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Integrated Sensing for IPMC Actuators Using Strain Gages for Underwater Applications

机译:IPMC执行器的集成传感,使用应变计在水下应用

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摘要

Ionic polymer–metal composite (IPMC) actuators have many advantages, for instance, they: 1) can be driven with low voltages ($ 5 V); 2) are soft, flexible, and easily shaped; and 3) can operate in an aqueous environment (such as water). Important applications for IPMCs include active catheter devices for minimally invasive surgery, artificial muscles, and sensors and actuators for biorobotics. Due to inherent nonlinear behavior, dynamic effects, and external disturbances, sensing and feedback control are required for precision operation. A new method to sense the displacement of an IPMC actuator using resistive strain gages is proposed. The sensing scheme is low cost, practical, effective, and importantly, compact compared to existing methods such as lasers and charge-coupled device (CCD) cameras. The strain-to-displacement relationship is developed and experimental results are presented to demonstrate the effectiveness of the sensing scheme. Furthermore, the sensor signal is used as feedback information in a repetitive controller to improve the tracking of periodic motion. The stability condition for the controller is presented, and the sensing scheme and feedback control approach are applied to a fabricated perfluorinated ion-exchange-membrane-based IPMC actuator with lithium as its counterion. Experimental results show that the tracking error can be reduced by approximately 50% compared to PID control for tracking of periodic signals, including sinusoidal and triangular wave forms.
机译:离子聚合物金属复合材料(IPMC)执行器具有许多优点,例如:1)可以低压($ 5 V)驱动; 2)柔软,有弹性且易于成型;和3)可以在水性环境(例如水)中运行。 IPMC的重要应用包括用于微创手术的有源导管设备,人造肌肉以及用于生物机器人的传感器和致动器。由于固有的非线性行为,动态影响和外部干扰,因此需要精确的传感和反馈控制。提出了一种使用电阻应变计感测IPMC执行器位移的新方法。与诸如激光和电荷耦合器件(CCD)相机之类的现有方法相比,该传感方案成本低,实用,有效且重要的是紧凑。建立了应变与位移的关系,并给出了实验结果以证明该传感方案的有效性。此外,传感器信号在重复控制器中用作反馈信息,以改善对周期性运动的跟踪。给出了控制器的稳定性条件,并将传感方案和反馈控制方法应用于以锂为反离子的全氟离子交换膜基IPMC致动器。实验结果表明,与用于周期性信号(包括正弦波和三角波)的PID控制相比,跟踪误差可减少约50%。

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