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A new type of tri-axial accelerometers with high dynamic range MEMS for earthquake early warning

机译:一种新型的具有高动态范围MEMS的三轴加速度计,用于地震预警

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Earthquake Early Warning System (EEWS) has shown its efficiency for earthquake damage mitigation. As the progress of low-cost Micro Electro Mechanical System (MEMS), many types of MEMS-based accelerometers have been developed and widely used in deploying large-scale, dense seismic networks for EEWS. However, the noise performance Of these commercially available MEMS is still insufficient for weak Seismic signals, leading to the large scatter of early-warning parameters estimation. In this study, we developed a new type of tri-axial accelerometer based on high dynamic range MEMS with low noise level using for EEWS. It is a MEMS-integrated data logger with built-in seismological processing. The device is built on a custom-tailored Linux 2.6.27 operating system and the method for automatic detecting seismic events is STA/LTA algorithms. When a seismic event is detected, peak ground parameters of all data components will be calculated at an interval of 1 s, and tc-Pa values will be evaluated using the initial 3 s of P wave. These values will then be organized as a trigger packet actively sent to the processing center for event combining detection. The output data of all three components are calibrated to sensitivity 500 counts/cm/s2. Several tests and a real field test deployment were performed to obtain the performances of this device. The results show that the dynamic range can reach 98 dB for the vertical component and 99 dB for the horizontal components, and majority of bias temperature coefficients are lower than 200 yg/ C. In addition, the results of event detection and real field deployment have shown its capabilities for EEWS and rapid intensity reporting.
机译:地震预警系统(EEWS)已显示出减轻地震破坏的效率。随着低成本微机电系统(MEMS)的发展,已经开发了许多类型的基于MEMS的加速度计,并广泛用于为EEWS部署大规模,密集的地震网络。但是,这些商用MEMS的噪声性能仍然不足以用于弱地震信号,从而导致预警参数估计的分散性很大。在这项研究中,我们开发了一种新型的三轴加速度计,它基于用于EEWS的低噪声水平的高动态范围MEMS。它是具有内置地震处理功能的MEMS集成数据记录器。该设备基于定制的Linux 2.6.27操作系统构建,自动检测地震事件的方法是STA / LTA算法。当检测到地震事件时,将以1 s的间隔计算所有数据分量的峰值地面参数,并使用P波的最初3 s评估tc-Pa值。然后,将这些值组织为触发包,将其主动发送到处理中心以进行事件组合检测。所有这三个组件的输出数据都已校准为灵敏度500个计数/ cm / s2。为了获得该设备的性能,进行了几次测试和一次实际测试部署。结果表明,垂直分量的动态范围可以达到98 dB,水平分量的动态范围可以达到99 dB,并且大多数偏置温度系数都低于200 yg /C。此外,事件检测和现场部署的结果还包括显示了其EEWS和快速强度报告的功能。

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