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A three-port power electronic interface to harvest the maximum power in electromagnetic energy harvesting systems

机译:一个三端口电力电子接口,用于收集电磁能量收集系统中的最大功率

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In conventional electromagnetic energy harvesting systems, a two-port pulse-width-modulated ac/dc converter is utilized to process the harvested power. However, it is difficult to achieve voltage regulation and maximum-power-point tracking simultaneously. To resolve this issue, this paper proposes a three-port power-electronic-interface for this specific application. A battery is introduced to buffer the redundant energy in harvest mode. A bidirectional dc/dc converter is utilized to regulate the load side voltage. Thus, the regulations of power and voltage are fully decoupled, which makes it easier to trace the maximum-power-point. Moreover, when the harvester is in idle mode, the battery provides power to the load via the bidirectional dc/dc converter. A 10 mW rated converter prototype, which processes the power flow among a 0.6 V, 100 Hz ac source, a 1.2 V battery,and a 3.3 V constant voltage load is developed and tested. The proposed concept is validated by experimental results.
机译:在传统的电磁能量收集系统中,利用双端口脉冲宽度调制的AC / DC转换器来处理收获的功率。但是,难以同时实现电压调节和最大功率点跟踪。要解决此问题,本文提出了一个特定应用的三端口电源界面。引入电池以缓冲收获模式中的冗余能量。双向DC / DC转换器用于调节负载侧电压。因此,电力和电压的规定完全解耦,这使得追踪最大功率点更容易。此外,当收割机处于空闲模式时,电池通过双向DC / DC转换器向负载提供电力。一个10 MW额定转换器原型,它在0.6V,100 Hz AC源,1.2 V电池和3.3V恒定电压负载中处理电源流量,并进行测试。所提出的概念通过实验结果验证。

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