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Energy Scavenging From Ambient Sources Based On Ferroelectric Materials

机译:基于铁电材料的环境能量清除

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This paper addresses the problem of piezoelectric conversion enhancement from mechanical to electrical energy and illustrates this improvement on vibration control and health monitoring applications. Considering a mechanical structure equipped with piezoelements, it can be shown that a non-linear processing (SSHI) of the piezoelement output voltage improves significantly the energy conversion. This non-linear processing simply corresponds to short-circuit the voltage for a brief period of time when the voltage reaches a maximum or minimum. Technically, a non-linear switch is added in parallel with the piezoelement, thus the piezovoltage, in front of the rectifier, increases and consequently more energy flows to the storage capacitance. The harvested energy is nine times higher than the standard approach. The influence of piezo-material characteristics will be described. Extension of the non-linear approach to harvesting in the pulse regime leads also to a performance increase specifically for low coupled structure which is mostly the case. After an overview of the basic principles, the presentation will go over new extensions of the SSHI approach to increase the output power, to make it independent of the resistive load or to minimize the voltage drop effect in the rectifier. The SSHI extension to heat harvesting will be also introduced.
机译:本文解决了从机械能到电能的压电转换增强问题,并说明了在振动控制和健康监测应用中的这种改进。考虑到配备压电元件的机械结构,可以证明,压电元件输出电压的非线性处理(SSHI)可显着改善能量转换。当电压达到最大值或最小值时,这种非线性处理仅相当于在短时间内使电压短路。从技术上讲,与压电元件并联添加了一个非线性开关,因此整流器前面的压电电压增加了,因此更多的能量流向了存储电容。所收集的能量是标准方法的九倍。将描述压电材料特性的影响。非线性方法扩展到脉冲状态下的采集也导致性能提高,特别是对于低耦合结构,这通常是这种情况。在基本原理概述之后,本演示将介绍SSHI方法的新扩展,以增加输出功率,使其独立于阻性负载或最小化整流器中的压降效应。还将介绍SSHI扩展到热量收集。

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