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Electromagnetic Energy Harvesting Using Full-Wave Rectification

机译:使用全波整流进行电磁能量收集

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This paper presents a new approach to realizing full-wave rectification for electromagnetic energy harvesting. Instead of using one antenna to feed one rectifier circuit, we propose utilizing two antennas connected to one rectifier to form a full-wave rectenna. This balanced configuration allows the received power to be rectified and transferred to a dc load between two antennas, making it very easy to channel the harvested power in rectenna arrays. The proposed concept is demonstrated in the microwave regime using an array of full-wave rectennas optimized for 2.45 GHz. The full-wave rectenna array is compared with an array of half-wave rectennas that occupy the same footprint and are optimized to maximize power absorption at the same frequency. Measurements showed that the proposed full-wave rectifier performed better than the half-wave rectifier and achieved 74% radiation-to-dc conversion efficiency. Here, without loss of generality, the proposed concept is demonstrated using T-matched dipole antennas at a specific frequency, but the concept can be applied to other antenna types and other frequencies.
机译:本文提出了一种实现全波整流的电磁能收集新方法。我们建议不使用一根天线为一个整流器电路供电,而是建议使用连接到一个整流器的两根天线来形成全波整流天线。这种平衡的配置允许对接收到的功率进行整流,并将其传输到两个天线之间的直流负载,从而非常容易在整流天线阵列中传输收集的功率。在微波状态下,使用针对2.45 GHz优化的全波整流天线阵列证明了提出的概念。将全波整流天线阵列与占据相同占用空间并经过优化以使相同频率下的功率吸收最大化的半波整流天线阵列进行比较。测量表明,所提出的全波整流器的性能优于半波整流器,并实现了74%的辐射-直流转换效率。这里,在不失一般性的情况下,使用在特定频率下的T匹配偶极子天线演示了所提出的概念,但是该概念可以应用于其他天线类型和其他频率。

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