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Analysis of driving force and exciting voltage for a bi-material infrared resonator

机译:双材料红外谐振器的驱动力和激励电压分析

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For a designed sensor with bi-material resonator which is used to detect infrared (IR) radiation by means of tracking the change in resonance frequency of the resonator with temperature attributed to the IR radiation from targets, in accordance with electromagnetic theory, the relationship between the electrical driving force exerted on the resonator and the exciting voltage applied across two electrodes of the capacitor in the sensor is presented. According to vibration theory, the dependence of the driving force on the exciting voltage is analyzed. The result of analysis is used to guide the vibration mode and frequency-amplitude response simulations of the resonator. The simulation value is approximately equal to the measured value, which demonstrates that the analysis result is effective and practicable.
机译:对于设计的带有双材料谐振器的传感器,根据电磁理论,该传感器用于通过跟踪谐振器的谐振频率的变化来检测红外辐射,该谐振器的温度归因于来自目标的红外辐射,温度之间的关系给出了施加在谐振器上的电驱动力以及施加在传感器中电容器两个电极之间的激励电压。根据振动理论,分析了驱动力对激励电压的依赖性。分析结果用于指导谐振器的振动模式和频率-幅度响应仿真。仿真值约等于实测值,说明分析结果是有效可行的。

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