performance. To...
International audienceAn important question in the literature focusing on motor control is to determ...
International audienceAn important question in the literature focusing on motor control is to determ...
International audienceAn important question in the literature focusing on motor control is to determ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...
Predictive simulations are useful in biomechanics to determine the optimal trajectories between two ...