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The implementation of low-cost urban acoustic monitoring devices

机译:实施低成本的城市声学监测设备

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The urban sound environment of New York City (NYC) can be, amongst other things: loud, intrusive, exciting and dynamic. As indicated by the large majority of noise complaints registered with the NYC 311 information complaints line, the urban sound environment has a profound effect on the quality of life of the city's inhabitants. To monitor and ultimately understand these sonic environments, a process of long-term acoustic measurement and analysis is required. The traditional method of environmental acoustic monitoring utilizes short term measurement periods using expensive equipment, setup and operated by experienced and costly personnel. In this paper a different approach is proposed to this application which implements a smart, low-cost, static, acoustic sensing device based around consumer hardware. These devices can be deployed in numerous and varied urban locations for long periods of time, allowing for the collection of longitudinal urban acoustic data. The varied environmental conditions of urban settings make for a challenge in gathering calibrated sound pressure level data for prospective stakeholders. This paper details the sensors' design, development and potential future applications, with a focus on the calibration of the devices' Microelectromechanical systems (MEMS) microphone in order to generate reliable decibel levels at the type/class 2 level. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纽约市(NYC)的城市声音环境尤其可以是:响亮,干扰,令人兴奋和充满活力。正如在NYC 311信息投诉专线中注册的绝大多数噪音投诉所表明的那样,城市的声音环境对城市居民的生活质量产生了深远的影响。为了监视并最终了解这些声音环境,需要长期的声音测量和分析过程。传统的环境声学监测方法利用昂贵的设备,由经验丰富且昂贵的人员进行设置和操作的短期测量周期。本文针对此应用提出了一种不同的方法,该方法基于消费类硬件实现了智能,低成本,静态,声学传感设备。这些设备可以长时间部署在许多不同的城市位置,从而可以收集纵向的城市声学数据。城市环境的变化环境条件为潜在的利益相关者收集校准的声压级数据带来了挑战。本文详细介绍了传感器的设计,开发和潜在的未来应用,重点是对设备的微机电系统(MEMS)麦克风的校准,以便生成2类/ 2级电平的可靠分贝电平。 (C)2016 Elsevier Ltd.保留所有权利。

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