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首页> 外文期刊>International Journal of Information Technology >A Low-Power Two-Stage Seismic Sensor Scheme for Earthquake Early Warning System
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A Low-Power Two-Stage Seismic Sensor Scheme for Earthquake Early Warning System

机译:用于地震预警系统的低功耗两阶段地震传感器方案

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摘要

The north-eastern, Himalayan, and Eastern Ghats Belt of India comprise of earthquake-prone, remote, and hilly terrains. Earthquakes have caused enormous damages in these regions in the past. A wireless sensor network based earthquake early warning system (EEWS) is being developed to mitigate the damages caused by earthquakes. It consists of sensor nodes, distributed over the region, that perform majority voting of the output of the seismic sensors in the vicinity, and relay a message to a base station to alert the residents when an earthquake is detected. At the heart of the EEWS is a low-power two-stage seismic sensor that continuously tracks seismic events from incoming three-axis accelerometer signal at the first-stage, and, in the presence of a seismic event, triggers the second-stage P-wave detector that detects the onset of P-wave in an earthquake event. The parameters of the P-wave detector have been optimized for minimizing detection time and maximizing the accuracy of detection.Working of the sensor scheme has been verified with seven earthquakes data retrieved from IRIS. In all test cases, the scheme detected the onset of P-wave accurately. Also, it has been established that the P-wave onset detection time reduces linearly with the sampling rate. It has been verified with test data; the detection time for data sampled at 10Hz was around 2 seconds which reduced to 0.3 second for the data sampled at 100Hz.
机译:印度的东北,喜马拉雅山和东高止山脉地带由地震多发,偏远和丘陵地带组成。过去,地震已在这些地区造成了巨大破坏。为了减轻地震造成的破坏,正在开发基于无线传感器网络的地震预警系统(EEWS)。它由分布在区域中的传感器节点组成,这些传感器节点对附近的地震传感器的输出进行多数表决,并将消息中继到基站以在检测到地震时向居民发出警报。 EEWS的核心是低功率两级地震传感器,该传感器在第一阶段连续跟踪来自传入的三轴加速度计信号的地震事件,并在发生地震事件时触发第二阶段P地震检测器中检测P波开始的波检测器。对P波探测器的参数进行了优化,以最大程度地缩短探测时间并最大程度地提高探测精度。通过从IRIS检索到的七个地震数据验证了传感器方案的工作。在所有测试案例中,该方案都能准确地检测到P波的发生。而且,已经确定P波开始检测时间随采样率线性减小。已通过测试数据验证;以10Hz采样的数据的检测时间约为2秒,对于以100Hz采样的数据,检测时间缩短为0.3秒。

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