用PZT压电传感器设计雨滴能量收集器

L. Fang, N. Kimpol, Muhammad Syahmi Bin Mohamed Motari, Junaidah Binti Ali Mohd Jobran, M. I. F. Bin Romli, Muhammad Zaid Bin Aihsan
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引用次数: 0

摘要

作为可再生能源的生态来源,降雨的可利用动能不容小觑,特别是在赤道的热带国家。利用压电换能器采集雨滴动能的研究近年来越来越受到人们的关注。根据马来西亚气象部门(MMD)的数据,马来西亚半岛的年平均降雨量为2420毫米,沙巴为2630毫米,沙捞越为3830毫米。根据马来西亚的年平均降雨量,该项目是不浪费能源的解决方案之一。雨滴是动能的一种来源,可以在不浪费能量的情况下加以利用。为了利用降雨,使用压电作为能量收集器可以将动能转化为电能。基于这一突出问题,本研究重点利用锆钛酸铅(PZT)压电机构从雨滴中收集动能并将其转化为电能。除此之外,本研究还对产生高效功率放大的最佳交流-直流(AC-DC)收集电路进行了仿真分析,并对整个雨滴能量收集系统的性能进行了评估。产生能量后,它将提供足够的电能,然后应用于低压电子设备。实验结果表明,在串并联配置组合下,压电器件的输出电压为0.236 V,输出电流为0.023 mA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing Raindrop Energy Harvester Using PZT Piezoelectric Transducer
As an ecological source of renewable energy, the available kinetic energy of rainfall is not trifling, especially in tropical countries at the equators. The research on the use of piezoelectric transducers to harvest raindrop kinetic energy is gaining more and more attention recently. According to the Malaysian Meteorological Department (MMD), the annual average rainfall is 2,420 mm for Peninsular Malaysia, 2,630 mm for Sabah, and 3,830 mm for Sarawak. With annual average rainfall in Malaysia, this project is one of the solutions without wasting energy sources. Raindrops are a source of kinetic energy that can be utilised without wasting the source. To utilize the rainfall, using piezoelectric as an energy harvester can convert kinetic energy into electrical energy. Based on the problem highlighted, this research focuses on using Lead Zirconate Titanate (PZT) piezoelectric mechanism which can harvest kinetic energy from raindrops and convert the kinetic energy into electrical energy. Other than that, this research also investigates the simulated analysis on the best type of alternating current to direct current (AC-DC) harvesting circuit to generate highly efficient power amplification and evaluate the performance of the whole raindrop energy harvester system. With energy generated, it will provide enough electric energy and then be applied for low voltage electronic devices. An experimental result shows that piezoelectric in a series-parallel configuration combination can produce an output voltage of 0.236 V and 0.023 mA for output current.
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