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Nonlinear modeling and control of hysteresis in active material systems

机译:活性物质系统中滞后的非线性建模与控制

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Active material actuators present a significant challenge to researchers interested in applying them to aerospace structures. Materials such as shape memory alloys, piezo-cerames and electrorheological fluids exhibit hysteresis to varying degrees. Not only do they exhibit hysteresis, but in some cases the hysteresis is non-stationary. We present a methodology that allows for design of controllers for the structural system from linear system theory. This is accomplished by compensating, or linearizing, the hysteresis nonlinearity using an adaptive model of hysteresis. Experimental results for adaptive control of shape memory alloy actuators with non-stationary hysteresis are provided.
机译:活跃材料执行器对有兴趣将其应用于航空航天结构的研究人员提供了重大挑战。诸如形状记忆合金,压电芯片和电风学流体的材料表现出滞后于不同程度。它们不仅表现出滞后,而且在某些情况下,滞后是非静止的。我们提出了一种方法,允许从线性系统理论设计用于结构系统的控制器。这是通过使用滞后模型来补偿或线性化,滞后非线性来实现的。提供了具有非静止滞后的形状记忆合金致动器的自适应控制的实验结果。

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