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Piezoelectric transformer-based high conversion ratio interface for driving dielectric actuator in microrobotic applications

机译:基于压电变压器的高转换率接口,用于微杆菌应用中的介电致动器

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摘要

Dielectric actuators are utilized to convert electrical power into mechanical strain with considerable potential in microrobotic applications. However, critical challenges that need to be addressed include high-voltage interface with high conversion ratio, light weight, small size, and high power density. This study proposes a high piezoelectric transformer-based high conversion ratio interface that is integrated with a direct current/direct current high conversion ratio boost stage and a direct current/alternating current high-voltage driving stage. A piezoelectric transformer-based class-E zero voltage switching direct current/direct current interface is controlled by a hybrid pulse frequency modulation and pulse width modulation control strategies to obtain the desired high step-up ratio in the direct current/direct current stage. A half-bridge converter with special digital control algorithm in the direct current/alternating current stage is designed to convert high direct current voltage into arbitrary unipolar signal driving dielectric actuators. A prototype 23.3 g and 4W interface has been fabricated for experimental validation to verify its ability to drive a 1 kV input dielectric actuator at 5 Hz in microrobotic applications.
机译:介电致动器用于将电力转化为机械菌株,在微生物应用中具有相当大的电位。然而,需要解决的临界挑战包括具有高转化率,重量轻,体积小和高功率密度高的高压接口。本研究提出了一种基于高压电变压器的高转换比界面,其与直流/直流高转换比升压阶段和直流/交流的高压驱动级集成。基于压电变压器的类零电压切换直流/直流接口由混合脉冲频率调制和脉冲宽度调制控制策略控制,以在直流/直流级中获得所需的高升压比。具有特殊数字控制算法的半桥转换器在直流/交流级中设计成将高直流电压转换为任意单极信号驱动介质致动器。已经制造了一种原型23.3g和4W界面,用于实验验证,以验证其在微生物应用中以5 Hz驱动1kV输入介电致动器的能力。

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