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Bidirectional electrical tuning of FR4 based electromagnetic energy harvesters

机译:基于FR4的电磁能量收集器的双向电调谐

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We report the bidirectional electrical tuning of electromagnetic energy harvesters using two different complex load topologies: capacitive load to tune in the lower frequency range and inductive load to tune in the higher frequency range respectively. A theoretical model has been developed to address the bidirectional tuning capabilities using complex loads and the model has been successfully validated against the experimental results. Four electromagnetic harvesters with different spring configurations and thus operating at different frequencies have been developed on FR4 using laser micromachining technique and a comparison of their untuned output performances has been reported. Varying the load capacitance, the resonant frequency has been tuned up to almost 1.8 Hz for both prototype 1 and 2 and up to almost 0.16 Hz for prototype 3 and 4 in the lower frequency directions. Similarly, varying the load inductance, the resonant frequency has been tuned up to 0.6 Hz for prototype 1 and 2 and up to 0.13 Hz for prototype 3 and 4 in the higher frequency directions. This tuning comes with the reduction in the output power; however the comparative experimental study shows that the tuning range can be further widened by using devices with larger electromagnetic coupling values. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了使用两种不同的复杂负载拓扑结构的电磁能量收集器的双向电气调谐:分别在较低频率范围内进行调谐的容性负载和在较高频率范围内进行调谐的电感性负载。已经开发出理论模型来解决使用复杂负载的双向调谐功能,并且已经针对实验结果成功验证了该模型。已经使用激光微加工技术在FR4上开发了四个具有不同弹簧配置并因此以不同频率工作的电磁收割机,并且已报告了它们的未调节输出性能的比较。随着负载电容的变化,原型1和2的谐振频率已调至近1.8 Hz,原型3和4的谐振频率已调至近0.16 Hz。同样,通过改变负载电感,原型1和2的谐振频率已调至0.6 Hz,原型3和4的谐振频率已调至较高的频率。这种调节伴随着输出功率的降低。但是,对比实验研究表明,通过使用具有较大电磁耦合值的设备,可以进一步扩大调谐范围。 (C)2015 Elsevier B.V.保留所有权利。

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