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米兰市区和罗马郊区声环境受 COVID-19 封锁的影响:异常噪声事件和间歇性比。

Effects of COVID-19 lockdown in Milan urban and Rome suburban acoustic environments: Anomalous noise events and intermittency ratio.

机构信息

GTM - Grup de Recerca en Tecnologies Mèdia, La Salle - Universitat Ramon Llull, C/Quatre Camins, 30, 08022, Barcelona, Spain.

出版信息

J Acoust Soc Am. 2022 Mar;151(3):1676. doi: 10.1121/10.0009783.

Abstract

The COVID-19 pandemic affected the acoustic environment worldwide, entailing relevant reductions of equivalent noise levels (L) during this exceptional period. In the context of the LIFE+ DYNAMAP project, two wireless acoustic sensor networks were deployed in Milan and Rome. Taking advantage of the built-in identification of anomalous noise events (ANE) in the sensors, this work analyses the effects of the COVID-19 lockdown in both urban and suburban acoustic environments from January to June 2020, considering the distribution of ANEs and the intermittency ratio (IR) as an indicator of the impact of noise on population. The results show statistically significant increments of ANEs in Rome during the lockdown, mainly on weekends, and especially at night, despite the significant decrease in salient events. Differently, ANEs decrease during the lockdown in Milan, mostly at daytime, as a result of population confinement. Although the IR increases in several urban locations, most sensed locations show a relevant decrease in IR during the confinement, which represents a noteworthy reduction of the negative impact of noise in the population of both cities. During the post-lockdown period, all the scores start to return to those observed in the pre-lockdown, but still remaining higher than in 2019.

摘要

新冠疫情影响了全球的声学环境,在这一特殊时期,等效噪声水平(L)相应降低。在 LIFE+DYNAMAP 项目的背景下,两个无线声传感器网络在米兰和罗马进行了部署。利用传感器内置的异常噪声事件(ANE)识别功能,本研究分析了 2020 年 1 月至 6 月期间新冠疫情封锁对城市和郊区声学环境的影响,考虑了 ANE 的分布和间歇性比(IR),作为噪声对人口影响的指标。结果表明,在封锁期间,罗马的 ANE 出现了统计学上显著的增加,主要是在周末,尤其是在夜间,尽管显著事件明显减少。相比之下,在米兰,封锁期间 ANE 减少,主要是在白天,这是由于人口被限制在家中。尽管在几个城市地点,IR 有所增加,但在隔离期间,大多数感知地点的 IR 都显著下降,这代表着两个城市的人口所受噪声负面影响的显著减少。在封锁后的时期,所有的得分开始恢复到封锁前的水平,但仍高于 2019 年。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1a6/8942110/8a67bb51e563/JASMAN-000151-001676_1-g001.jpg

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