Annoyance Caused by Simultaneous Noise and Vibration in Commercial Vehicles: Multimodal Interaction and the Effects of Sinusoidal Components in Recorded Seat Vibrations

IF 1.9 Q3 ENGINEERING, MECHANICAL Vibration Pub Date : 2023-07-13 DOI:10.3390/vibration6030033
Maria Mareen Maravich, Robert Rosenkranz, M. Altinsoy
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Abstract

Noise and whole-body vibrations (WBV) inside commercial vehicles can lead to annoyance and reduced comfort. As a result, negative effects on the driver can occur even below the legal exposure limits. In order to understand the annoyance perception and the interaction between noise and WBV, two perception experiments were conducted. For both experiments, recorded signals inside different commercial vehicles were used. Sound pressure and acceleration levels varied. In addition, the frequency content of the recorded vertical seat vibrations was reproduced in different modified variants. The varied parameters (sound pressure level, acceleration level and vibration frequency) were investigated within a three-factorial experimental design. It was found that noise and vibration levels, as well as the vibration spectrum, had a significant effect on total annoyance. Furthermore, an interaction between noise and vibration levels in both experiments could be observed. The results show that for the highest noise level, changing vibration exposure influences annoyance ratings less than the lowest noise level. The results also show that despite the same Wk-weighted RMS level of the WBV according to ISO 2631-1, vibration spectra with sinusoidal components or narrowband vibrations below <10 Hz were significantly perceived as more annoying during a ride in a vehicle.
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商用车噪声和振动同时引起的烦恼:多模态相互作用和记录的座椅振动中正弦分量的影响
商用车内的噪音和全身振动(WBV)会导致烦恼和舒适度降低。因此,即使低于法定暴露限值,也可能对驾驶员产生负面影响。为了了解烦恼感知以及噪声与WBV之间的相互作用,进行了两个感知实验。对于这两个实验,都使用了不同商用车内的记录信号。声压和加速度水平各不相同。此外,记录的垂直座椅振动的频率内容在不同的修改变体中被再现。在三因素实验设计中研究了各种参数(声压级、加速度级和振动频率)。研究发现,噪音和振动水平以及振动频谱对总烦恼度有显著影响。此外,在两个实验中都可以观察到噪声和振动水平之间的相互作用。结果表明,对于最高噪声水平,改变振动暴露对烦恼等级的影响小于最低噪声水平。结果还表明,尽管根据ISO 2631-1,WBV的Wk加权RMS水平相同,但在车辆行驶过程中,具有正弦分量或低于<10Hz的窄带振动的振动谱被显著认为更令人讨厌。
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来源期刊
CiteScore
3.20
自引率
0.00%
发文量
0
审稿时长
10 weeks
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