A Review of Power Harvesting from Vibration using Piezoelectric Materials

H. Sodano, D. Inman, G. Park
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引用次数: 1405

Abstract

The process of acquiring the energy surrounding a system and converting it into usable electrical energy is termed power harvesting. In the last few years, there has been a surge of research in the area of power harvesting. This increase in research has been brought on by the modern advances in wireless technology and low-power electronics such as microelectromechanical systems. The advances have allowed numerous doors to open for power harvesting systems in practical real-world applications. The use of piezoelectric materials to capitalize on the ambient vibrations surrounding a system is one method that has seen a dramatic rise in use for power harvesting. Piezoelectric materials have a crystalline structure that provides them with the ability to transform mechanical strain energy into electrical charge and, vice versa, to convert an applied electrical potential into mechanical strain. This property provides these materials with the ability to absorb mechanical energy from their surroundings, usually ambient vibration, and transform it into electrical energy that can be used to power other devices. While piezoelectric materials are the major method of harvesting energy, other methods do exist; for example, one of the conventional methods is the use of electromagnetic devices. In this paper we discuss the research that has been performed in the area of power harvesting, and the future goals that must be achieved for power harvesting systems to find their way into everyday use.
压电材料振动能量收集研究进展
获取系统周围的能量并将其转化为可用电能的过程称为能量收集。在过去的几年里,在能量收集领域的研究激增。这种研究的增加是由无线技术和低功耗电子设备(如微机电系统)的现代进步带来的。这些进步为电力收集系统在现实世界的实际应用打开了许多大门。利用压电材料来利用系统周围的环境振动,是一种在电力收集中使用急剧增加的方法。压电材料具有晶体结构,使其具有将机械应变能转化为电荷的能力,反之亦然,将外加电位转化为机械应变的能力。这种特性使这些材料能够从周围环境(通常是环境振动)中吸收机械能,并将其转化为电能,用于为其他设备供电。虽然压电材料是收集能量的主要方法,但也存在其他方法;例如,一种传统的方法是使用电磁设备。在本文中,我们讨论了在电力收集领域进行的研究,以及电力收集系统要进入日常使用必须实现的未来目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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