15*(3×3)压电阵列安装功率优化电路仿真

Karthikeyan P. Saravanan, Arulmozhiyal Ramaswamy
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摘要

该项目的主要动机是利用连续模式的DC-DC变换器来提高压电阵列的输出水平。许多国家从可再生能源中获得电力,因为可再生能源对环境的危害较小。总的来说,太阳能和风能的转换在可再生能源中起着积极的作用,但这两种能量转换过程都取决于地理位置和天气条件。动能在环境中以多种形式存在。动能的一个众所周知的例子是风能转换,但并不是所有地方都适用。其他动能转换也存在于我们的日常生活中。例子包括来自阶跃发电的压电和来自铁路的机械振动整流器。由于可用的动能和材料的机械结构,所有这些能量转换都不那么强大。因此,在这个项目中,我们将模拟一个具有升压变换器操作的压电阵列,以优化电压水平。利用MATLAB-SIMULINK平台对总能量转换过程进行建模和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Power Optimum circuits for 15*(3×3) Piezo Array Installation
The main motive of this project is to improve the output level of piezo arrays using a continuous mode of DC-DC converter. Many countries get their electrical energy from renewable sources because renewable sources are less harmful to the environment. In general, the conversion of solar and wind energy plays an energetic role in renewable energy sources, but both energy conversion processes depend on geographic location and weather conditions. Kinetic energy is available in many forms in the environment. One well-known example of kinetic energy is wind energy conversion but cannot be applied everywhere. Other kinetic energy conversions also present in our day-to-day life. Examples include piezoelectricity from step energy generation and mechanical vibration rectifiers [MVR] from railways. All of these energy conversions are less powerful due to the amount of kinetic energy available and the mechanical structure of the material. Therefore, in this project we will model a piezo array with boost converter operation to optimize voltage levels. Total energy conversion process modeled and verified by using MATLAB-SIMULINK platform.
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