Soft robots have the potential to greatly improve human-robot interaction via intrinsically safe, compliant designs. However, new compliant materials used in soft robotics – artificial muscles – are fabricated with poor tolerances and have time-varying dynamics. Therefore, a key technical challenge is to develop adaptive control algorithms for these materials. Here, we take a novel bio-inspired approach to artificial muscle control using the adaptive filter model of the cerebellum. The cerebellum is a brain structure essential for fine-tuning human performance in a diverse range of sensory and motor tasks. Its ability to automatically calibrate and adapt to changes in a wide variety of systems using a homogenous, repeating structure sugges...
Decades of research into the structure and function of the cerebellum have led to a clear understand...
Robotics has evolved since its inception and has found major applications in industries. With recent...
Human beings can achieve a high level of motor performance that is still unmatched in robotic system...
Soft robots have the potential to greatly improve human-robot interaction via intrinsically safe, co...
The adaptive filter model of the cerebellar microcircuit has been successfully applied to biological...
© 2015 Wilson, Assaf, Pearson, Rossiter, Dean, Anderson and Porrill. The adaptive filter model of th...
Electroactive polymer actuators are important for soft robotics, but can be difficult to control bec...
The new field of soft robotics offers the prospect of replacing existing hard actuator technologies ...
© 2016 The Author(s) Published by the Royal Society. All rights reserved. Electroactive polymer actu...
Electroactive polymer actuators are important for soft robotics, but can be difficult to control bec...
In this paper, a model of cerebellar function is implemented and evaluated in the control of a robot...
The cerebellum is involved in a large number of different neural processes, especially in associativ...
The primary aims of this research were to gain insight into control architectures of the mammalian b...
Decades of research into the structure and function of the cerebellum have led to a clear understand...
Decades of research into the structure and function of the cerebellum have led to a clear understand...
Robotics has evolved since its inception and has found major applications in industries. With recent...
Human beings can achieve a high level of motor performance that is still unmatched in robotic system...
Soft robots have the potential to greatly improve human-robot interaction via intrinsically safe, co...
The adaptive filter model of the cerebellar microcircuit has been successfully applied to biological...
© 2015 Wilson, Assaf, Pearson, Rossiter, Dean, Anderson and Porrill. The adaptive filter model of th...
Electroactive polymer actuators are important for soft robotics, but can be difficult to control bec...
The new field of soft robotics offers the prospect of replacing existing hard actuator technologies ...
© 2016 The Author(s) Published by the Royal Society. All rights reserved. Electroactive polymer actu...
Electroactive polymer actuators are important for soft robotics, but can be difficult to control bec...
In this paper, a model of cerebellar function is implemented and evaluated in the control of a robot...
The cerebellum is involved in a large number of different neural processes, especially in associativ...
The primary aims of this research were to gain insight into control architectures of the mammalian b...
Decades of research into the structure and function of the cerebellum have led to a clear understand...
Decades of research into the structure and function of the cerebellum have led to a clear understand...
Robotics has evolved since its inception and has found major applications in industries. With recent...
Human beings can achieve a high level of motor performance that is still unmatched in robotic system...