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首页> 外文期刊>Mechanical systems and signal processing >Performance evaluation of a novel piezoelectric-based high-frequency surge-inducing synchronized switching strategy for micro-scale energy harvesting
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Performance evaluation of a novel piezoelectric-based high-frequency surge-inducing synchronized switching strategy for micro-scale energy harvesting

机译:新型基于压电的高频电涌诱导同步开关策略用于微尺度能量收集的性能评估

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摘要

Energy harvesting technology has recently received remarkable attention in line with progressive developments in low-power-consuming microsystems used in daily applications. In particular, piezoelectric elements have received considerable attention for promising energy harvesting systems because of their applicability and simplicity. In this study, a high-frequency surge-inducing synchronized switching (H-(SHI)-H-3) strategy that exploits the full potential of the surge phenomenon is proposed to effectively improve the energy harvesting efficiency of piezoelectric harvesters. Moreover, this strategy can guarantee the useable energy harvesting performance even for micro-scale vibrations. The effectiveness of the proposed switching strategy was demonstrated by performing numerical simulations and experiments with a cantilever-type piezoelectric harvester under sinusoidal and random-vibration conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着日常应用中低功耗微系统的不断发展,能量收集技术受到了极大的关注。特别地,压电元件由于其实用性和简单性而已被有前途的能量收集系统吸引了相当多的关注。在这项研究中,提出了一种利用电涌现象的全部潜能的高频电涌感应同步开关(H-(SHI)-H-3)策略,以有效提高压电收割机的能量收集效率。此外,即使微尺度振动,该策略也可以保证可用的能量收集性能。通过在正弦和随机振动条件下使用悬臂式压电收割机进行数值模拟和实验,证明了所提出的切换策略的有效性。 (C)2018 Elsevier Ltd.保留所有权利。

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