Yang Ming, De Coensel Bert, Kang Jian
School of Architecture, University of Sheffield, Sheffield, United Kingdom.
Department of Information Technology, Ghent University, Ghent, Belgium.
J Acoust Soc Am. 2015 Aug;138(2):916-27. doi: 10.1121/1.4927033.
1/f noise or pink noise, which has been shown to be universal in nature, has also been observed in the temporal envelope of music, speech, and environmental sound. Moreover, the slope of the spectral density of the temporal envelope of music has been shown to correlate well to its pleasing, dull, or chaotic character. In this paper, the temporal structure of a number of instantaneous psychoacoustic parameters of environmental sound is examined in order to investigate whether a 1/f temporal structure appears in various types of sound that are generally preferred by people in everyday life. The results show, to some extent, that different categories of environmental sounds have different temporal structure characteristics. Only a number of urban sounds considered and birdsong, generally, exhibit 1/f behavior on short to medium duration time scales, i.e., from 0.1 s to 10 s, in instantaneous loudness and sharpness, whereas a more chaotic variation is found in birdsong at longer time scales, i.e., of 10 s-200 s. The other sound categories considered exhibit random or monotonic variations in the different time scales. In general, this study shows that a 1/f temporal structure is not necessarily present in environmental sounds that are commonly perceived as pleasant.
1/f噪声或粉红噪声在自然界中具有普遍性,在音乐、语音和环境声音的时间包络中也有观察到。此外,音乐时间包络的频谱密度斜率已被证明与其愉悦、沉闷或混乱的特征密切相关。在本文中,研究了环境声音的一些瞬时心理声学参数的时间结构,以调查1/f时间结构是否出现在日常生活中人们普遍喜欢的各种类型的声音中。结果在一定程度上表明,不同类别的环境声音具有不同的时间结构特征。一般来说,只有一些所考虑的城市声音和鸟鸣声在短到中等时长尺度上,即从0.1秒到10秒,在瞬时响度和尖锐度方面呈现1/f行为,而在较长时间尺度上,即10秒至200秒时,鸟鸣声中发现了更混乱的变化。所考虑的其他声音类别在不同时间尺度上呈现随机或单调变化。总体而言,这项研究表明,通常被认为令人愉悦的环境声音中不一定存在1/f时间结构。