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Internal Array Electrodes Improve the Spatial Resolution of Soft Tactile Sensors Based on Electrical Resistance Tomography

机译:内部阵列电极基于电阻层析成像技术改善了软触觉传感器的空间分辨率

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Robots operating in unstructured environments would benefit from soft whole-body tactile sensors, but implementing such systems typically requires complex electrical wiring to a large number of sensing elements. The reconstruction method called electrical resistance tomography (ERT) has shown promising results (good coverage, manufacturability, and robustness) using electrodes located only along the boundary of the sensing region. However, relatively poor spatial resolution in the sensor's central region is a major drawback of the ERT approach. This paper introduces a new scheme of internal array electrodes to improve spatial resolution. We also systematically derive the optimal pairwise current injection patterns from a mathematical formulation of the ERT system. By highlighting the importance of each electrode pair, this approach enabled us to reduce the number of current injection patterns. Simulation of the standard and proposed sensor designs revealed that the internal array electrodes greatly improve distinguishability in the central region. For validation, a fabric-based soft tactile sensor made of multiple conductive fabrics was developed, including electronics that enable sampling at 200 Hz. During a 225-point localization test conducted without sensor-specific calibration, the constructed sensor showed average localization errors of 2.85 cm ± 1.02 cm. This result is notable because only 16 point electrodes were used to achieve this performance.
机译:在非结构化环境中运行的机器人会从柔软的全身式触觉传感器中受益,但是实现此类系统通常需要复杂的电线连接到大量的传感元件。使用仅位于传感区域边界的电极,称为电阻层析成像(ERT)的重建方法已显示出令人鼓舞的结果(良好的覆盖范围,可制造性和耐用性)。但是,传感器中心区域相对较差的空间分辨率是ERT方法的主要缺点。本文介绍了一种内部阵列电极的新方案,以提高空间分辨率。我们还从ERT系统的数学公式系统地得出了最佳的成对电流注入模式。通过强调每个电极对的重要性,这种方法使我们能够减少电流注入模式的数量。对标准传感器和建议的传感器设计的仿真显示,内部阵列电极大大提高了中央区域的可分辨性。为了进行验证,开发了一种由多种导电织物制成的基于织物的柔软触觉传感器,其中包括能够以200 Hz采样的电子器件。在不进行传感器特定校准的情况下进行的225点定位测试中,构建的传感器显示出2.85 cm±1.02 cm的平均定位误差。由于仅使用16个点电极来实现此性能,因此此结果显着。

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