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Design of a Mobile Low-Cost Sensor Network Using Urban Buses for Real-Time Ubiquitous Noise Monitoring

机译:利用城市公交车实时低成本监测噪声的移动低成本传感器网络的设计

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摘要

One of the main priorities of smart cities is improving the quality of life of their inhabitants. Traffic noise is one of the pollutant sources that causes a negative impact on the quality of life of citizens, which is gaining attention among authorities. The European Commission has promoted the Environmental Noise Directive 2002/49/EC (END) to inform citizens and to prevent the harmful effects of noise exposure. The measure of acoustic levels using noise maps is a strategic issue in the END action plan. Noise maps are typically calculated by computing the average noise during one year and updated every five years. Hence, the implementation of dynamic noise mapping systems could lead to short-term plan actions, besides helping to better understand the evolution of noise levels along time. Recently, some projects have started the monitoring of noise levels in urban areas by means of acoustic sensor networks settled in strategic locations across the city, while others have taken advantage of collaborative citizen sensing mobile applications. In this paper, we describe the design of an acoustic low-cost sensor network installed on public buses to measure the traffic noise in the city in real time. Moreover, the challenges that a ubiquitous bus acoustic measurement system entails are enumerated and discussed. Specifically, the analysis takes into account the feature extraction of the audio signal, the identification and separation of the road traffic noise from urban traffic noise, the hardware platform to measure and process the acoustic signal, the connectivity between the several nodes of the acoustic sensor network to store the data and, finally, the noise maps’ generation process. The implementation and evaluation of the proposal in a real-life scenario is left for future work.
机译:智慧城市的主要优先事项之一是改善居民的生活质量。交通噪声是对公民生活质量造成负面影响的污染物源之一,引起了当局的关注。欧盟委员会已经推广了《环境噪声指令2002/49 / EC(END)》,以告知公民并防止噪声暴露的有害影响。使用噪声图测量声级是END行动计划中的战略性问题。通常通过计算一年中的平均噪声来计算噪声图,并每五年更新一次。因此,动态噪声映射系统的实施除了有助于更好地了解噪声水平随时间的变化外,还可能导致短期计划行动。最近,一些项目已开始通过在整个城市的战略位置安放的声波传感器网络来监测市区的噪声水平,而其他项目则利用了协同市民感测移动应用程序的优势。在本文中,我们描述了安装在公交车上以实时测量城市交通噪声的低成本声学传感器网络的设计。此外,列举并讨论了无处不在的总线声学测量系统所带来的挑战。具体而言,该分析考虑了音频信号的特征提取,道路交通噪声与城市交通噪声的识别和分离,用于测量和处理声信号的硬件平台以及声传感器的多个节点之间的连通性网络存储数据,最后存储噪声图的生成过程。在现实生活中对提案的实施和评估留待以后的工作。

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