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Validation and application of a novel solution for environmental monitoring: A three months study at 'Minerva Medica' archaeological site in Rome

机译:对环境监测新解决方案的验证与应用:罗马“Minerva Medica”考古遗址三个月

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Monitoring of environmental parameters is necessary to preserve materials, identify causes of degradation, and quantify their effects, as a function of time. In this research, we propose a measuring unit and present an example of collected data. The unit is based on an ATmega328P microcontroller, gathering signals from: a 9-axis MIMU; a sensor for temperature and relative humidity; and three gas detection miniature boards (NO, NO2 and SO2). The aim of the project is to monitor the effects of different factors: (i) seasonal thermal variations; (ii) dynamic response of the structure and (iii) gaseous pollutant concentration. The developed system allows for a prioritization of intervention both for management and interventions planning, in terms of restoration, consolidation, and conservation. The experimental setup used to evaluate the accuracy of MIMU system highlighted a relative error on shock acceleration measurement, in term of percent root mean square error, lower than 0.36 for the sinusoidal input, and 0.49 for cardinal sin input, with an average accuracy in the principal peak reconstruction lower than 2% in the chosen frequency range (5 Hz to 50 Hz). Data collected in situ showed a maximum frequency of vibration, at ground level, equal to 40 Hz with a peak of 8 mm/s. The gas detection and temperature/humidity boards showed data comparable with the closest certified ARPA system device.
机译:在保护材料的情况下,监测环境参数,识别降解原因,并作为时间的函数来量化它们的效果。在本研究中,我们提出了一种测量单元并提出了收集的数据的示例。该装置基于ATMEGA328P微控制器,从以下方式采集信号:9轴MIMU;用于温度和相对湿度的传感器;和三种气体检测微型板(NO,NO2和SO2)。该项目的目的是监测不同因素的影响:(i)季节性热变化; (ii)结构的动态响应和(iii)气态污染物浓度。开发系统允许在恢复,整合和保护方面进行干预的优先顺序。用于评估MIMU系统的准确性的实验设置突出了冲击加速度测量的相对误差,单位均值百分比百分比百分比,对于正弦输入的0.36,为基本SIN输入0.49,平均精度主峰重建在所选频率范围内低于2%(5 Hz至50 Hz)。原位收集的数据显示了振动的最大频率,地面,等于40Hz,峰值为8毫米/秒。气体检测和温度/湿度板显示与最近认证的ARPA系统设备相当的数据。

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