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Study on the Development of the Flexural Plate Wave(FPW) Accelerometer for the Continuous Damping Control System of an Automobile

机译:汽车连续阻尼控制系统弯曲板波(FPW)加速度计的研究

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Recently, as an automobile becomes more electronic and intelligent, MEMS (Micro Electro Mechanical System) sensors lead the technology and market of automotive sensor by overcome limitation of size, accuracy and reliability of mechanical sensors. Accelerometer, gyro, and pressure sensor are mainly studied MEMS sensor in the automobile field. Specially, intensification of safety regulation has increased the requirement and interest of the accelerometer. There are piezoelectric, piezoresistive, capacitive type in the sensing method of the accelerometer. Among these, piezoelectric method has high sensitivity feature with a simple manufacturing process. In this paper, we fabricated Flexural Plate Wave (FPW) accelerometer which sense frequency change of the vibrating piezoplate and found a optimum condition of the piezoplate shape and manufacturing condition to improve performances by using the design of experiment. Therefore, we altered the shape of the piezoplate to rectangular, bridge and bridge with mass structure and changed thickness of a piezoplate. We produced sensor assay with each of the conditions and measured sensitivity, non-linearity, noise, bias drift, cross-axis sensitivity and durability characteristics and then we conducted vehicle test with CDC system.
机译:最近,由于汽车变得更加电子和智能,MEMS(微电器机械系统)传感器通过克服机械传感器的尺寸,准确性和可靠性来引导汽车传感器的技术和市场。加速度计,陀螺和压力传感器主要研究了汽车领域的MEMS传感器。特别是,安全调节的强化增加了加速度计的要求和兴趣。加速度计的传感方法中有压电,压阻性,电容式类型。其中,压电方法具有高灵敏度特征,具有简单的制造过程。在本文中,我们制造了弯曲板波(FPW)加速度计,其检测振动压电板的频率变化,并发现压电板形状和制造条件的最佳条件,通过使用实验设计来改善性能。因此,我们改变了压电板的形状,以质量结构改变了质量结构的桥梁和压电板的厚度。我们用每个条件产生传感器测定和测量的灵敏度,非线性,噪声,偏置漂移,横轴灵敏度和耐久性特性,然后我们用CDC系统进行车辆测试。

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