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Implementation and Validation of a Two-Stage Energy Extraction Circuit for a Self Sustained Asset-Tracking System

机译:一种自持续资产跟踪系统两级能量提取电路的实现与验证

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摘要

We present a two-stage energy extraction circuit for a piezoelectric energy harvester, powering an asset-tracking system. Exploiting accelerations generated by many logistic transport devices, e.g., pushcarts, forklifts, assembly belts or cars, we are able to harvest sufficient electrical energy to transmit radio signals, which will allow to track an object when it is moving. Accelerations in logistic applications are non-sinusoidal and lead to high open-circuit voltages, which demand a special adaption of the energy extraction network. We evaluate the performance of several state-of-the-art energy extraction networks and compare those to the performance of our two-stage approach under various excitation conditions. By using the proposed energy extraction circuit, the transmission rate could be increased from four to six transmissions per second for sinusoidal excitations with an open-circuit-voltage of 60V. In the practical use-case, the two-stage energy extraction network performs more than two times better compared to the one-stage and synchronized switching harvesting with inductor approach.
机译:我们为压电能量收割机提供了一种两级能量提取电路,供电跟踪系统。利用许多物流传输设备产生的加速,例如,按钮,叉车,装配带或汽车,我们能够收获足够的电能来传输无线电信号,这将允许在移动时跟踪物体。物流应用中的加速是非正弦的,导致高开路电压,需要采用能量提取网络的特殊适应。我们评估的国家的最先进的几种提取能量网络的性能和比较这些对我们的双级方法的各种激励条件下的性能。通过使用所提出的能量提取电路,对于具有60V的开路电压的正弦激励,透射率可以从每秒四到六个变速器增加。在实际用例中,与电感方法的单级和同步切换收获相比,两级能量提取网络更好地执行超过两倍以上。

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