Development of circuit solution and design of capacitive pressure sensor array for applied robotics

Konstantin Krestovnikov, A. Erashov, Аleksandr Bykov
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引用次数: 2

Abstract

This paper presents development of pressure sensor array with capacitance-type unit sensors, with scalable number of cells. Different assemblies of unit pressure sensors and their arrays were considered, their characteristics and fabrication methods were investigated. The structure of primary pressure transducer (PPT) array was presented; its operating principle of array was illustrated, calculated reference ratios were derived. The interface circuit, allowing to transform the changes in the primary transducer capacitance into voltage level variations, was proposed. A prototype sensor was implemented; the dependency of output signal power from the applied force was empirically obtained. In the range under 30 N it exhibited a linear pattern. The sensitivity of the array cells to the applied pressure is in the range 134.56..160.35. The measured drift of the output signals from the array cells after 10,000 loading cycles was 1.39%. For developed prototype of the pressure sensor array, based on the experimental data, the average signal-to-noise ratio over the cells was calculated, and equaled 63.47 dB. The proposed prototype was fabricated of easily available materials. It is relatively inexpensive and requires no fine-tuning of each individual cell. Capacitance-type operation type, compared to piezoresistive one, ensures greater stability of the output signal. The scalability and adjustability of cell parameters are achieved with layered sensor structure. The pressure sensor array, presented in this paper, can be utilized in various robotic systems.
应用机器人电容式压力传感器阵列电路方案的开发与设计
本文介绍了一种具有可扩展单元数目的电容式压力传感器阵列。考虑了不同的单元压力传感器组件及其阵列,研究了它们的特点和制作方法。介绍了一次压力传感器阵列的结构;阐述了其阵列工作原理,推导了计算参考比。提出了将初级换能器电容的变化转化为电压电平变化的接口电路。实现了传感器原型;经验地得到了输出信号功率与外力的依赖关系。在北纬30度以下呈线性分布。阵列单元对施加压力的灵敏度在134.56…160.35范围内。经过10,000个加载周期后,阵列单元输出信号的测量漂移为1.39%。对于研制成功的压力传感器阵列样机,根据实验数据计算了各单元的平均信噪比为63.47 dB。提出的原型是由容易获得的材料制成的。它相对便宜,不需要对每个单独的细胞进行微调。电容式操作方式,与压阻式相比,确保输出信号更稳定。采用分层传感器结构,实现了单元参数的可扩展性和可调节性。本文提出的压力传感器阵列可用于各种机器人系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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