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A Digital Signal Processor Based Acoustic Sensor for Outdoor Noise Monitoring in Smart Cities

机译:基于数字信号处理器的声传感器用于智能城市中的室外噪声监测

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摘要

Presently, large cities have significant problems with noise pollution due to human activity. Transportation, economic activities, and leisure activities have an important impact on noise pollution. Acoustic noise monitoring must be done with equipment of high quality. Thus, long-term noise monitoring is a high-cost activity for administrations. For this reason, new alternative technological solutions are being used to reduce the costs of measurement instruments. This article presents a design for a versatile electronic device to measure outdoor noise. This device has been designed according to the technical standards for this type of instrument, which impose strict requirements on both the design and the quality of the device’s measurements. This instrument has been designed under the original equipment manufacturer (OEM) concept, so the microphone–electronics set can be used as a sensor that can be connected to any microprocessor-based device, and therefore can be easily attached to a monitoring network. To validate the instrument’s design, the device has been tested following the regulations of the calibration laboratories for sound level meters (SLM). These tests allowed us to evaluate the behavior of the electronics and the microphone, obtaining different results for these two elements. The results show that the electronics and algorithms implemented fully fit within the requirements of type 1 noise measurement instruments. However, the use of an electret microphone reduces the technical features of the designed instrument, which can only fully fit the requirements of type 2 noise measurement instruments. This situation shows that the microphone is a key element in this kind of instrument and an important element in the overall price. To test the instrument’s quality and show how it can be used for monitoring noise in smart wireless acoustic sensor networks, the designed equipment was connected to a commercial microprocessor board and inserted into the infrastructure of an existing outdoor monitoring network. This allowed us to deploy a low-cost sub-network in the city of Málaga (Spain) to analyze the noise of conflict areas due to high levels of leisure noise. The results obtained with this equipment are also shown. It has been verified that this equipment meets the similar requirements to those obtained for type 2 instruments for measuring outdoor noise. The designed equipment is a two-channel instrument, that simultaneously measures, in real time, 86 sound noise parameters for each channel, such as the equivalent continuous sound level (Leq) (with Z, C, and A frequency weighting), the peak level (with Z, C, and A frequency weighting), the maximum and minimum levels (with Z, C, and A frequency weighting), and the impulse, fast, and slow time weighting; seven percentiles (1%, 5%, 10%, 50%, 90%, 95%, and 99%); as well as continuous equivalent sound pressure levels in the one-third octave and octave frequency bands.
机译:当前,大城市由于人类活动而在噪声污染方面存在重大问题。交通,经济活动和休闲活动对噪声污染有重要影响。噪声监测必须使用高质量的设备进行。因此,长期噪声监测对于主管部门而言是一项高成本活动。因此,正在使用新的替代技术解决方案来降低测量仪器的成本。本文提出了一种用于测量室外噪声的多功能电子设备的设计。该设备是根据此类仪器的技术标准设计的,该技术标准对设备的设计和测量质量都提出了严格的要求。该仪器是根据原始设备制造商(OEM)的概念设计的,因此麦克风电子设备可以用作可连接到任何基于微处理器的设备的传感器,因此可以轻松地连接到监视网络。为了验证仪器的设计,已按照声级计(SLM)校准实验室的规定对设备进行了测试。这些测试使我们能够评估电子设备和麦克风的行为,从而针对这两个元素获得不同的结果。结果表明,所实现的电子器件和算法完全符合1类噪声测量仪器的要求。但是,使用驻极体麦克风会降低所设计乐器的技术功能,仅能完全满足2型噪声测量仪器的要求。这种情况表明,麦克风是这种乐器中的关键要素,也是总体价格中的重要要素。为了测试仪器的质量并展示如何将其用于监视智能无线声传感器网络中的噪声,已将设计的设备连接到商用微处理器板上,并插入到现有室外监视网络的基础结构中。这使我们能够在西班牙马拉加市部署一个低成本的子网,以分析由于高水平的休闲噪声而引起冲突地区的噪声。还显示了使用该设备获得的结果。已证实该设备符合与用于测量室外噪声的2型仪器所获得的要求类似的要求。设计的设备是一个两通道仪器,可以实时同时测量每个通道的86个声音噪声参数,例如等效连续声级(Leq)(具有Z,C和A频率加权),峰值级别(使用Z,C和A频率加权),最大和最小级别(使用Z,C和A频率加权)以及脉冲,快速和慢速时间加权;七个百分点(1%,5%,10%,50%,90%,95%和99%);以及三分之一八度和八度频段的连续等效声压级。

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