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An Exploratory Analysis of Sound Field Characteristics using the Impulse Response in a Car Cabin

机译:利用车厢的脉冲响应对声场特性进行探索性分析

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Sound environments in cars are becoming quieter and receiving attention because of the prevalence of low-noise engines such as hybrid and electric engines and the manifestation of automated driving. Although the car cabin has potential as a listening space, its acoustic quality has not been examined in detail. The present study investigated sound field characteristics in the car cabin using acoustic parameters obtained by impulse response analysis. In particular, effects of the passenger position, open windows and the use of an air conditioner on acoustic parameters were investigated. The passenger position affected the sound strength at low frequencies. Rear seats, except for the rear central seat, had lower interaural correlation than the front seats, suggesting that rear seats have more diffused sound fields. The opening of windows and use of air conditioners attenuated the ratio of early- and late-arriving energy at high frequencies, suggesting a loss of clarity for music.
机译:由于诸如混合动力和电动发动机之类的低噪声发动机的普及以及自动驾驶的出现,汽车中的声音环境变得越来越安静并受到关注。尽管车厢具有作为聆听空间的潜力,但尚未对其音质进行详细检查。本研究使用脉冲响应分析获得的声学参数研究了车厢中的声场特性。特别是,研究了乘客位置,打开的窗户和使用空调对声学参数的影响。乘客位置会影响低频处的声音强度。除了中央后排座椅外,后排座椅的耳间相关性均比前排座椅低,这表明后排座椅的声场更加分散。窗户的打开和空调的使用削弱了高频时早到晚能量的比率,这表明音乐的清晰度降低了。

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