Oballe-Peinado Óscar, Vidal-Verdú Fernando, Sánchez-Durán José A, Castellanos-Ramos Julián, Hidalgo-López José A
Departamento de Electrónica, Universidad de Málaga, Andalucía Tech, Campus de Teatinos, Málaga 29071, Spain.
Instituto de Investigación Biomédica de Málaga (IBIMA), Málaga 29010, Spain.
Sensors (Basel). 2016 Feb 1;16(2):181. doi: 10.3390/s16020181.
Resistive sensor arrays are formed by a large number of individual sensors which are distributed in different ways. This paper proposes a direct connection between an FPGA and a resistive array distributed in M rows and N columns, without the need of analog-to-digital converters to obtain resistance values in the sensor and where the conditioning circuit is reduced to the use of a capacitor in each of the columns of the matrix. The circuit allows parallel measurements of the N resistors which form each of the rows of the array, eliminating the resistive crosstalk which is typical of these circuits. This is achieved by an addressing technique which does not require external elements to the FPGA. Although the typical resistive crosstalk between resistors which are measured simultaneously is eliminated, other elements that have an impact on the measurement of discharge times appear in the proposed architecture and, therefore, affect the uncertainty in resistance value measurements; these elements need to be studied. Finally, the performance of different calibration techniques is assessed experimentally on a discrete resistor array, obtaining for a new model of calibration, a maximum relative error of 0.066% in a range of resistor values which correspond to a tactile sensor.
电阻式传感器阵列由大量以不同方式分布的单个传感器组成。本文提出了一种在FPGA与以M行N列分布的电阻式阵列之间的直接连接方式,无需模数转换器来获取传感器中的电阻值,并且调节电路简化为在矩阵的每一列中使用一个电容器。该电路允许对构成阵列每行的N个电阻进行并行测量,消除了这类电路典型的电阻串扰。这是通过一种不需要FPGA外部元件的寻址技术实现的。尽管消除了同时测量的电阻之间典型的电阻串扰,但在所提出的架构中出现了其他影响放电时间测量的元件,因此影响了电阻值测量的不确定性;这些元件需要进行研究。最后,在一个分立电阻阵列上通过实验评估了不同校准技术的性能,对于一种新的校准模型,在对应于触觉传感器的电阻值范围内获得了0.066%的最大相对误差。