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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Control of Magnetic Shape Memory Actuators Using Observer-Based Inverse Hysteresis Approach
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Control of Magnetic Shape Memory Actuators Using Observer-Based Inverse Hysteresis Approach

机译:基于观察者的逆磁滞方法控制磁形状记忆致动器

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摘要

Magnetic shape memory (MSM) actuators belong to active material technologies with a high energy density and outstanding field-strain relation. Large-scale multivariate field-stress-strain hysteresis effects, however, antagonize their broad use because of the inherent difficulties with control. In this brief, we describe and compare experimentally several MSM control strategies, including the observer-based inverse hysteresis approach proposed in the previous works and combined here with a linear feedback controller by connecting both in parallel. For a prototypic MSM actuator with return spring, it is shown that the actuator plant can be approximated by an appropriate hysteresis operator and a linear transfer function of residual dynamics. The positioning profiles with a bandwidth 0.1–10 Hz and amplitudes between 0.01 and 0.1 mm have been evaluated by the experiments.
机译:磁形状记忆(MSM)执行器属于活性材料技术,具有高能量密度和出色的场-应变关系。然而,由于控制固有的困难,大规模的多场应力应变滞后效应使它们的广泛使用受到了限制。在本文中,我们描述并实验性地比较了几种MSM控制策略,包括先前工作中提出的基于观测器的逆磁滞方法,并在此通过并联将其与线性反馈控制器结合使用。对于具有复位弹簧的原型MSM执行器,表明执行器装置可以通过适当的磁滞算子和残余动力学的线性传递函数来近似。实验评估了带宽为0.1–10 Hz且幅度在0.01到0.1 mm之间的定位轮廓。

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