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Position Control of Twisted and Coiled Polymer Actuator Using a Controlled Fan for Cooling

机译:使用可控风扇进行冷却的扭曲和盘绕聚合物执行器的位置控制

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Recently, artificial muscles made of fishing lines or sewing threads, namely twisted and coiled polymer actuators (TCPAs), have been proposed by Haines et al. A TCPA contracts by applying heat and returns to its initial length by cooling. A TCPA can be driven by voltage if the TCPA is plated by metal or if conductive wire such as nichrome is wound around it. Compared with the conventional electroactive polymers, advantages of TCPAs are low cost, simple structure, large actuation strain, and large force. However, a big disadvantage of TCPAs is slow response due to heat transfer. The problem becomes apparent during cooling, although the response of heating can be improved by feedback control. This paper proposes a control method of switching heating and cooling. In the proposed method, a TCPA is cooled by an electric cooling fan. When the TCPA is heating, the cooling fan is stopped. In a previous report, the response speed can be improved by keeping cooling fan always on; however, unnecessary energy consumption is required even during heating. In the proposed method, energy consumption during heating does not increase and the response speed can be improved using fan only during cooling. The proposed control law is as follows. Firstly, the desired control input is determined by PI-D control with respect to the length of the actuator. Then, the control inputs to the heater and to the cooling fan are switched according to the sign of the PI-D controller output. The effectiveness of the proposed control method is demonstrated by comparing the cases with and without the cooling fan in the experiments.
机译:最近,Haines等人提出了用钓线或缝纫线制成的人造肌肉,即扭曲和盘绕的聚合物致动器(TCPA)。 TCPA通过施加热量而收缩,并通过冷却返回其初始长度。如果TCPA镀有金属或将镍铬合金之类的导线缠绕在TCPA上,则可以通过电压来驱动TCPA。与传统的电活性聚合物相比,TCPA的优点是成本低,结构简单,驱动应变大,作用力大。但是,TCPA的一大缺点是由于传热导致响应速度慢。尽管可以通过反馈控制来改善加热的响应,但在冷却期间该问题变得很明显。本文提出了一种切换供热和制冷的控制方法。在提出的方法中,TCPA由电冷却风扇冷却。当TCPA加热时,冷却风扇停止运转。在以前的报告中,可以通过始终保持冷却风扇打开来提高响应速度。但是,即使在加热期间也需要不必要的能量消耗。在所提出的方法中,加热期间的能量消耗没有增加,并且仅在冷却期间可以使用风扇来提高响应速度。拟议的控制法如下。首先,相对于执行器的长度,通过PI-D控制确定所需的控制输入。然后,根据PI-D控制器输出的符号切换到加热器和冷却风扇的控制输入。通过比较实验中有无冷却风扇的情况,证明了所提出控制方法的有效性。

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