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Control-focused, nonlinear and time-varying modelling of dielectric elastomer actuators with frequency response analysis

机译:采用频率响应分析的介质弹性体执行器的控制聚焦,非线性和时变建模

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摘要

Current models of dielectric elastomer actuators (DEAs) are mostly constrained to first principal descriptions that are not well suited to the application of control design due to their computational complexity. In this work we describe an integrated framework for the identification of control focused, data driven and time-varying DEA models that allow advanced analysis of nonlinear system dynamics in the frequency-domain. Experimentally generated input–output data (voltage-displacement) was used to identify control-focused, nonlinear and time-varying dynamic models of a set of film-type DEAs. The model description used was the nonlinear autoregressive with exogenous input structure. Frequency response analysis of the DEA dynamics was performed using generalized frequency response functions, providing insight and a comparison into the time-varying dynamics across a set of DEA actuators. The results demonstrated that models identified within the presented framework provide a compact and accurate description of the system dynamics. The frequency response analysis revealed variation in the time-varying dynamic behaviour of DEAs fabricated to the same specifications. These results suggest that the modelling and analysis framework presented here is a potentially useful tool for future work in guiding DEA actuator design and fabrication for application domains such as soft robotics.
机译:介电弹性体致动器(DEA)的当前模型主要受限于第一原理描述,由于其计算复杂性,它们不十分适合控制设计的应用。在这项工作中,我们描述了一个用于识别控制重点,数据驱动和时变DEA模型的集成框架,该模型可以对频域中的非线性系统动力学进行高级分析。实验产生的输入输出数据(电压位移)用于识别一组薄膜型DEA的控制集中,非线性和时变动态模型。使用的模型描述是具有外生输入结构的非线性自回归。使用广义的频率响应函数对DEA动力学进行频率响应分析,从而深入了解和比较一组DEA执行器的时变动力学。结果表明,在提出的框架内确定的模型为系统动力学提供了紧凑而准确的描述。频率响应分析表明,按照相同规格制造的DEA的时变动态行为存在变化。这些结果表明,此处介绍的建模和分析框架对于将来在指导DEA执行器的设计和制造(例如软机器人)领域的应用方面可能是有用的工具。

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