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基于半自主導航與運動想象的多旋翼飛行器二維空間目標搜索

Two-dimensional space target searching based on semi-autonomous navigation and motor imagery for multi-rotor aircraft

  • 摘要: 提出一種腦-機接口系統實現多旋翼飛行器室內二維空間目標搜索.系統由半自主導航與決策子系統組成.半自主導航子系統用于為決策子系統提供可行飛行方向并實現多旋翼飛行器半自主避障.決策子系統采用互相關方法與邏輯回歸方法完成運動想象的腦電特征提取與分類.實際的室內目標搜索實驗驗證了使用該系統是可行且有效的.相比其他方法,減少了被試者負擔,降低控制難度,控制精度約提高±10 cm.

     

    Abstract: A brain computer interface (BCI) system was proposed to realize the two-dimensional indoor space target searching for multi-rotor aircraft. This system consists of semi-autonomous navigation and decision subsystems. The semi-autonomous navigation subsystem is employed to provide feasible directions for the decision subsystem and avoid obstacles semi-automatically for multi-rotor aircraft. The decision subsystem utilizes the cross-correlation (CC) and logistic regression (LR) methods to implement motor imagery (MI) electroencephalogram (EEG) feature extraction and classification, respectively. The actual indoor target searching experiment validates the feasibility and effectiveness of this BCI system. Compared to similar methods, the proposed BCI system reduces the burden of the subjects and the control difficulties. The control precision increases by approximately ±10 cm.

     

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