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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Facilitating the driver detection of road surface type by selective manipulation of the steering-wheel acceleration signal
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Facilitating the driver detection of road surface type by selective manipulation of the steering-wheel acceleration signal

机译:通过有选择地操纵方向盘加速度信号,方便驾驶员检测路面类型

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摘要

Previous research has investigated the possibility of facilitating the driver detection of road surface type by means of selective manipulation of the steering-wheel acceleration signal. In previous studies a selective increase in acceleration amplitude has been found to facilitate road-surface-type detection, as has selective manipulation of the individual transient events which are present in the signal. The previous research results have been collected into a first guideline for the optimization of the steering-wheel acceleration signal, and the guideline has been tested in the current study. The test stimuli used in the current study were ten steering-wheel acceleration–time histories which were selected from an extensive database of road test measurements performed by the research group. The time histories, which were all from midsized European automobiles and European roads, were selected such that the widest possible operating envelope could be achieved in terms of the r.m.s. value of the steering acceleration, the kurtosis, the power spectral density function, and the number of transient events present in the signal. The time histories were manipulated by means of the mildly non-stationary mission synthesis algorithm in order to increase, by a factor of 2, both the number and the size of the transient events contained within the frequency interval from 20 Hz to 60 Hz. The ensemble, composed of both the unmanipulated and the manipulated time histories, was used to perform a laboratory-based detection task with 15 participants, who were presented the individual stimuli in random order. The participants were asked to state, by answering ‘yes’ or ‘no’, whether each stimulus was considered to be from the road surface that was displayed in front of them by means of a large photograph on a board. The results suggest that the selectively manipulated steering-wheel acceleration stimuli produced improved detection for eight of the ten road surface types which were tested, with a maximum improvement of 14 per cent in the case of the broken road surface. The selective manipulation did lead, however, to some degradation in detection for the motorway road stimulus and for the noise road stimulus, thus suggesting that the current guideline is not universally optimal for all road surfaces.
机译:先前的研究已经研究了通过有选择地操纵方向盘加速度信号来促进驾驶员检测路面类型的可能性。在先前的研究中,已经发现加速度幅度的选择性增加有助于路面类型的检测,以及对信号中存在的各个瞬态事件的选择性操纵也是如此。先前的研究结果已收集到用于优化方向盘加速度信号的第一指南中,并且该指南已在当前研究中进行了测试。当前研究中使用的测试刺激是十个方向盘加速时间历史记录,这些历史记录是从研究小组进行的广泛的道路测试测量数据库中选择的。选择了全部来自欧洲中型汽车和欧洲道路的时间历史记录,以便可以在r.m.s.方面获得最大的运行范围。转向加速度的值,峰度,功率谱密度函数以及信号中出现的瞬态事件的数量。通过使用温和的非平稳任务合成算法来操纵时间历史,以便将20 Hz至60 Hz频率间隔内包含的瞬态事件的数量和大小都增加2倍。该集合由未操纵的和已操纵的时间历史组成,用于与15位参与者进行基于实验室的检测任务,这些参与者以随机顺序呈现了单个刺激。要求参与者通过回答“是”或“否”来陈述每个刺激是否被认为是通过板上大照片显示在他们面前的路面上的。结果表明,有选择地操纵方向盘加速刺激可以改善对十种路面类型中的八种的检测能力,在路面破裂的情况下,最大改善幅度为14%。然而,选择性操纵确实导致了对高速公路道路刺激和噪声道路刺激的检测的一定程度的降低,因此表明当前的指南并非在所有路面上都普遍最佳。

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