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Tonal Annoyance Metric Development for Automotive Electric Vehicles

机译:汽车电动汽车的音调烦恼度量开发

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Historical metrics intended to drive the development of vehicle powertrains have focused on sounds that are characteristic of IC engines. The interior noise contribution of the propulsion system in electric vehicles has significantly more tonal noise (and much less impulsive and broadband noise) than their IC engine counterparts. This tonal noise is not adequately represented by current propulsion systems metrics. While metrics exist today that were developed to represent the presence of tones in sounds most have focused on the level aspect of the tones relative to the surrounding noise or masking level, some examples include tonality, tone-to-noise ratio, and prominence ratio. A secondary, but also important aspect of tones is the annoyance as a function of frequency. This paper will highlight the development of a tonal annoyance weighting curve that can be used to account for the frequency aspect of tonal annoyance relative to electric vehicles. This weighting curve can then be used in conjunction with the current tonal metrics to represent perceived tonal annoyance of electric vehicles. The benefit of the tonal annoyance weighting curve is demonstrated by comparing the correlation of a common commercially available tonality metric before and after the weighting curve was applied to a subjective study of 8 electric vehicle sounds with significantly different frequency content.
机译:旨在推动车辆发电机的发展的历史指标集中在IC发动机的特征的声音上。推进系统在电动车辆中的内部噪声贡献比其IC发动机对应物有明显的色调噪声(以及更少的冲动和宽带噪声)。电流推进系统度量标准不适用于该音调噪声。虽然今天存在的度量是表示在声音中的色调存在的情况下,但是最重要的是相对于周围噪声或掩蔽水平的音调的水平方面,但是一些实例包括音调,色调对噪声比和突出比。音调的次要,但也是音调的重要方面是作为频率的函数的烦恼。本文将突出调音浪费加权曲线的开发,可用于考虑相对于电动车辆的音调烦恼的频率方面。然后,该加权曲线可以与当前的音调度量结合使用,以表示电动车辆的感知音调烦恼。通过比较在加权曲线之前和之后的公共商业上可获得的调节度量的相关性对8个电动车辆声音的主观研究,以显着不同的频率内容的主观研究来证明色调烦恼加权曲线的益处。

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