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Accuracy Improvement of Large Area Flexible Piezoresistive Digital Tactile Array Sensing System

机译:大面积柔性压阻数字触觉阵列传感系统的准确性改进

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Piezoresistive tactile array represent an important tool for pressure distribution analysis. Each site of the matrix acts as variable resistance whose value varies with normal force. A 16X16 array of fixed resistances has been realized to simulate the static response of 3.7X3.7cm~(2) size FSR tactile sensors to strain. Scanning the different sites was performed by a microcontroller-based circuitry. To eliminate leak current paths when selecting a site, this latter must be isolated from the resistance grid. In this study three different conditioning circuits have been tested in order to assess the measurement accuracy. Results have shown that accuracy is enhanced in the region of low R when using the isolating circuit in which the output voltage from a selected row is fed back to all columns except the one selected. On the other hand, the accuracy decreases as analog multiplexer Ron increases. At last, transient effects have been observed when scanning the array is conducted at high rate.
机译:压阻性触觉阵列代表压力分布分析的重要工具。矩阵的每个站点充当可变电阻,其值随着正常力而变化。已经实现了16x16的固定电阻阵列,以模拟3.7x3.7cm〜(2)尺寸的FSR触觉传感器的静态响应。通过基于微控制器的电路执行扫描不同的站点。为了消除在选择站点时消除漏电流路径,必须从电阻网格隔离后者。在这项研究中,已经测试了三种不同的调节电路以评估测量精度。结果表明,当使用隔离电路时,在低r的区域中提高精度,其中来自所选行的输出电压被反馈到除了选择之外的所有列之外的隔离电路。另一方面,随着模拟多路复用器RON的增加,精度降低。最后,在扫描阵列时,已经观察到瞬态效果以高速度进行。

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