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Psychoacoustic Requirements for Warning Sounds of Quiet Cars

机译:安静汽车警告声的心理声学要求

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摘要

According to upcoming legislative regulations in certain countries, electric and hybrid-electric vehicles (EVs and HEVs) will have to be equipped with devices to compensate for the lack of engine noise needed to warn pedestrians against the vehicles. This leads to the question of appropriate sound design which has to meet specific psychoacoustic requirements. The present paper focuses on auditory features of warning sounds to enhance pedestrians' safety with a major focus on the detectability of the exterior noise of the vehicle in an ambient noise. For the evaluation of detectability, the psychoacoustic model developed by Kerber and Fasti will be introduced allowing for the prediction of masked thresholds of the approaching vehicle. The instrumental assessment yields estimates of the distance of an approaching vehicle at the point it becomes audible to the pedestrians. This way the risk of collision can be assessed assuming that only auditory cues are used by pedestrians to identify vehicles before crossing a street. The corresponding algorithm was applied in a field study to assess the detectability of selected EVs and HEVs as opposed to conventional vehicles. A second focus of this paper will be on the issue of recognisability. It is suggested to design sounds which both are perceptually indicative of the vehicle behaviour and inform about the specific type of propulsion and vehicle make. As a result, the concept of a sound signature specific for vehicles with electric propulsion is proposed which may enhance detectability considerably while recognisability is retained to a large extent.
机译:根据某些国家/地区即将颁布的法律法规,电动和混合动力汽车(EV和HEV)将必须配备设备,以弥补警告行人注意车辆所需的发动机噪音的不足。这就产生了必须满足特定心理声学要求的适当声音设计的问题。本文关注警告声音的听觉特征,以提高行人的安全性,主要关注环境噪声中车辆外部噪声的可检测性。为了评估可检测性,将引入由Kerber和Fasti开发的心理声学模型,从而可以预测接近车辆的掩蔽阈值。仪器评估得出行人可以听到的接近车辆的距离的估计值。这样,假设行人在穿过马路之前仅使用听觉提示来识别车辆,就可以评估发生碰撞的风险。相应的算法已用于野外研究,以评估选定电动汽车和混合动力汽车与传统车辆相比的可检测性。本文的第二个重点将是可识别性问题。建议设计声音,既可以感知车辆的行为,又可以了解具体的推进方式和车辆制造信息。结果,提出了针对具有电动推进的车辆的声音特征的概念,其可以在很大程度上保持可识别性的同时显着增强可检测性。

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