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Development of a High-Speed Current Injection and Voltage Measurement System for Electrical Impedance Tomography-Based Stretchable Sensors

机译:基于电阻层析成像的可拉伸传感器的高速电流注入和电压测量系统的开发

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Electrical impedance tomography (EIT) is an imaging method that can be applied over stretchable conductive-fabric materials to realize soft and wearable pressure sensors through current injections and voltage measurements at electrodes placed at the boundary of a conductive medium. In common EIT systems, the voltage data are serially measured by means of multiplexers, and are hence collected at slightly different times, which affects the real-time performance of the system. They also tend to have complicated hardware, which increases power consumption. In this paper, we present our design of a 16-electrode high-speed EIT system that simultaneously implements constant current injection and differential potential measurements. This leads to a faster, simpler-to-implement and less-noisy technique, when compared with traditional EIT approaches. Our system consists of a Howland current pump with two multiplexers for a constant DC current supply, and a data acquisition card. It guarantees a data collection rate of 78 frames/s. The results from our conductive stretchable fabric sensor show that the system successfully performs voltage data collection with a mean signal-to-noise ratio (SNR) of 55 dB, and a mean absolute deviation (MAD) of 0.5 mV. The power consumption can be brought down to 3 mW; therefore, it is suitable for battery-powered applications. Finally, pressure contacts over the sensor are properly reconstructed, thereby validating the efficiency of our EIT system for soft and stretchable sensor applications.
机译:电阻抗断层扫描(EIT)是一种成像方法,可应用于可拉伸的导电织物材料上,以通过在导电介质边界处的电极上进行电流注入和电压测量来实现柔软可穿戴的压力传感器。在普通的EIT系统中,电压数据是通过多路复用器串行测量的,因此在略微不同的时间收集电压数据,这会影响系统的实时性能。他们还倾向于使用复杂的硬件,这会增加功耗。在本文中,我们介绍了我们的16电极高速EIT系统的设计,该系统同时实现恒定电流注入和差分电势测量。与传统的EIT方法相比,这将导致更快,更易于实现且噪声更低的技术。我们的系统包括一个带有两个多路复用器的Howland电流泵,用于提供恒定的直流电流,还有一个数据采集卡。它保证了78帧/秒的数据收集速率。我们的导电性可拉伸织物传感器的结果表明,该系统成功执行了电压数据收集,平均信噪比(SNR)为55 dB,平均绝对偏差(MAD)为0.5 mV。功耗可降至3 mW;因此,它适用于电池供电的应用。最后,正确重建传感器上的压力接触,从而验证我们的EIT系统在柔软和可拉伸传感器应用中的效率。

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