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Comparison of E-Textile Techniques and Materials for 3D Gesture Sensor with Boosted Electrode Design

机译:具有增强电极设计的3D手势传感器的电子纺织技术和材料的比较

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摘要

There is an interest in new wearable solutions that can be directly worn on the curved human body or integrated into daily objects. Textiles offer properties that are suitable to be used as holders for electronics or sensors components. Many sensing technologies have been explored considering textiles substrates in combination with conductive materials in the last years. In this work, a novel solution of a gesture recognition touchless sensor is implemented with satisfactory results. Moreover, three manufacturing techniques have been considered as alternatives: screen-printing with conductive ink, embroidery with conductive thread and thermosealing with conductive fabric. The main critical parameters have been analyzed for each prototype including the sensitivity of the sensor, which is an important and specific parameter of this type of sensor. In addition, user validation has been performed, testing several gestures with different subjects. During the tests carried out, flick gestures obtained detection rates from 79% to 89% on average. Finally, in order to evaluate the stability and strength of the solutions, some tests have been performed to assess environmental variations and washability deteriorations. The obtained results are satisfactory regarding temperature and humidity variations. The washability tests revealed that, except for the screen-printing prototype, the sensors can be washed with minimum degradation.
机译:人们对新型可穿戴解决方案感兴趣,这些解决方案可以直接穿戴在弯曲的人体上或集成到日常用品中。纺织品具有适合用作电子或传感器组件支架的特性。近年来,已经探索了许多将纺织品基材与导电材料结合使用的传感技术。在这项工作中,实现了手势识别非接触式传感器的新颖解决方案,并获得了令人满意的结果。此外,已经考虑了三种制造技术:导电油墨的丝网印刷,导电线的刺绣和导电织物的热封。已对每个原型的主要关键参数进行了分析,包括传感器的灵敏度,这是此类传感器的重要且特定的参数。另外,已经执行了用户验证,测试了具有不同主题的多个手势。在进行测试的过程中,轻拂手势的检测率平均为79%至89%。最后,为了评估溶液的稳定性和强度,已经进行了一些测试以评估环境变化和可洗性的下降。关于温度和湿度变化,获得的结果令人满意。耐洗性测试表明,除了丝网印刷原型外,传感器的冲洗过程几乎不会造成降解。

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