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Compensation of Parameter-dependent Complex Hysteretic Actuator Nonlinearities In Smart Material Systems

机译:智能材料系统中依赖参数的复杂迟滞执行器非线性补偿

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In many mechatronic applications actuators which arc based on active materials are found and thus show a strong complex hysteretic output-input characteristic. A typical example is the hysteresis in actuators based on magnetostrictive materials. Unfortunately, especially in this case the hysteretic characteristic depends on a second input parameter, the mechanical stress in the material, which affects strongly the form of the hysteretic curves. In the best case these undesired effects lead to a reduced system perfomance and in the worst case to an unpredictable behavior of the superior control unit. Therefore, it is useful and effective to linearize these nonlinearities by a compensator which is also able to consider the dependence of the output on the second input. For this purpose this study describes the design of a compensator for parameter-dependent complex hysteretic nonlinearities which are based on a new so-called threshold-discrete formulation of the Preisach hysteresis operator. Finally, some experimental results are presented, which document the capability of the method for practical applications.
机译:在许多机电应用中,发现了基于活性材料的致动器,因此显示出强大的复杂磁滞输出-输入特性。一个典型的例子是基于磁致伸缩材料的执行器中的磁滞现象。不幸的是,尤其是在这种情况下,磁滞特性取决于第二输入参数,即材料中的机械应力,这会严重影响磁滞曲线的形式。在最好的情况下,这些不良影响会导致系统性能下降,而在最坏的情况下,则会导致上级控制单元的行为无法预测。因此,通过补偿器线性化这些非线性是有用且有效的,该补偿器还能够考虑输出对第二输入的依赖性。为此,本研究描述了一种基于参数的复杂磁滞非线性补偿器的设计,该补偿器基于Preisach磁滞算子的新的阈值离​​散公式。最后,给出了一些实验结果,证明了该方法在实际应用中的能力。

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