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SIMULATION AND CONTROL DESIGN FOR SHAPE MEMORY ALLOY TORQUE TUBES

机译:形状记忆合金扭力管的仿真与控制设计

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Shape Memory Alloy (SMA) driven actuation devices offer the potential for dramatic improvements inflight vehicle performance. Such actuators are ideally suited for the light-weight, low-bandwidth, compact size requirements associated with small changes in the vehicle geometry to enhance performance. Over the last 10+ years SMA-based actuation concepts have been considered for use on commercial aircraft, military aircraft, rotor-craft, and spacecraft. Many of these actuation concepts are driven by twisting SMA tubes which are under variable shear loading. This work extends previous quasi-static modeling work to provide a time-domain coupled thermo-mechanical model for SMA torque tubes. The model includes states associated with the material and states associated with peripheral dynamic systems, such as the heater. Approaches for obtaining the key parameters required by the model directly from experimental data are then described. Steps for developing controllers using these models are then reviewed including linearization and linear quadratic regulator (LQR) based control synthesis. The controller is implemented and tested in closed-loop position tracking experiments. These are completed in a lab setting and the results indicate a robust (in terms of gain and phase margin) and high-performance (in terms of settling time) tracking controller. The complete sequence described in this work illustrates the potential of model based optimal control applied to Shape Memory Alloy torque tubes.
机译:形状记忆合金(SMA)驱动的致动装置具有极大改善飞行中车辆性能的潜力。这样的致动器非常适合与轻巧,低带宽,紧凑的尺寸要求相关联的车辆几何形状的微小变化,以提高性能。在过去的10多年中,基于SMA的驱动概念已被考虑用于商用飞机,军用飞机,旋翼飞行器和航天器。这些致动概念中有许多是通过在可变剪切载荷下扭曲SMA管来驱动的。这项工作扩展了先前的准静态建模工作,从而为SMA扭矩管提供了时域耦合的热机械模型。该模型包括与材料关联的状态和与诸如加热器之类的外围动态系统关联的状态。然后介绍了直接从实验数据中获取模型所需的关键参数的方法。然后回顾了使用这些模型开发控制器的步骤,包括基于线性化和线性二次调节器(LQR)的控制综合。该控制器是在闭环位置跟踪实验中实施和测试的。这些都是在实验室环境中完成的,结果表明,该控制器具有强大的(就增益和相位裕度而言)和高性能(就建立时间而言)跟踪控制器。在这项工作中描述的完整序列说明了将基于模型的最佳控制应用于Shape Memory Alloy扭矩管的潜力。

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