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A model extended temperature and strain controller modulated with PWM for precision position control of shape memory alloy actuators

机译:通过PWM调制的模型扩展温度和应变控制器,用于形状记忆合金执行器的精确位置控制

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This paper presents a novel control strategy for precision position control of Shape Memory Alloy (SMA) actuators by using a combination of large and small signal controllers. The large signal controller, responsible for coarse positioning, is an NPID temperature controller that gets its desired temperature value online from a computationally efficient stress-strain and phase kinetics SMA model that accounts for time varying stresses. The small signal controller, responsible for fine positioning, is an NPID position (strain) controller. The control signals are modulated with PWM to generate a series of current pulses that heat the SMA. The control strategy is tested on an SMA wire, first, with various constant loads and then with varying loads. The results show robust and precise tracking control with exceptional disturbance rejection.
机译:本文提出了一种新颖的控制策略,通过结合使用大型和小型信号控制器,可以精确控制形状记忆合金(SMA)执行器的位置。大信号控制器负责粗略定位,是一个NPID温度控制器,可从计算时有效的应力应变和相动力学SMA模型在线获取其所需的温度值,该模型考虑了时变应力。负责精确定位的小信号控制器是NPID位置(应变)控制器。控制信号通过PWM进行调制,以生成一系列加热SMA的电流脉冲。首先在各种恒定负载下,然后在不同负载下,在SMA导线上测试控制策略。结果表明,鲁棒和精确的跟踪控制具有出色的干扰抑制能力。

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