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Energy harvesting based on piezoelectric ericsson cycles in a piezoceramic material

机译:压电陶瓷材料中基于压电爱立信循环的能量收集

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Energy harvesting has been studied with great interest in recent years. Ambient vibration is a potential energy resource for low-power devices or electronic devices in extreme/remote area. Methods on enhance the energy conversion amount has been long been a main subject in energy harvesting field. The present study developed a precise model working under hybrid of electrical and mechanical excitations in an Ericsson loop cycles which highly increases the converted energy. Consideration of the dynamic behavior of the nonlinearity of the piezoceramic under high amplitude excitation, the model gives precise prediction of energy conversion amount. This technique can be applied in both energy harvesting and monitoring area. Experiments have been done for different kinds of samples. Comparisons between energy conversion with or without the new coupling technique have been reported and it allows validating this new configuration.
机译:近年来,对能量收集的研究引起了极大的兴趣。对于极端/偏远地区的低功率设备或电子设备,环境振动是一种潜在的能源。长期以来,提高能量转换量的方法一直是能量收集领域的主要课题。本研究开发了一个精确模型,该模型在爱立信回路循环中的电气和机械激励混合作用下工作,从而大大提高了转换能量。考虑到高振幅激励下压电陶瓷非线性的动力学行为,该模型给出了能量转换量的精确预测。该技术可以应用于能量收集和监测领域。已经对不同种类的样品进行了实验。有或没有使用新的耦合技术的能量转换之间的比较已被报道,它可以验证这种新的配置。

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