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Modeling of capacitive sensor filled with elastic dielectrics and its advantages

机译:充满弹性电介质的电容式传感器的建模及其优点

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Electrostriction phenomena and mathematical modeling in respect of capacitive sensor filled with elastic dielectric material have been described. A comparative theoretical analysis of the traditional air gap capacitive sensor with the electrostriction based solid-state capacitive sensor has been carried out thoroughly. Difficulties and limitations with air gap capacitive sensor are highlighted. Solid-state capacitive sensor with elastic dielectric material sandwiched between the compliant electrodes exhibits higher mechanical and electrical stability, sensitivity, higher tolerance with environment and withstands large load in comparison to the air gap capacitive sensor. An experimental setup with proper solution has been described for the measurement of relative capacitance variation. An alternative method of current-mode bridge has also been suggested for the purpose of sensing pressure and strain with high accuracy.
机译:已经描述了关于填充有弹性介电材料的电容传感器的电致伸缩现象和数学模型。彻底进行了传统气隙电容传感器与基于电致伸缩的固态电容传感器的比较理论分析。重点介绍了气隙电容传感器的困难和局限性。与气隙电容式传感器相比,在弹性电极之间夹有弹性介电材料的固态电容式传感器具有更高的机械和电气稳定性,灵敏度,对环境的耐受性,并承受较大的负载。已经描述了一种具有适当解决方案的实验装置,用于测量相对电容变化。为了高精度地检测压力和应变,还提出了一种电流模式电桥的替代方法。

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