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A Thermodynamically Consistent Port-Hamiltonian Model for Dielectric Elastomer Membrane Actuators and Generators

机译:用于介电弹性体膜致动器和发电机的热力学一致的端口 - 哈密米诺利模型

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This paper presents a port-Hamiltonian modeling formulation for a Dielectric Elastomer membrane. The model relates electrical and mechanical inputs to corresponding conjugate outputs, allowing to simulate the membrane transducer in actuation and energy harvesting application. Starting from a nonlinear, physics-based model developed in the authors' previous works, a suitable function is initially proposed to quantify the overall electro-mechanical energy in the system. Subsequently, a complete description in terms of Hamiltonian, dissipation function, and system matrices is provided. The port-Hamiltonian formalism permits to assess the thermodynamic consistency of the model, making it a reliable tool for the prediction of energetic performance in dynamic applications. Furthermore, it opens up the possibility of applying powerful nonlinear analysis and design tools.
机译:本文介绍了一种用于介电弹性体膜的汉密尔顿建模配方。该模型将电气和机械输入与相应的共轭输出相关,允许在致动和能量收集应用中模拟膜换能器。从非线性地,在作者之前的作品中开发的基于物理的模型,最初提出了一种合适的功能来量化系统中的整体电力能量。随后,提供了在汉密尔顿人,耗散函数和系统矩阵方面的完整描述。端口 - 哈密尔顿正式主义允许评估模型的热力学一致性,使其成为在动态应用中预测能量性能的可靠工具。此外,它开辟了应用强大的非线性分析和设计工具的可能性。

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