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利用脑电特征检测飞行员在转弯阶段的心理负荷。

Detection of Pilots' Psychological Workload during Turning Phases Using EEG Characteristics.

机构信息

School of Mechatronics Engineering, Shenyang Aerospace University, Shenyang 110136, China.

Key Laboratory of Rapid Development & Manufacturing Technology for Aircraft, Shenyang Aerospace University, Ministry of Education, Shenyang 110136, China.

出版信息

Sensors (Basel). 2024 Aug 10;24(16):5176. doi: 10.3390/s24165176.

Abstract

Pilot behavior is crucial for aviation safety. This study aims to investigate the EEG characteristics of pilots, refine training assessment methodologies, and bolster flight safety measures. The collected EEG signals underwent initial preprocessing. The EEG characteristic analysis was performed during left and right turns, involving the calculation of the energy ratio of beta waves and Shannon entropy. The psychological workload of pilots during different flight phases was quantified as well. Based on the EEG characteristics, the pilots' psychological workload was classified through the use of a support vector machine (SVM). The study results showed significant changes in the energy ratio of beta waves and Shannon entropy during left and right turns compared to the cruising phase. Additionally, the pilots' psychological workload was found to have increased during these turning phases. Using support vector machines to detect the pilots' psychological workload, the classification accuracy for the training set was 98.92%, while for the test set, it was 93.67%. This research holds significant importance in understanding pilots' psychological workload.

摘要

飞行员的行为对于航空安全至关重要。本研究旨在调查飞行员的 EEG 特征,改进训练评估方法,并加强飞行安全措施。采集的 EEG 信号经过初步预处理。在左右转弯过程中进行 EEG 特征分析,计算β波能量比和香农熵。还量化了飞行员在不同飞行阶段的心理工作量。基于 EEG 特征,使用支持向量机(SVM)对飞行员的心理工作量进行分类。研究结果表明,与巡航阶段相比,左右转弯时β波能量比和香农熵有明显变化。此外,在这些转弯阶段,飞行员的心理工作量也有所增加。使用支持向量机检测飞行员的心理工作量,训练集的分类准确率为 98.92%,测试集的分类准确率为 93.67%。这项研究对于理解飞行员的心理工作量具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38d2/11359754/7d8ea6eb02d7/sensors-24-05176-g001.jpg

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