Development of a Nonlinear Harvesting Mechanism from Wide Band Vibrations

Md. Abdul Halim, M. Z. Hossain, Mst. Jesmin Nahar
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引用次数: 2

Abstract

The main objective of this study is to present an energy harvesting approach to scavenge electrical energy from mechanically vibrated piezoelectric materials.A mechanical energy harvester device has been developed and tested. The fundamental benefit of this mechanical device is that it can function effectively in a wide range of ambient vibration frequencies, whereas traditional harvesters are limited. A suitable conditioning circuit for energy scavenging has been proposed which can achieve optimal power stream. For controlling the power flow into the battery a circuit has been designed consisting of an AC to DC rectifier, an output capacitor, a switch mode DC to DC converter, and an electromechanical battery. An adaptive control system has been described for switching any electronics devices and maximizing battery storage capacity. Experimental results reveal that the power transfer rate can be enhanced by approximately 400% by utilizing the adaptive DC to DC converter. Various investigations on the piezoelectric harvester have revealed that the energy generated by the mechanical device can exceed the 1.4-volt barrier, which is suitable for charging capacitors in electronics devices. The findings of this study will be crucial in mitigating society's energy crisis.
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宽带振动非线性收获机构的研制
本研究的主要目的是提出一种能量收集方法,从机械振动的压电材料中清除电能。研制并试验了一种机械式能量收集装置。这种机械装置的基本优点是它可以在很宽的环境振动频率范围内有效地工作,而传统的收割机则受到限制。提出了一种合适的能量清除调节电路,以达到最优功率流。为了控制进入电池的功率流,设计了一个电路,由交流到直流整流器、输出电容器、开关模式DC到DC转换器和机电电池组成。一个自适应控制系统已被描述为开关任何电子设备和最大化电池存储容量。实验结果表明,采用自适应DC - DC变换器后,功率传输速率可提高约400%。对压电收割机的各种研究表明,机械装置产生的能量可以超过1.4伏的势垒,适用于电子设备中的充电电容器。这项研究的结果将对缓解社会的能源危机至关重要。
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