This article describes the main current research project in evolutionary robotics at the AnimatLab, Paris. It aims at using an artificial selection process to automatically generate neural networks that control walking animats, i.e., simulated insects or real
|
2141
|
A robust layered control system for a mobile robot
– Brooks
- 1986
|
|
1782
|
Genetic Programming: On the Programming of Computers by Means of Natural Selection Cambridge
– Koza
- 1992
|
|
494
|
Genetic Programming II: Automatic Discovery of Reusable Programs
– Koza
- 1994
|
|
260
|
Evolving 3D morphology and behavior by competition
– Sims
- 1994
|
|
170
|
Evolving dynamical neural networks for adaptive behavior
– Beer, Gallagher
- 1992
|
|
104
|
Automatic definition of modular neural networks
– Gruau
- 1995
|
|
86
|
Intelligence as adaptive behavior: an experiment in computational neuroethology
– Beer
- 1990
|
|
71
|
Biological metaphors and the design of modular artificial neural networks
– Boers, Kuiper
- 1992
|
|
69
|
On the dynamics of small continuous-time recurrent neural networks”. Adaptive Behaviour
– Beer
- 1995
|
|
59
|
Toward an evolvable model of development for autonomous agent synthesis
– Dellaert, Beer
- 1994
|
|
49
|
Phenotipic Plasticity in Evolving NeuralNetworks
– Nolfi, Miglino, et al.
- 1994
|
|
38
|
A Solidum. Genetic programming approach to the construction of a neural network control of a walking robot
– Lewis, Fagg
- 1992
|
|
37
|
Evolution and development of neural controllers for locomotion, gradient-following and obstacle-avoidance in artificial insects
– Kodjabachian, Meyer
- 1998
|
|
31
|
Automatic generation of programs for crawling and walking
– Spencer
- 1993
|
|
29
|
Running across the reality gap: Octopod locomotion evolved in a minimal simulation,” in Evolutionary Robotics
– Jakobi
- 1998
|
|
28
|
Evolution and development of control architectures in animats
– Kodjabachian, Meyer
- 1995
|
|
25
|
Cellular encoding for interactive evolutionary robotics
– Gruau, Quatramaran
- 1997
|
|
23
|
Evolution and development of modular control architectures for 1-d locomotion in six-legged animats
– Kodjabachian, Meyer
- 1998
|
|
15
|
Evolution in multi-agent systems: Evolving communicating classier systems for gait in a quadrupedal robot
– Bull, Fogarty, et al.
- 1995
|
|
14
|
Artificial Life and the Animat Approach to Artificial Intelligence
– Meyer
- 1996
|
|
11
|
Single neuron models: oversimple, complex and reduced. Trends Neurosci 15
– SEGEV
- 1992
|
|
10
|
Incremental Evolution of Neural Controllers for Robust Obstacle-Avoidance in Khepera
– Chavas, Corne, et al.
- 1998
|
|
7
|
Emergence of gait of a legged robot by collaboration through evolution
– Gomi, Ide
- 1998
|
|
5
|
From natural to artificial life: Biomimetic mechanisms in animat design
– Meyer
- 1997
|
|
4
|
Genetic Programming: GenNets, Artificial Nervous Systems, Artifical Embryos
– Garis
- 1992
|
|
4
|
An Emergent Modeling Method for Artificial Neurol Networks
– Vaario
- 1993
|
|
2
|
Collie."Evolution of Smooth and Efficient Walking Motions for an 8-Legged Robot
– Galt, Luk, et al.
- 1997
|
|
2
|
eds.) Comparative Approaches to Cognitive Science
– Roitblat, Meyer
- 1995
|
|
1
|
Simulating the dynamics of a six-legged animat
– Kodjabachian
- 1996
|
|
1
|
Developpement et evolution de reseaux de neurones artificiels. Application au controle d'un animat hexapode
– Kodjabachian
- 1998
|
|
1
|
Animal Behavior in Four Components," Comparative Approaches to Cognitive Science
– Mel
- 1995
|