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Design of an Array Bionic Vector Vibration sensor based on MEMS

机译:基于MEMS的阵列仿生矢量振动传感器设计

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摘要

In the process of a physical procedure,more than one vibration signals should be measured,whose value and frequency are in a wide range.Therefore,in such a situation,a single sensor can hardly meet the testing requirement.To solve this kind of problems,a kind of aligned array MEMS bionic vector vibration sensor is proposed.This aligned array vibration sensor consists of four micro-structure sensors and the testing ranges are 10g,100g,500g,and 1000g.On the basis of the mathematical model,the array sensing unit was simulated by ANSYS.The test was presented at last.The experiment results show that both the two direction of the aligned array vibration sensor have high sensitivity,good linearity and good output stability.The sensitivity of the X direction is 2.6134mv/g and Y is 2.5563mv/g,the linearity of X direction is 0.99991and Y is 0.99968.
机译:在物理过程中,应测量一个以上的振动信号,其值和频率范围很宽。因此,在这种情况下,单个传感器几乎无法满足测试要求。解决此类问题提出了一种对准阵列MEMS仿生矢量振动传感器。该对准阵列振动传感器由四个微结构传感器组成,测试范围为10g,100g,500g和1000g。在数学模型的基础上,该阵列ANSYS对传感单元进行了仿真,最后进行了测试。实验结果表明,对准阵列振动传感器的两个方向都具有较高的灵敏度,良好的线性度和良好的输出稳定性。X方向的灵敏度为2.6134mv / g,Y为2.5563mv / g,X方向的线性为0.99991,Y为0.99968。

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