在强机电耦合和低振幅条件下,电感器上的浪涌诱导同步开关采集性能是一种高效技术

J. Onoda, K. Minesugi
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引用次数: 0

摘要

从环境源采集能量的过程是各种应用的关键。本研究考察了在强机电耦合条件下,浪涌感应同步开关采集(S3HI)系列中两种代表性技术的性能,并将其与一些成熟技术进行了比较。S3HI 技术利用浪涌电压克服整流器二极管的电压障碍和存储电容器电压。在之前对弱耦合系统的研究中,我们发现 S3HI 技术的一个特点是可以从低水平振动中获取大量能量。在某些使用情况下,这一特性是非常理想的。本研究旨在明确这一特性是否在强耦合时也适用。通过制定近似解析解以及进行数值模拟和实验,研究了各种成熟技术和 S3HI 小组两个代表的性能。结果证实,理论结果是一致的,实验结果与理论结果之间的差异很小。这些结果清楚地表明,即使耦合很强,S3HI 系列的技术也能有效地从小幅振动中获取大量能量。此外,当耦合较强时,S3HI 方法的性能优势更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of surge-induced synchronized switch harvesting on inductor as an efficient technique under strong electromechanical coupling and low amplitudes of vibration
The process of harvesting energy from ambient sources is key for various applications. This study examined the performance of two representative techniques from the surge-induced synchronized switch harvesting on inductor (S3HI) family under strong electromechanical coupling and compared this performance with that of some established techniques. S3HI techniques exploit the surge voltage to overcome the voltage barrier of diodes for rectifiers and storage capacitor voltages. One of their features, revealed in a previous study on weakly coupled systems, is that they can harvest substantial energy from low-level vibrations. This feature is desirable for certain use cases. This study aimed to clarify whether this feature is applicable even when the coupling is strong. The performance of various established techniques and two representatives from the S3HI group was studied by formulating an approximate analytical solution and performing numerical simulations and experiments. The theoretical results were confirmed to be consistent, and the discrepancy between experimental and theoretical results was minor. These results clearly demonstrate that the techniques from the S3HI family can effectively harvest substantial energy from small-amplitude vibrations, even when the coupling is strong. Moreover, the performance advantage of S3HI methods is even greater when the coupling is strong.
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