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A morphing wing used shape memory alloy actuators new control technique with bi-positional and PI laws optimum combination: part 1, design phase

机译:变形机翼使用形状记忆合金致动器的新型控制技术,具有双向定位和PI律的最佳组合:第1部分,设计阶段

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摘要

The paper presents the design phase of the actuators control system development for a morphing wing application. Some smart materials, like Shape Memory Alloy (SMA), are used as actuators to modify the upper surface of the wing made of a flexible skin. The actuations lines control is designed and validated using a numerical simulation model developed in Matlab/Simulink. The finally adopted control law is a combination of a bi-positional law and a PI law; the control must behave like a switch between cooling phase and heating phase, situations where the output current is 0 A, or is controlled by a law of PI type. The PI controller, for the heating phase, is optimally tuned using the Ziegler-Nichols criterion and the linear model obtained using the System Identification Toolbox of Matlab. The controlled linearized system for heating phase is numerically tested in terms of time response, stability, controllability and the observability. In the actuation control design final phase, numerical simulations, based on SMA non-linear analytical model, were used for validation.
机译:本文介绍了用于变形机翼应用的执行器控制系统开发的设计阶段。一些智能材料(例如形状记忆合金(SMA))用作促动器,以修改由柔软蒙皮制成的机翼的上表面。使用在Matlab / Simulink中开发的数值仿真模型来设计和验证驱动线控制。最终采用的控制法则是双向法和PI法的结合。在输出电流为0 A或受PI类型定律控制的情况下,控制的行为必须像在冷却阶段和加热阶段之间进行切换一样。使用Ziegler-Nichols准则和使用Matlab的System Identification Toolbox获得的线性模型,可以最佳地调节加热阶段的PI控制器。在时间响应,稳定性,可控制性和可观察性方面,对加热阶段的受控线性化系统进行了数值测试。在执行控制设计的最后阶段,基于SMA非线性分析模型的数值模拟用于验证。

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