Maximum Power Transfer in Electromagnetic Vibration Energy Harvesters driven by Non-Sinusoidal Vibrations

L. Costanzo, M. Vitelli
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引用次数: 1

Abstract

In this paper, the problem of the Maximum Power Extraction is discussed with reference to Resonant Electromagnetic Vibration Energy Harvesters driven by non-sinusoidal vibrations. It is well known that, in order to maximize the harvested power in case of purely sinusoidal vibrations, the Maximum Power Transfer Theorem must be exploited. Instead, in case of non-sinusoidal vibrations, the Nonlinear Dynamic Maximum Power Transfer Theorem must be exploited. An active power electronics AC/DC architecture is considered and two different control algorithms are proposed and discussed. They are respectively used for the implementation of the Maximum Power Transfer Theorem and of the Nonlinear Dynamic Maximum Power Transfer Theorem. The differences existing between the two proposed controls techniques in terms of performances and implementation complexity are discussed and analyzed with the help of suitable numerical simulations.
非正弦振动驱动的电磁振动能量采集器的最大功率传输
本文以非正弦振动驱动的谐振式电磁振动能量采集器为研究对象,讨论了其最大功率提取问题。众所周知,为了在纯正弦振动的情况下最大限度地获取功率,必须利用最大功率传递定理。相反,在非正弦振动的情况下,必须利用非线性动态最大功率传递定理。考虑了有源电力电子交流/直流结构,提出并讨论了两种不同的控制算法。它们分别用于实现最大功率转移定理和非线性动态最大功率转移定理。通过适当的数值模拟,讨论和分析了两种控制技术在性能和实现复杂性方面存在的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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