首页 /研究 /An Experimental Platform to Study the Closed-loop Performance of Brain-machine Interfaces
OTHER

An Experimental Platform to Study the Closed-loop Performance of Brain-machine Interfaces

Naveed Ejaz, Kris D. Peterson, Holger G. Krapp

发表年份
2011
引用次数
3
访问权限
开放获取

摘要

The non-stationary nature and variability of neuronal signals is a fundamental problem in brain-machine interfacing. We developed a brain-machine interface to assess the robustness of different control-laws applied to a closed-loop image stabilization task. Taking advantage of the well-characterized fly visuomotor pathway we record the electrical activity from an identified, motion-sensitive neuron, H1, to control the yaw rotation of a two-wheeled robot. The robot is equipped with 2 high-speed video cameras providing visual motion input to a fly placed in front of 2 CRT computer monitors. The activity of the H1 neuron indicates the direction and relative speed of the robot's rotation. The neural activity is filtered and fed back into the steering system of the robot by means of proportional and proportional/adaptive control. Our goal is to test and optimize the performance of various control laws under closed-loop conditions for a broader application also in other brain machine interfaces.

关键词

InterfacingComputer scienceRobotRobustness (evolution)Brain–computer interfaceRotation (mathematics)Artificial intelligenceControl theory (sociology)Computer visionSimulation

相关论文

查看 OTHER 分类全部论文