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A brain-machine interface to navigate mobile robots along human-like paths amidst obstacles

Abdullah Akce, James J. S. Norton, Timothy Bretl

发表年份
2012
引用次数
4

摘要

This paper presents an interface that allows a human user to specify a desired path for a mobile robot in a planar workspace with noisy binary inputs that are obtained at low bit-rates through an electroencephalograph (EEG). We represent desired paths as geodesics with respect to a cost function that is defined so that each path-homotopy class contains exactly one (local) geodesic. We apply max-margin structured learning to recover a cost function that is consistent with observations of human walking paths. We derive an optimal feedback communication protocol to select a local geodesic-equivalently, a path-homotopy class-using a sequence of noisy bits. We validate our approach with experiments that quantify both how well our learned cost function characterizes human walking data and how well human subjects perform with the resulting interface in navigating a simulated robot with EEG.

关键词

Computer scienceWorkspaceGeodesicMobile robotMargin (machine learning)Path (computing)RobotInterface (matter)HomotopyFunction (biology)

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