arXiv:2412.14982cs.ROcs.ET2024-12被引 3

用小规模测试场精准复现真实道路晕车体验,提升测试效率与可重复性。

Efficient Motion Sickness Assessment: Recreation of On-Road Driving on a Compact Test Track

  • 通过模型预测控制优化路径和速度,复现真实道路的纵向与横向加速度
  • 47名参与者实验显示,测试场与真实道路的平均晕车率无显著差异
  • 为自动化驾驶晕车评估提供安全、可重复的替代方案,适合车辆研发与人因研究

消费者将乘车时能从事非驾驶活动视为自动驾驶汽车采纳的关键原因。然而,此类活动会引发乘员晕车,降低舒适度并影响接受度。因此,亟需通过实验深入理解晕车机制及其影响因素。目前多数实验在公共道路(真实但不可复现)或测试场(适用于原型车)进行。本研究提出一种方法,通过模型预测控制,在70米×175米的小型测试场设计最优路径与速度参考,以高效复现真实道路的晕车暴露。一项包含47名参与者的组内实验对比了测试场与真实道路条件下的晕车发生情况,条件交叉随机。结果表明,两种条件下平均晕车率无差异,且个体晕车水平整体对应良好。该方法为晕车评估提供了更简便、安全、可重复的途径。

原文摘要 · Abstract (English)

The ability to engage in other activities during the ride is considered by consumers as one of the key reasons for the adoption of automated vehicles. However, engagement in non-driving activities will provoke occupants' motion sickness, deteriorating their overall comfort and thereby risking acceptance of automated driving. Therefore, it is critical to extend our understanding of motion sickness and unravel the modulating factors that affect it through experiments with participants. Currently, most experiments are conducted on public roads (realistic but not reproducible) or test tracks (feasible with prototype automated vehicles). This research study develops a method to design an optimal path and speed reference to efficiently replicate on-road motion sickness exposure on a small test track. The method uses model predictive control to replicate the longitudinal and lateral accelerations collected from on-road drives on a test track of 70 m by 175 m. A within-subject experiment (47 participants) was conducted comparing the occupants' motion sickness occurrence in test-track and on-road conditions, with the conditions being cross-randomized. The results illustrate no difference and no effect of the condition on the occurrence of the average motion sickness across the participants. Meanwhile, there is an overall correspondence of individual sickness levels between on-road and test-track. This paves the path for the employment of our method for a simpler, safer and more replicable assessment of motion sickness.

晕车评估自动驾驶测试场人因工程

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