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Surface Acoustic Wave (SAW) Vibration Sensors

机译:表面声波(SAW)振动传感器

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摘要

In the paper a feasibility study on the use of surface acoustic wave (SAW) vibration sensors for electronic warning systems is presented. The system is assembled from concatenated SAW vibration sensors based on a SAW delay line manufactured on a surface of a piezoelectric plate. Vibrations of the plate are transformed into electric signals that allow identification of the sensor and localization of a threat. The theoretical study of sensor vibrations leads us to the simple isotropic model with one degree of freedom. This model allowed an explicit description of the sensor plate movement and identification of the vibrating sensor. Analysis of frequency response of the ST-cut quartz sensor plate and a damping speed of its impulse response has been conducted. The analysis above was the basis to determine the ranges of parameters for vibrating plates to be useful in electronic warning systems. Generally, operation of electronic warning systems with SAW vibration sensors is based on the analysis of signal phase changes at the working frequency of delay line after being transmitted via two circuits of concatenated four-terminal networks. Frequencies of phase changes are equal to resonance frequencies of vibrating plates of sensors. The amplitude of these phase changes is proportional to the amplitude of vibrations of a sensor plate. Both pieces of information may be sent and recorded jointly by a simple electrical unit.
机译:本文提出了将声表面波振动传感器用于电子预警系统的可行性研究。该系统由串联的SAW振动传感器组装而成,这些传感器基于在压电板表面上制造的SAW延迟线。板的振动被转换成电信号,从而可以识别传感器并确定威胁的位置。传感器振动的理论研究将我们带到具有一个自由度的简单各向同性模型。该模型可以对传感器板的运动和振动传感器进行明确描述。已经对ST切割石英传感器板的频率响应及其脉冲响应的阻尼速度进行了分析。上面的分析是确定振动板的参数范围的基础,该振动板可用于电子警告系统。通常,带有声表面波振动传感器的电子警告系统的运行是基于对通过连接的四端网络的两个电路传输后在延迟线的工作频率处的信号相位变化的分析。相变的频率等于传感器振动板的共振频率。这些相位变化的幅度与传感器板的振动幅度成正比。两条信息都可以通过一个简单的电气单元一起发送和记录。

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