Analysis of Dielectric Electro Active Polymer actuator and its high voltage driving circuits

P. Thummala, Lina Huang, Zhe Zhang, M. A. E. Andersen
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引用次数: 11

Abstract

Actuators based on dielectric elastomers have promising applications in artificial muscles, space robotics, mechatronics, micro-air vehicles, pneumatic and electric automation technology, heating valves, loud speakers, tissue engineering, surgical tools, wind turbine flaps, toys, rotary motors, and grippers for material handling, etc. This paper focuses on the application of Dielectric Electro Active Polymer (DEAP) technology as an actuation mechanism for different applications. The DEAP material requires very high voltage (~2.5 kV DC) to fully utilize it as an actuator. In this paper the DEAP actuator is analyzed in detail and the actuator structures, for the wind turbine flap and the heating valve applications are shown. Different high voltage switch mode power supply topologies for driving the DEAP actuator are discussed. The simulation and experimental results are discussed.
介质电活性聚合物致动器及其高压驱动电路分析
基于介电弹性体的致动器在人造肌肉、空间机器人、机电一体化、微型飞行器、气动和电动自动化技术、加热阀、扬声器、组织工程、手术工具、风力涡轮机皮瓣、玩具、旋转电机和物料搬运夹具等方面有着广阔的应用前景。本文重点介绍了介质电活性聚合物(DEAP)技术作为驱动机构在不同应用中的应用。DEAP材料需要非常高的电压(~2.5 kV DC)才能充分利用它作为致动器。本文对DEAP作动器进行了详细的分析,给出了DEAP作动器在风力机襟翼和加热阀中的应用结构。讨论了驱动DEAP致动器的不同高压开关电源拓扑结构。对仿真结果和实验结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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