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首页> 外文期刊>Journal of intelligent material systems and structures >The Effect of Non-linear Piezoelectric Coupling on Vibration-based Energy Harvesting
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The Effect of Non-linear Piezoelectric Coupling on Vibration-based Energy Harvesting

机译:非线性压电耦合对基于振动的能量收集的影响

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摘要

Advances in electronic and consumer technology are increasing the need for smaller, more efficient energy sources. Thus vibration-based energy harvesting, the scavenging of energy from existing ambient vibration sources and its conversion to useful electrical power, is becoming an increasingly attractive alternative to traditional power sources such as batteries. Energy harvesting devices have been developed based on a number of electromechanical coupling mechanisms and their design must be optimized to produce the maximum output for given environmental conditions. While the role of non-linearities in the components has been shown to be significant in terms of the overall device efficiency, few studies have systematically investigated their influence on the system performance. In this work the role of a non-linear piezoelectric relationship is considered on the performance of a vibration-based energy harvester. Using a Poincare-Lindstedt perturbation analysis the response of the harvesting system is approximated, including mechanical damping, stiffness non-linearities, and the above mentioned non-linear piezoelectric constitutive relationship. The predicted behavior is then compared against numerical simulations of the original system, focusing on the relationship between the power generated by the device, the ambient vibration characteristics, and the non-linearities in the system.
机译:电子和消费类技术的进步正在增加对更小,更高效的能源的需求。因此,基于振动的能量收集,从现有的周围振动源中清除能量并将其转换为有用的电力,正成为对诸如电池之类的传统电源越来越有吸引力的替代方案。已经基于许多机电耦合机制开发了能量收集装置,并且必须优化其设计以在给定的环境条件下产生最大的输出。尽管非线性在组件中的作用已显示出对整体设备效率的重要性,但很少有研究系统地研究它们对系统性能的影响。在这项工作中,在基于振动的能量收集器的性能上考虑了非线性压电关系的作用。使用Poincare-Lindstedt摄动分析,可以估算收割系统的响应,包括机械阻尼,刚度非线性和上述非线性压电本构关系。然后,将预测的行为与原始系统的数值模拟进行比较,重点是由设备产生的功率,环境振动特性和系统中的非线性之间的关系。

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