用于自供电无线传感器节点和移动电子设备的高效低压直接AC/DC转换器

S. Dwari, L. Parsa
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引用次数: 25

摘要

在基于微型发电机的能量收集应用中,传统的电力电子变换器有两个阶段:二极管桥式整流器和DC-DC变换器。然而,在电磁微型发电机的情况下,由于微型发电机的输出电压极低,二极管桥式整流通常是不可行的。即使可能,二极管桥式整流器中的损耗也会使传统的电力电子接口效率低下。本文提出了两种直接的交流-直流电力电子转换器拓扑结构,用于高效和最大限度地从低压微型发电机中收集能量。所提出的单级变换器直接将微型发电机的低交流电压提升到可用的更高直流电压,从而实现更高的效率。单级交直流功率转换是利用mosfet的双向导通能力实现的。此外,利用所提出的变换器,可以通过控制提供给微型发电机的有效负载电阻来成功地实现最大能量收集。传统的功率变换器不利于实现这种控制。仿真和实验结果验证了所提出的变换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient low voltage direct AC/DC converters for self-powered wireless sensor nodes and mobile electronics
The conventional power electronics converters used in the microgenerator based energy harvesting applications have two stages: a diode bridge rectifier and a DC-DC converter. However, in the case of electromagnetic microgenerators, the diode bridge rectification is not normally feasible due to the extreme low output voltage of the microgenerators. Even if possible, the losses in the diode bridge rectifier make the conventional power electronic interfaces very inefficient. In this paper two direct ac-to-dc power electronics converter topologies are proposed for efficient and maximum energy harvesting from low voltage microgenerators. The proposed single stage converters directly boost the microgenerator low ac voltage to usable higher dc voltage, and hence, achieve higher efficiency. The single stage ac-to-dc power conversion is achieved by utilizing the bidirectional conduction capability of MOSFETs. Furthermore, with the proposed converters, the maximum energy harvesting can be successfully realized by controlling the effective load resistance offered to the microgenerators. The conventional power converters are not conducive for implementation of such control. Simulation and experimental results are presented for verification of the proposed converters.
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