触觉传感器
电阻抗断层成像
人工智能
计算机科学
计算机视觉
波形
灵敏度(控制系统)
导电体
可穿戴计算机
声学
电阻抗
信号(编程语言)
模式识别(心理学)
电子工程
联轴节(管道)
相似性(几何)
执行机构
可穿戴技术
工程类
财产(哲学)
迭代重建
频道(广播)
领域(数学)
计算
钥匙(锁)
作者
Dong, Huazhi,Teng, Sihao,Han, Xu,Wu, Xiaopeng,Giorgio-Serchi, Francesco,Yang, Yunjie
摘要
This dataset is for publication "Optimized Lattice-Structured Flexible EIT Sensor for Tactile Reconstruction and Classification". ABSTRACT: Flexible electrical impedance tomography (EIT) offers a promising alternative to traditional tactile sensing approaches, enabling low-cost, scalable, and deformable sensor designs. Here, we propose an optimized lattice-structured flexible EIT tactile sensor incorporating a hydrogel-based conductive layer, systematically designed through three-dimensional coupling field simulations to optimize structural parameters for enhanced sensitivity and robustness. By tuning the lattice channel width and conductive layer thickness, we achieve significant improvements in tactile reconstruction quality and classification performance. Experimental results demonstrate high-quality tactile reconstruction with correlation coefficients up to 0.9275, peak signal-to-noise ratios reaching 29.0303 dB, and structural similarity indexes up to 0.9660, while maintaining low relative errors down to 0.3798. Furthermore, the optimized sensor accurately classifies 12 distinct tactile stimuli with an accuracy reaching 99.6%. These results highlight the potential of simulation-guided structural optimization for advancing flexible EIT-based tactile sensors toward practical applications in wearable systems, robotics, and human-machine interfaces.
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