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Geographic Ecological Momentary Assessment (GEMA) of environmental noise annoyance: the influence of activity context and the daily acoustic environment

机译:环境噪声烦恼的地理生态瞬间评估(Gema):活动环境与日间声学环境的影响

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Noise annoyance is considered to be the most widespread and recognized health effect of environmental noise. Previous research is?mostly based on the static study of residential environmental noise, but few studies have focused on the effects of noise exposure in different activity contexts on real-time annoyance. The two deficiency are that they neglect the influence of activity context besides residence and fail to reflect the difference of time-scale effect of noise influence. Using portable noise and air sensors, GPS-equipped mobile phones, questionnaire survey, and geographic ecological momentary assessment (GEMA), this paper measured the environmental noise and real-time noise annoyance of participants at different activity places. Hierarchical logistic regression models were used to examine the effects of environmental noise on people’s real-time annoyance. The paper further considered the influence of the?geographic context of the activity places and daily acoustic environment on participants’ real-time annoyance. Further, a nonlinear regression model was constructed using Random Forest to further examine the nonlinear relationship between environmental noise and real-time annoyance. The results showed that: (1) the average cumulative equivalent sound level during was 55?dB (A) when the participants responded to the EMA surveys; (2) Only the temperature of activity places had an influence on momentary annoyance and the higher the temperature, the more likely participants were annoyed; (3) Participants with higher perception of noise pollution in residential communities were more likely to be annoyed. However, participants with higher daily exposure to noise were less likely to feel annoyed; (4) The threshold value of the effect of noise on real-time annoyance was 58?dB (A) to 78?dB (A). These findings can guide the development of urban planning and environmental noise standards and also provide a reference for noise barrier requirements for different activity places.
机译:噪音烦恼被认为是环境噪音最普遍的和认可的健康效果。以前的研究是基于住宅环境噪声的静态研究,但很少有研究专注于不同活动环境中的噪声暴露对实时烦恼的影响。两种缺乏是他们忽视了除了住宿之外的活动环境的影响,并且未能反映噪声影响的时间规模效应的差异。使用便携式噪声和空气传感器,配备GPS的移动电话,调查问卷调查和地理生态瞬间评估(Gema),本文测量了不同活动场所的参与者的环境噪音和实时噪音烦扰。分层逻辑回归模型用于检查环境噪音对人们的实时烦恼的影响。本文进一步审议了活动场所和日间声学环境的影响对参与者的实时烦恼的影响。此外,使用随机森林构建非线性回归模型,进一步检查环境噪声与实时烦恼之间的非线性关系。结果表明:(1)当参与者对EMA调查作出反应时,平均累积等效声级为55?DB(a); (2)只有活动场所的温度对瞬间烦恼有影响,温度越高,参与者的可能性越多; (3)居住社区噪声污染较高感知的参与者更有可能生气。然而,日常暴露于噪音的参与者不太可能感到恼火; (4)噪声对实时烦恼效果的阈值为58?db(a)至78?db(a)。这些调查结果可以指导城市规划和环境噪声标准的发展,并为不同活动场所的噪声屏障要求提供参考。

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