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首页> 外文期刊>International Journal of Industrial Ergonomics >Analysis of the sensitivity of heart rate variability and subjective workload measures in a driving simulator: The case of highway work zones
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Analysis of the sensitivity of heart rate variability and subjective workload measures in a driving simulator: The case of highway work zones

机译:驾驶模拟器心率变异性和主观工作量措施敏感性分析:公路工作区的情况

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Heart rate variability and subjective workload measures are extensively used to determine workload during driving. However, the sensitivity of heart rate and workload measurements in simulated driving environments is mostly unknown and can significantly affect the experiment results. The objectives of this paper are to determine how heart rate variability and subjective workload are affected in simulated highway work zones and study the relationship between heart rate variability, subjective workload, and driving performance indicators in simulated driving environments. Conventional lane merge (CLM), joint lane merge (JLM) and a road with no work zone are modeled with high and low traffic densities in a full-size driving simulator. NASA-TLX subjective workload measures and heart rate variability measures of root mean square of successive heartbeat differences (RMSSD), low frequency (LF), high frequency (HF) and the ratio of low frequency to high frequency (LF/HF) are collected in 30 participants. Variability in steering angle, braking and speed are used as driving performance indicators. Results show that compared to no work zone, participants experienced higher mental, temporal, and overall workload in the CLM scenario and poorer driving performance ratings in the CLM and JLM scenarios. All workload measures except for performance were higher with high traffic density. However, heart rate variability measures were not sensitive to the differences in driving scenarios and traffic densities. Pearson correlation coefficients indicated an association between RMSSD and all the subjective workload measures (r 0.21) except performance, and between LF, HF, and LF/HF ratio and mental workload (r 0.21). Steering angle variability was slightly correlated with LF, HF, and LF/HF ratio (r 0.16), but brake and speed variability were not associated with physiological outcomes.
机译:心率变异性和主观工作量措施广泛用于确定驾驶期间的工作量。然而,模拟驾驶环境中心率和工作量测量的灵敏度大多是未知的并且可以显着影响实验结果。本文的目的是确定心率变异性和主观工作量如何在模拟公路工作区中受到影响,并研究了模拟驾驶环境中心率可变性,主观工作量,主观工作量和驾驶性能指标之间的关系。传统的车道合并(CLM),联合车道合并(JLM)和没有工作区的道路在全尺寸驾驶模拟器中以高低交通密度建模。 NASA-TLX主体工作量和心率变化措施和心速均线连续差异(RMSSD),低频(LF),高频(HF)和低频与高频(LF / HF)的比率进行收集到高频(LF / HF)在30名参与者中。转向角,制动和速度的可变性用作驾驶性能指示器。结果表明,与任何工作区相比,参与者在CLM情景中经历了更高的精神,时间和整体工作量,以及CLM和JLM情景中的较差的驾驶性能评级。除了性能外的所有工作负载措施都具有高流量密度。然而,心率变异措施对驾驶情景和交通密度的差异不敏感。 Pearson相关系数表示RMSSD与所有主体工作量措施(R> 0.21)之间的关联,除了性能,LF,HF和LF / HF比和心理工作量(R> 0.21)。转向角度变异性与LF,HF和LF / HF比率略微相关(R> 0.16),但制动和速度变异性与生理结果无关。

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