Laboratory Methods with Imaginary and Simulated Contexts to Assess Noise Annoyance: A Comparison in Terms of Annoyance Model Testing

Q1 Arts and Humanities Acta Acustica united with Acustica Pub Date : 2019-11-01 DOI:10.3813/aaa.919386
C. Marquis-Favre
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引用次数: 1

Abstract

Noise annoyance models using only mean energy-based indices provide weak prediction. Actually various factors influence noise annoyance. different studies from the literature are carried out in laboratory conditions to understand some factors with the long-term aim of enhancing noise annoyance models. Laboratory experiments of assessing noise annoyance are based on imaginary or simulated context. The method with imaginary context is often questioned as participants listen to noise sequences. The current study aims at comparing the two methods in terms of total annoyance model testing. It revealed that annoyance models, respectively built within imaginary and simulated contexts, provided similar prediction when they were tested using in-field annoyance responses. Thus, the laboratory method with imaginary context seems to be as suitable as the method with simulated context to assess annoyance in laboratory conditions.
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实验室方法与想象和模拟环境评估噪音烦恼:在烦恼模型测试方面的比较
仅使用基于平均能量指标的噪声烦恼模型的预测能力较弱。实际上,影响噪音烦恼的因素有很多。不同的文献研究是在实验室条件下进行的,以了解一些因素,以增强噪声烦恼模型的长期目标。评估噪音烦恼的实验室实验是基于想象或模拟的环境。当被试听噪声序列时,想象情境的方法经常受到质疑。本研究旨在比较两种方法在总烦恼模型测试方面的差异。研究表明,分别在想象和模拟环境中建立的烦恼模型,在使用现场烦恼反应进行测试时,提供了类似的预测。因此,假想情境下的实验室方法似乎与模拟情境下的方法一样适合于评估实验室条件下的烦恼。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
6.8 months
期刊介绍: Cessation. Acta Acustica united with Acustica (Acta Acust united Ac), was published together with the European Acoustics Association (EAA). It was an international, peer-reviewed journal on acoustics. It published original articles on all subjects in the field of acoustics, such as • General Linear Acoustics, • Nonlinear Acoustics, Macrosonics, • Aeroacoustics, • Atmospheric Sound, • Underwater Sound, • Ultrasonics, • Physical Acoustics, • Structural Acoustics, • Noise Control, • Active Control, • Environmental Noise, • Building Acoustics, • Room Acoustics, • Acoustic Materials and Metamaterials, • Audio Signal Processing and Transducers, • Computational and Numerical Acoustics, • Hearing, Audiology and Psychoacoustics, • Speech, • Musical Acoustics, • Virtual Acoustics, • Auditory Quality of Systems, • Animal Bioacoustics, • History of Acoustics.
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