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Design of Piezoresistive MEMS-Based Accelerometer for Integration with Wireless Sensing Unit for Structural Monitoring

机译:基于压阻MEMS的加速度计与无线传感单元集成用于结构监测的设计

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The use of advanced embedded system technologies such as microelectromechanical system (MEMS) sensors and wireless communications hold great promise for measuring the response of civil structures to ambient and external disturbances. In this paper, the design of a high-performance, planar piezoresistive MEMS accelerometer is discussed in detail. The piezoresistive accelerometer. possesses superior performance characteristics including low noise densities when measuring local structural responses characterized by high-frequency content. A low-cost wireless sensing unit, designed for automated structural monitoring, is utilized to record and wirelessly transmit measurements obtained by the piezoresistive accelerometer. To validate the performance of the wireless monitoring system including the interfaced piezoresistive accelerometer, a five degrees-of-freedom laboratory test structure is utilized.
机译:微机电系统(MEMS)传感器和无线通信等先进的嵌入式系统技术的使用为测量民用结构对环境和外部干扰的响应具有广阔的前景。在本文中,将详细讨论高性能平面压阻MEMS加速度计的设计。压阻式加速度计。在测量以高频成分为特征的局部结构响应时,具有卓越的性能特征,包括低噪声密度。设计用于自动化结构监测的低成本无线传感单元用于记录和无线传输由压阻式加速度计获得的测量值。为了验证包括接口压阻式加速度计在内的无线监控系统的性能,采用了五自由度实验室测试结构。

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