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首页> 外文期刊>Applied Energy >Toward a 0.33 W piezoelectric and electromagnetic hybrid energy harvester: Design, experimental studies and self-powered applications
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Toward a 0.33 W piezoelectric and electromagnetic hybrid energy harvester: Design, experimental studies and self-powered applications

机译:迈向0.33 W压电和电磁混合能量收集器:设计,实验研究和自供电应用

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摘要

In this paper, we present a 0.33W piezoelectric and electromagnetic hybrid energy harvester to tackle the problem of efficiently harnessing energy from low-frequency vibrations. Two types of transduction cores-one piezoelectric element and two sets of magnets and coils, are embedded into a compact design. Several techniques are employed to enhance the performance of the harvester. A pair of truss mechanisms are added into the system to amplify the strain of the piezoelectric element. A stopper is used to induce impact to take advantage of the frequency up conversion effect as well as nonlinearity. We used an array made of multiple small cubic magnets and alternative magnet arrangement rather than one magnet block, for abrupt magnetic flux density changes. Experimental results based on a fabricated prototype validate the proposed techniques that work collectively and enable the harvester to yield a maximum peak power more than 0.33W at resonance under an excitation of 0.70 g. We also examined the capability of the harvester for self-powered applications. The harvester displays excellent charging performance to millifarad or farad-scale capacitors. An LED array consisting of 99 diodes was lit up in real time. More importantly, experimental results indicate that not just can the harvester simultaneously power a temperature and humidity sensor, and a calculator, but also when the excitation stops, the remaining charges stored can power them for similar to 20.38 min and similar to 8.33 min, respectively. This study can be of great significance for high-performance energy harvesting and further development of self-powered sensing and battery-free electronic systems.
机译:在本文中,我们提出了一种0.33W的压电和电磁混合能量收集器,以解决有效利用低频振动能量的问题。紧凑型设计中嵌入了两种类型的换能芯:一个压电元件以及两组磁体和线圈。采用了几种技术来增强收割机的性能。在系统中添加了一对桁架机构,以放大压电元件的应变。限位器用于产生影响,以利用频率上变频效果和非线性。我们使用了由多个小立方磁体和其他磁体排列而不是一个磁体块组成的阵列,来实现突然的磁通密度变化。基于预制原型的实验结果验证了所提出的技术能够共同工作,并使收割机在0.70 g的激发下产生的最大峰值功率在共振时大于0.33W。我们还检查了收割机用于自供电应用的能力。该收割机对毫法拉或法拉规模的电容器表现出出色的充电性能。由99个二极管组成的LED阵列实时点亮。更重要的是,实验结果表明,不仅收割机可以同时为温度和湿度传感器和计算器供电,而且当激发停止时,存储的剩余电荷可以分别为它们供电约20.38分钟和8.33分钟。这项研究对于高性能能量收集以及进一步发展自供电传感和无电池电子系统具有重要意义。

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