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首页> 外文期刊>IEEE Robotics and Automation Letters >Rotational Angle Control of a Twisted Polymeric Fiber Actuator by an Estimated Temperature Feedback
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Rotational Angle Control of a Twisted Polymeric Fiber Actuator by an Estimated Temperature Feedback

机译:估计温度反馈控制聚合物纤维加捻器的旋转角度

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A twisted polymeric fiber (TPF) actuator often referred to as a fishing line/sewing thread artificial muscle, is one of the soft actuators which is made by twisting and heating a nylon fishing line. There are mainly two types of the TPF actuator, one is to make a contraction motion, which is sometimes called a twisted and coiled polymeric fiber actuator, and the other is to make a rotational motion, called simply a TPF actuator. This letter focuses on the latter one and proposes an estimated temperature feedback control method to regulate a torsional angle of the TPF actuator. The TPF actuator is very lightweight and low cost, but the advantage would be lost if some external sensors, such as a thermal sensor or encoder is used. In order to control the torsional angle without the use of the external sensors, a temperature of the actuator is estimated by measuring the change in the Ohm resistance of a heater wrapping around the actuator. By feedbacking the estimated temperature, the torsional angle can be regulated indirectly. First, the two types of models are proposed. One is to derive a desired temperature of the actuator from the desired angle. The other is to estimate the actuator's temperature from a change of the resistance of the actuator's heater. Next, the temperature feedback control law is composed using these two models. Finally, experiments of the torsional angle regulation are conducted using a prototype of the actuation module, which consists of antagonistically embedded two TPF actuators to demonstrate the usefulness of the proposed controller.
机译:扭曲的聚合物纤维(TPF)执行器通常称为钓鱼线/缝纫线人造肌肉,是通过扭曲和加热尼龙钓鱼线制成的软执行器之一。 TPF执行器主要有两种,一种是做收缩运动,有时称为扭曲和盘绕的聚合物纤维执行器,另一种是做旋转运动,简称为TPF执行器。这封信的重点是后者,并提出了一种估计的温度反馈控制方法来调节TPF执行器的扭转角。 TPF执行器非常轻巧且成本低廉,但是如果使用某些外部传感器(例如热传感器或编码器),则会失去优势。为了在不使用外部传感器的情况下控制扭转角,通过测量围绕致动器的加热器的欧姆电阻的变化来估计致动器的温度。通过反馈估计的温度,可以间接调节扭转角。首先,提出了两种类型的模型。一种是从期望角度导出致动器的期望温度。另一种是根据致动器加热器的电阻变化来估计致动器的温度。接下来,使用这两个模型来构成温度反馈控制律。最后,使用致动模块的原型进行扭转角调节的实验,该模块由对立嵌入的两个TPF致动器组成,以证明所提出控制器的有用性。

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