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Design and Implementation of an Arduino-Based Plug-and-Play Acquisition System for Seismic Noise Measurements

机译:基于Arduino的即插即用采集系统用于地震噪声测量的设计与实现

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The analysis of seismic noise provides a reliable estimation of the soil properties, which supposes the starting point for the assessment of the seismic hazard. The horizontal-to-vertical spectral ratio technique calculates the resonant frequency of the soil just by using a single three-component sensor. Array measurements require at least several vertical sensors registering simultaneously and their analysis provides an estimation of the surface waves dispersion curve. Although these methods are relatively cheaper than other geotechnical techniques, the cost of the sensors and the multi-channel data acquisition system means that small research groups cannot afford this kind of equipment. In this work, two prototypes for registering seismic noise have been developed and implemented: a three-channel acquisition system, optimized for working with three-component sensors; and a twelve-channel acquisition system, prepared for working simultaneously with twelve vertical geophones. Both prototypes are characterized by being open-hardware, open-software, easy to implement, and low-cost. The main aim is to provide a data acquisition system that can be reproduced and applied by any research group. Both developed prototypes have been tested and compared with other commercial equipment, showing their suitability to register seismic noise and to estimate the soil characteristics.
机译:地震噪声的分析提供了对土壤性质的可靠估计,这是评估地震危险性的起点。水平与垂直光谱之比技术仅需使用单个三分量传感器即可计算土壤的共振频率。阵列测量至少需要同时记录多个垂直传感器,并且它们的分析可以估算出表面波的色散曲线。尽管这些方法比其他岩土技术相对便宜,但是传感器和多通道数据采集系统的成本意味着小型研究小组无法负担这类设备。在这项工作中,开发并实现了两个用于记录地震噪声的原型:一个三通道采集系统,为与三分量传感器一起使用而优化;和十二通道采集系统,准备与十二个垂直地震检波器同时工作。这两个原型的特点都是开放硬件,开放软件,易于实现且成本低廉。主要目的是提供一个可以被任何研究小组复制和应用的数据采集系统。两种开发的原型均经过测试,并与其他商用设备进行了比较,显示出它们适合记录地震噪声和评估土壤特征。

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