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'random mechanical switching harvesting on inductor': A novel approach to collect and store energy from weak random vibrations with zero voltage threshold

机译:“电感器上的随机机械开关收集”:一种新颖的方法,用于收集和存储来自零电压阈值的弱随机振动的能量

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摘要

The ongoing efforts toward the reduction of device dimensions toward micro and nanoscale cannot be fully matched without a similar shrinkage in the dimensions of energy harvesting systems; the miniaturization of the renewable power source inevitably results in lower output power and, in particular, lower output voltage. It is mandatory, therefore, to face the problem of identifying suitable solutions for collecting and storing this energy. The problem is rendered more complicated by the fact that the very low output voltage prevents the use of standard solutions based on diode bridge rectifiers. In this paper we address the issue of harvesting and storing electrical power from random, weak, mechanical vibrations. The system we present is called "Random Mechanical Switching Harvester on Inductor" (RMSHI). It is composed of a piezoelectric vibrating element, an inductor, a diode bridge, a storage capacitor and a mechanical switch capable of switching in response to the same vibrational input whose kinetic energy is scavenged; hence no active element is required. Energy is transferred from the external source to a piezoelectric vibrational element and, hence, to the inductor and finally, when the mechanical switch opens, to the storage capacitor. The system has been analytically modeled and numerically simulated to verify the working principle; further, a laboratory prototype of the RMSHI circuit has been realized to experimentally demonstrate the validity of our approach.
机译:如果不对能量收集系统的尺寸进行类似的缩小,就无法将朝着减小器件尺寸的方向不断缩小以实现微米和纳米级的缩小。可再生电源的小型化不可避免地导致较低的输出功率,尤其是较低的输出电压。因此,必须面对识别用于收集和存储这种能量的合适解决方案的问题。由于非常低的输出电压阻止了使用基于二极管桥式整流器的标准解决方案,这一问题变得更加复杂。在本文中,我们解决了从随机,微弱的机械振动中收集和存储电能的问题。我们介绍的系统称为“电感上的随机机械开关收割机”(RMSHI)。它由一个压电振动元件,一个电感器,一个二极管桥,一个存储电容器和一个机械开关组成,该开关能够响应于清除了动能的同一振动输入而进行切换。因此不需要有源元件。能量从外部源传递到压电振动元件,进而传递到电感器,最后在机械开关断开时传递到存储电容器。该系统已经过分析建模和数值模拟,以验证工作原理;此外,已经实现了RMSHI电路的实验室原型,以通过实验证明我们的方法的有效性。

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