we describe an approach to sensory-motor learning and coordination that draws from psychology rather than neuroscience. The growth of the motor coordination is controlled through sequential lifting of constraints, which is inspired by Jean Piaget's developmental learning theory. Our objective is the implementation of a flexible learning framework for an embodied hand/eye system which exhibits a prolonged epigenetic developmental process. The results show how staged competence can be shaped by qualitative behavior changes produced by anatomical, computational and maturational constraints
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
This paper presents a developmental learning approach for eye-hand coordination in autonomous roboti...
we describe an approach to sensory-motor learning and coordination that draws from psychology rather...
We present an implementation of a model of very early sensory-motor development, guided by results f...
We present an implementation of a model of very early sensory-motor development, guided by results f...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
We present an implementation of a model of very early sensory-motor development, guided by results f...
We present an implementation of a model of very early sensory-motor development, guided by results f...
From infants to adults, each individual undergoes changes both physically and mentally through inter...
From infants to adults, each individual undergoes changes both physically and mentally through inter...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
This paper presents a developmental learning approach for eye-hand coordination in autonomous roboti...
we describe an approach to sensory-motor learning and coordination that draws from psychology rather...
We present an implementation of a model of very early sensory-motor development, guided by results f...
We present an implementation of a model of very early sensory-motor development, guided by results f...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
Abstract: We present an implementation of a model of very early sensory-motor development, guided by...
We present an implementation of a model of very early sensory-motor development, guided by results f...
We present an implementation of a model of very early sensory-motor development, guided by results f...
From infants to adults, each individual undergoes changes both physically and mentally through inter...
From infants to adults, each individual undergoes changes both physically and mentally through inter...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
Biologically inspired robotics offers the promise of future autonomous devices that can perform sign...
This paper presents a developmental learning approach for eye-hand coordination in autonomous roboti...