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Tracking Control of Shape-Memory-Alloy Actuators Based on Self-Sensing Feedback and Inverse Hysteresis Compensation

机译:基于自感应反馈和逆磁滞补偿的形状记忆合金驱动器跟踪控制

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摘要

Shape memory alloys (SMAs) offer a high power-to-weight ratio, large recovery strain, and low driving voltages, and have thus attracted considerable research attention. The difficulty of controlling SMA actuators arises from their highly nonlinear hysteresis and temperature dependence. This paper describes a combination of self-sensing and model-based control, where the model includes both the major and minor hysteresis loops as well as the thermodynamics effects. The self-sensing algorithm uses only the power width modulation (PWM) signal and requires no heavy equipment. The method can achieve high-accuracy servo control and is especially suitable for miniaturized applications.
机译:形状记忆合金(SMA)具有高的功率重量比,大的恢复应变和低的驱动电压,因此引起了相当大的研究关注。控制SMA执行器的困难源于其高度非线性的磁滞和温度依赖性。本文介绍了自感应和基于模型的控制的组合,其中模型包括主要和次要磁滞回线以及热力学效应。自感应算法仅使用功率宽度调制(PWM)信号,不需要笨重的设备。该方法可以实现高精度的伺服控制,特别适合于小型化应用。

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