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Effects of electrical loads containing non-resistive components on electromagnetic vibration energy harvester performance

机译:包含非电阻性组件的电气负载对电磁振动能量采集器性能的影响

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摘要

To further advance the existing knowledge base on rectified vibration energy harvester design, this study investigates the fundamental effects of electrical loads containing non-resistive components (e.g., rectifiers and capacitors) on electromagnetic energy harvester performance. Three types of electrical loads, namely (Ⅰ) a resistor with a rectifier, (Ⅱ) a resistor with a rectifier and a capacitor, and (Ⅲ) a simple charging circuit consisting of a rectifier and a capacitor, were considered. A linear electromagnetic energy harvester was used as an illustrative example. Results have verified that device performance obtained from pure-resistive loads cannot be generalized to applications involving rectifier and/or capacitor loads. Such generalization caused not only an overestimation in the maximum power delivered to the load resistance for cases (Ⅰ) and (Ⅱ), but also an underestimation of the optimal load resistance and an overestimation of device natural frequency for case (Ⅱ). Results obtained from case (Ⅱ) also showed that it is possible to tune the mechanical natural frequency of device using an adjustable regulating capacitor. For case (Ⅲ), it was found that a larger storing capacitor, with a low rectifier voltage drop, improves the performance of the electromagnetic harvester.
机译:为了进一步提高有关整流式振动能量收集器设计的现有知识,本研究调查了包含非电阻性组件(例如整流器和电容器)的电气负载对电磁能量收集器性能的基本影响。考虑了三种类型的电负载,即(Ⅰ)带整流器的电阻器,(Ⅱ)带整流器和电容器的电阻器,(Ⅲ)由整流器和电容器组成的简单充电电路。以线性电磁能量收集器为例。结果证明,从纯电阻负载获得的器件性能不能推广到涉及整流器和/或电容器负​​载的应用中。这种概括不仅导致案例(Ⅰ)和案例(Ⅱ)高估了传递给负载电阻的最大功率,而且导致案例(Ⅱ)的最优负载电阻的低估和器件固有频率的高估。从案例(Ⅱ)获得的结果还表明,可以使用可调调节电容器来调节设备的机械固有频率。对于情况(Ⅲ),发现较大的存储电容器具有较低的整流器压降,可改善电磁采集器的性能。

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