A Distributed Neural Network Architecture for Hexapod Robot Locomotion
Распределённая архитектура нейронной сети для локомоции шестиногого робота
1992-05-01
SCID: 54.1/k2kmhh4d
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command neuron modulationdistributed neural network architecturehexapod robot locomotionneuroethology of insect locomotionrobustness to lesions
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Abstract (AI)
We present fully distributed neural network architecture for controlling the locomotion of a hexapod robot. The design of this network is directly based on work on the neuroethology of insect locomotion. Previously, we demonstrated in simulation that this controller could generate a continuous range of statically stable insect-like gaits as the activity of a single command neuron was varied and that it was robust to a variety of lesions. We now report that the controller can be utilized to direct the locomotion of an actual six-legged robot, and that it exhibits a range of gaits and degree of robustness in the real world that is quite similar to that observed in simulation.
Key Findings
1
A fully distributed neural network architecture was developed for controlling hexapod robot locomotion, inspired by insect neuroethology.
2
In simulation, the controller generated a continuous range of statically stable insect-like gaits by varying activity of a single command neuron.
3
The real-world controller exhibited a degree of robustness comparable to that observed in simulation.
4
The same controller was successfully deployed on a physical six-legged robot, producing a range of gaits similar to simulation.
5
The simulated controller was robust to a variety of lesions.
Research Object
Hexapod robot locomotion system controlled by a fully distributed neural network architecture
Research Subject
Generation and control of insect-like statically stable gaits and robustness to lesions in real-world hexapod robot locomotion produced by the distributed neural controller
Publication Details
Publication Date
1992-05-01
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