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Design and Experimental Verification of Flexible Plate-Type Piezoelectric Vibrator for Energy Harvesting System

机译:能量收集系统柔性板式压电振动器的设计与实验验证

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摘要

Piezoelectric systems are commonly utilized to transform mechanical vibrations to electrical energy that can be used to diverse power devices. In this work, it has been studied to improve the efficiency of a piezoelectric system with modification of the shape of a piezoelectric module and its vibration mode using analysis and experimental approaches. The basic shape of piezoelectric plate used in this work is width of 10 mm, length of 30 mm, and thickness of 0.2 mm. The structural design of a piezoelectric module is optimized to increase an electrical energy generation using a Taguchi factorial effect analysis method. The maximum terminal voltage was defined as a characteristic value to evaluate the optimal design parameters. Through this work, we have selected an optimal one among three designed different types of piezoelectric modules. And the optimal module shows that the output power was approximately 10 to 30% higher than other modules.
机译:压电系统通常用于将机械振动转换为可用于各种功率设备的电能。在这项工作中,已经通过分析和实验方法研究了通过改变压电模块的形状和振动模式来提高压电系统的效率。这项工作中使用的压电板的基本形状是宽度为10毫米,长度为30毫米,厚度为0.2毫米。使用Taguchi阶乘效应分析方法优化了压电模块的结构设计,以增加电能的产生。将最大端子电压定义为评估最佳设计参数的特征值。通过这项工作,我们从三种设计的不同类型的压电模块中选择了一种最佳。最佳模块显示输出功率比其他模块高大约10%至30%。

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