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Active Sensing Methods of Ionic Polymer Metal Composite (IPMC): Comparative Study in Frequency Domain

机译:离子聚合物金属复合材料(IPMC)的主动传感方法:频域比较研究

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Ionic polymer-metal composites (IPMCs) are soft transducers that bend in response to low-voltage input, and generate voltage in response to deformations. Their potential applications include compliant locomotion systems, small-scale robotics, energy harvesting and biomedical instrumentation. The materials are inherently compliant, simple to shape, simple to miniaturize and simple to integrate into a system. Compared to actuation, IPMC sensing has not been intensively studied. The existing reports focus on the sensing phenomenon, but provide insufficient characterization for implementation purposes. This work aims to address this gap by studying and comparing the frequency responses and noise dynamics of different IPMC active sensing signals, i.e. voltage, charge and current. These characteristics are experimentally identified by mechanically exciting IPMC samples, and simultaneously measuring the respective signals and material deformations. The results provide a systematic comparison between different implementations of active sensing with IPMCs, and give insights into their strengths and limitations.
机译:离子聚合物金属复合材料(IPMC)是软传感器,可响应低压输入而弯曲,并响应变形而产生电压。它们的潜在应用包括兼容的运动系统,小型机器人,能量收集和生物医学仪器。这些材料具有固有的柔顺性,易于成型,易于小型化以及易于集成到系统中。与致动相比,尚未对IPMC传感进行深入研究。现有的报告集中于感测现象,但是没有提供足够的表征以用于实现目的。这项工作旨在通过研究和比较不同IPMC有源感应信号(即电压,电荷和电流)的频率响应和噪声动态来解决这一差距。通过机械激发IPMC样品并同时测量各自的信号和材料变形,可以通过实验确定这些特性。结果提供了使用IPMC的主动感应的不同实现之间的系统比较,并提供了其优势和局限性的见解。

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