Publication | Closed Access
Bioinspired Visuomotor Convergence
80
Citations
34
References
2009
Year
EngineeringSpatial DecompositionsField RoboticsMotor ControlWide-field Integration MethodsBiomechanicsRobot LearningKinematicsPerception SystemHealth SciencesSensorimotor ControlCognitive ScienceSensorimotor ArchitectureVision RoboticsInvertebrate VisionSensorimotor IntegrationVision ResearchVisual PathwayPattern FormationAerospace EngineeringMotor SystemEye TrackingBioinspired Visuomotor ConvergenceNeuroscienceHuman MovementRobotics
In this paper, wide-field integration methods, which are inspired by the spatial decompositions of wide-field patterns of optic flow in the insect visuomotor system, are explored as an efficient means to extract visual cues for guidance and navigation. A control-theoretic framework is developed and used to quantitatively link weighting functions to behaviorally-relevant interpretations such as relative orientation, position, and speed in a corridor environment. It is shown through analysis and demonstration on a ground vehicle that the proposed sensorimotor architecture gives rise to navigational heuristics, namely, centering and speed regulation, which are observed in natural systems.
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