首页> 外文期刊>Smart Materials & Structures >Modeling of the effects of the electrical dynamics on the electromechanical response of a DEAP circular actuator with a mass-spring load
【24h】

Modeling of the effects of the electrical dynamics on the electromechanical response of a DEAP circular actuator with a mass-spring load

机译:电动力学对具有质量弹簧载荷的DEAP圆形执行器的机电响应的影响的建模

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents a modeling approach of an actuator system based on a dielectric electroactive polymer (DEAP) circular membrane mechanically loaded with a mass and a linear spring. The motion is generated by the deformation of the membrane caused by the electrostatic compressive force between two compliant electrodes applied on the surface of the polymer. A mass and a linear spring are used to pre-load the membrane, allowing stroke in the out-of-plane direction. The development of mathematical models which accurately describe the nonlinear coupling between electrical and mechanical dynamics is a fundamental step in order to design model-based, high-precision position control algorithms operating in high-frequency regimes (up to 150 Hz). The knowledge of the nonlinear electrical dynamics of the actuator driving circuit can be exploited during the control system design in order to achieve desirable features, such as higher modeling accuracy for high-frequency actuation, self-sensing or control energy minimization. This work proposes a physical model of the DEAP actuator system which couples both electrical and mechanical dynamics occurring during the actuation process. By means of numerous experiments, it is shown that the model can be used to predict both actuator current and displacement, and therefore to increase the overall displacement prediction accuracy with respect to actuator models which neglect electrical behavior.
机译:本文提出了一种执行器系统的建模方法,该执行器系统基于机械负载有质量块和线性弹簧的电介质(DEAP)圆形膜。该运动是由膜的变形产生的,该膜的变形是由施加在聚合物表面上的两个柔性电极之间的静电压缩力引起的。质量块和线性弹簧用于预加载膜,从而允许在平面外方向上进行冲程。准确描述电气和机械动力学之间的非线性耦合的数学模型的开发是设计基于模型的高精度位置控制算法(在高达150 Hz的频率下运行)的基本步骤。可以在控制系统设计过程中利用执行器驱动电路的非线性电动力学知识,以实现所需的功能,例如更高的建模精度(用于高频驱动,自感应或控制能量最小化)。这项工作提出了DEAP执行器系统的物理模型,该模型耦合了在执行过程中发生的电气和机械动力学。通过大量实验表明,该模型可用于预测执行器电流和位移,因此相对于忽略电性能的执行器模型,可提高整体位移预测精度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号