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首页> 外文期刊>International Journal of Mechatronics and Manufacturing Systems >Model-based position control of shape memory alloy actuators
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Model-based position control of shape memory alloy actuators

机译:形状记忆合金执行器的基于模型的位置控制

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摘要

Shape-memory-alloys (SMAs) are easy to integrate into mechanical structures and capable of handling high specific workloads. Therefore, SMAs possess an outstanding potential to serve as positioning devices in various applications. We present here the multi-domain modelling of an electrically heated SMA wire which includes changes of electrical parameters in conjunction to mechanical parameters. Due to the correlation between electrical resistance and mechanical stroke, it was possible to implement a resistance-based position control without the necessity of an external positioning sensor. In order to design a linear position controller by common rules, the highly complex and non-linear model was simplified. Controller development yielded a PID algorithm that was implemented on a rapid prototyping system as part of an SMA wire test bench. The models accuracy was verified by various measurements with different wires and multiple loads. Based on that, it was possible to design an actuator which utilises a flexible socket instead of fixed mountings.
机译:形状记忆合金(SMA)易于集成到机械结构中,并能够处理高特定工作量。因此,SMA具有在各种应用中用作定位设备的巨大潜力。我们在这里介绍了电加热SMA线材的多域建模,其中包括电参数与机械参数的变化。由于电阻和机械行程之间的相关性,因此可以在无需外部定位传感器的情况下实现基于电阻的位置控制。为了通过通用规则设计线性位置控制器,简化了高度复杂的非线性模型。控制器的开发产生了一种PID算法,该算法在快速原型系统上作为SMA线测试台的一部分而实现。通过使用不同的导线和多个负载进行各种测量来验证模型的准确性。基于此,有可能设计出一种执行器,该执行器利用柔性插座而不是固定安装件。

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