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首页> 外文期刊>Journal of Micromechanics and Microengineering >A modified analytical model to study the sensing performance of a flexible capacitive tactile sensor array
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A modified analytical model to study the sensing performance of a flexible capacitive tactile sensor array

机译:改进的分析模型,用于研究柔性电容式触觉传感器阵列的传感性能

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This paper presents a modified analytical model to study the sensing performance of a flexible capacitive tactile sensor array, which utilizes solid polydimethylsiloxane (PDMS) film as the dielectric layer. To predict the deformation of the sensing unit and capacitance changes, each sensing unit is simplified into a three-layer plate structure and divided into central, edge and corner regions. The plate structure and the three regions are studied by the general and modified models, respectively. For experimental validation, the capacitive tactile sensor array with 8 x 8 (= 64) sensing units is fabricated. Experiments are conducted by measuring the capacitance changes versus applied external forces and compared with the general and modified models' predictions. For the developed tactile sensor array, the sensitivity predicted by the modified analytical model is 1.25%/N, only 0.8% discrepancy from the experimental measurement. Results demonstrate that the modified analytical model can accurately predict the sensing performance of the sensor array and could be utilized for model-based optimal capacitive tactile sensor array design.
机译:本文提出了一种改进的分析模型,以研究利用固态聚二甲基硅氧烷(PDMS)膜作为介电层的柔性电容式触觉传感器阵列的传感性能。为了预测传感单元的变形和电容变化,每个传感单元都简化为三层板结构,并分为中心,边缘和角区域。通过通用模型和改进模型分别研究了板结构和三个区域。为了进行实验验证,制造了具有8 x 8(= 64)感应单元的电容式触觉传感器阵列。通过测量电容变化与施加的外力的关系进行实验,并与通用模型和修改后模型的预测进行比较。对于已开发的触觉传感器阵列,修改后的分析模型预测的灵敏度为1.25%/ N,与实验测量值仅相差0.8%。结果表明,改进的分析模型可以准确地预测传感器阵列的感测性能,并可用于基于模型的最佳电容式触觉传感器阵列设计。

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