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首页> 外文期刊>Journal of intelligent material systems and structures >Sensorless Control of SMA-based Actuators Using Neural Networks
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Sensorless Control of SMA-based Actuators Using Neural Networks

机译:基于神经网络的基于SMA的执行器的无传感器控制

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The ability of shape memory alloys (SMA) to respond to an external stimulus by modifying their dimensions can be used to generate motion or force in electromechanical devices and micro-machines. It has been often demonstrated that SMA-based devices are serious alternatives to conventional micrometric actuators. We have previously demonstrated that, using a high-quality position sensor, such as a linear variable differential transformer (LVDT), to provide the position feedback, accuracies about 3 μm in position control can be obtained. In this work, we present an actuator prototype based in a SMA wire, conceived to be used in lightweight applications, where the bulky position sensor previously used is replaced with a lighter alternative. The most convenient one, and also the most challenging, is to use the wire's own resistance as a measure of its position, that is, to implement a sensorless control strategy. We propose to use a neural network to characterize the relation between the resistance of the wire and its strain and introduce this correspondence as the position feedback in a simple PID closed loop. The experimental results show that, in this way, accuracies about 70 μm can be obtained. The great advantage of this procedure is that the actuator is reduced to a single SMA element without any additional sensor, which is of great importance when the main goals are to reduce the overall weight, size, and cost of the actuator.
机译:形状记忆合金(SMA)通过修改尺寸来响应外部刺激的能力可用于在机电设备和微型机器中产生运动或作用力。经常证明基于SMA的设备是传统测微执行器的重要替代品。先前我们已经证明,使用高质量的位置传感器(例如线性可变差动变压器(LVDT))来提供位置反馈,可以获得大约3μm的位置控制精度。在这项工作中,我们介绍了一种基于SMA导线的执行器原型,该原型被认为可用于轻型应用,其中以前使用的笨重的位置传感器被更轻的替代品替代。最方便也是最具挑战性的方法是使用导线自身的电阻来衡量其位置,即实施无传感器控制策略。我们建议使用神经网络来表征导线电阻与其应变之间的关系,并将此对应关系作为位置反馈引入一个简单的PID闭环中。实验结果表明,以此方式可获得约70μm的精度。此过程的最大优点是将执行器减小为单个SMA元件,而无需任何其他传感器,这在主要目标是减少执行器的整体重量,尺寸和成本时非常重要。

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