压电
能量收集
功勋
共振(粒子物理)
功率(物理)
机械能
材料科学
振动
机械共振
能量(信号处理)
电势能
光电子学
机械工程
电气工程
声学
物理
工程类
复合材料
粒子物理学
量子力学
作者
Hyun‐Cheol Song,Sun‐Woo Kim,Hyun Soo Kim,Dong‐Gyu Lee,Chong‐Yun Kang,Sahn Nahm
标识
DOI:10.1002/adma.202002208
摘要
Abstract Piezoelectric energy harvesters (PEHs) aim to generate sufficient power to operate targeting device from the limited ambient energy. PEH includes mechanical‐to‐mechanical, mechanical‐to‐electrical, and electrical‐to‐electrical energy conversions, which are related to PEH structures, materials, and circuits, respectively; these should be efficient for increasing the total power. This critical review focuses on PEH structures and materials associated with the two major energy conversions to improve PEH performance. First, the resonance tuning mechanisms for PEH structures maintaining continuous resonance, regardless of a change in the vibration frequency, are presented. Based on the manual tuning technique, the electrically‐ and mechanically‐driven self‐resonance tuning (SRT) techniques are introduced in detail. The representative SRT harvesters are summarized in terms of tunability, power consumption, and net power. Second, the figure‐of‐merits of the piezoelectric materials for output power are summarized based on the operating conditions, and optimal piezoelectric materials are suggested. Piezoelectric materials with large k ij , d ij , and g ij values are suitable for most PEHs, whereas those with large k ij and Q m values should be used for on‐resonance conditions, wherein the mechanical energy is directly supplied to the piezoelectric material. This comprehensive review provides insights for designing efficient structures and selection of proper piezoelectric materials for PEHs.
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