Title :
A Robotic Neural Net Based Visual-sensory Motor Control System that Reverse Engineers the Motor Control Functions of the Human Brain
Author :
Rosen, David B. ; Rosen, Alan
Author_Institution :
Machine Consciousness Inc, Redondo Beach
Abstract :
The design of the neural net based visual-robotic controller, controlling a tactile "itch-scratch" robotic sensory motor control system is presented. The "itch-scratch" robotic motor control system is described in referenced and linked publications. The design of the visual-robotic system is obtained by adding an obstacle avoiding visual system to the sensory motor control functions of the tactile "itch-scratch" robotic system. The visual-robotic controller is unique in that the coordinate frame in which the robot is operating, determined by the optical visual sensors, is reflected onto a neural network located within the robotic controller. The associated visual and tactile sensory motor control systems within the controller may lead to insight into the biological pathways in the brain for 3D-optical imaging and sensory motor control with feedback from the somatic body sensors.
Keywords :
biomedical optical imaging; collision avoidance; medical image processing; medical robotics; neural nets; neurophysiology; reverse engineering; robot vision; 3D-optical imaging; biological pathway; human brain; obstacle avoidance; reverse engineer; robotic neural net; tactile sensory motor control system; visual-sensory motor control system; Biological neural networks; Control systems; Humans; Motor drives; Optical control; Optical feedback; Optical sensors; Reverse engineering; Robot kinematics; Robot sensing systems;
Conference_Titel :
Neural Networks, 2007. IJCNN 2007. International Joint Conference on
Conference_Location :
Orlando, FL
Print_ISBN :
978-1-4244-1379-9
Electronic_ISBN :
1098-7576
DOI :
10.1109/IJCNN.2007.4371373