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A review on energy harvesting approaches for renewable energies from ambient vibrations and acoustic waves using piezoelectricity

机译:使用压电的环境振动和声波可再生能源能量收集方法综述

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The principal objective of this article is to categorically review and compare the state of the art vibration based energy harvesting approaches. To evaluate the contemporary methodologies with respect to their physics, average power output and operational frequencies, systematically divided and easy readable tables are presented followed by the description of the energy harvesting methods. Energy harvesting is the process of obtaining electrical energy from the surrounding vibratory mechanical systems through an energy conversion method using smart structures, like, piezoelectric, electrostatic materials. Recent advancements in low power electronic gadgets, micro electro mechanical systems, and wireless sensors have significantly increased local power demand. In order to circumvent the energy demand; to allow limitless power supply, and to avoid chemical waste from conventional batteries, low power local energy harvesters are proposed for harvesting energy from different ambient energy sources. Piezoelectric materials have received tremendous interest in energy harvesting technology due to its unique ability to capitalize the ambient vibrations to generate electric potential. Their crystalline configuration allows the material to convert mechanical strain energy into electrical potential, and vice versa. This article discusses the various approaches in vibration based energy scavenging where piezoelectric materials are employed as the energy conversion medium.
机译:本文的主要目的是分类地审查并比较基于振动的能量收集方法的状态。为了评估对其物理学的当代方法,呈现平均功率输出和操作频率,系统地分开和易读表格,然后进行能量收集方法的描述。能量收集是通过使用智能结构,如压电,静电材料通过能量转换方法从周围振动机械系统获得电能的过程。低功率电子小工具,微电器机械系统和无线传感器的最新进展显着提高了本地电力需求。为了规避能量需求;为了允许无限的电源,并且为了避免传统电池的化学废物,提出了低功率局部能量收割机,用于从不同的环境能源收获能量。由于其独特的能力利用环境振动来产生电位,压电材料对能量收集技术的巨大兴趣。它们的晶体构造允许材料将机械应变能量转换成电势,反之亦然。本文讨论了基于振动的能量清除方法的各种方法,其中压电材料用作能量转换介质。

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