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首页> 外文期刊>Forschung im Ingenieurwesen >Influence of dynamic stimulation, visual perception and individual susceptibility to car sickness during controlled stop-and-go driving
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Influence of dynamic stimulation, visual perception and individual susceptibility to car sickness during controlled stop-and-go driving

机译:动态刺激,视觉感知和个人易感性对控制停止驾驶期间的动态刺激和个人易感性的影响

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摘要

The enjoyment and usage of highly automated vehicles might be reduced by motion sickness. This study addresses the influencing factors of dynamic stimulation, visual perception and individual motion sickness susceptibility in a real car environment. Based on the sensory rearrangement theory the stimulation of the vestibular organs effects motion sickness. The dynamic stimulation seen as vehicle acceleration is evaluated by the Motion Sickness Dose Value (MSDV). 30 participants experienced a stop-and-go driving scenario while looking outside and on a display inside the car. Participants were preselected to represent a group susceptible to motion sickness. A driving profile with alternating low and high stimulating characteristics was used. Three symptoms of motion sickness were verbally rated on a scale from zero to ten at one minute intervals. The symptom ratings show a significant increase for the situation of video watching on the display in this purely longitudinal stimulation. Dynamic stimulation, visual perception and individual susceptibility act as equally important factors for modeling motion sickness intensity. To estimate the intensity of motion sickness the extension of the MSDV by inclusion of visual perception and individual susceptibility is strongly recommended.
机译:运动疾病可能会减少高度自动化车辆的享受和用法。本研究解决了现实汽车环境中动态刺激,视觉感知和个体运动疾病易感性的影响因素。基于感官重排理论,前庭器官的刺激效应晕车。通过运动疾病剂量值(MSDV)评估作为车辆加速的动态刺激。 30名参与者在外面和在汽车内部展示时经历了停止和去的驾驶场景。预选参与者代表一个易受疾病的团体。使用具有交替低刺激特性的驱动轮廓。在一分钟的间隔,三个脉冲疾病的三个症状从零到十的比例均衡。在这种纯粹纵向刺激的情况下,症状评级显示在显示器上观看视频的情况的显着增加。动态刺激,视觉感知和个人敏感性起到模拟运动疾病强度的同样重要的因素。为了估算摩托疾病的强度,强烈推荐通过包含视觉感知和个人易感性来延伸MSDV。

著录项

  • 来源
    《Forschung im Ingenieurwesen》 |2021年第2期|517-526|共10页
  • 作者单位

    Volkswagen AG Grp Innovat D-38448 Wolfsburg Germany|Tech Univ Chemnitz Ergon & Innovat D-09107 Chemnitz Germany;

    Volkswagen AG Grp Innovat D-38448 Wolfsburg Germany|Tech Univ Berlin Inst Land & Sea Transport Syst Nat Driving Observat Energet Optimizat & Accid Av D-13355 Berlin Germany;

    Tech Univ Chemnitz Ergon & Innovat D-09107 Chemnitz Germany;

    Tech Univ Chemnitz Ergon & Innovat D-09107 Chemnitz Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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