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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Wireless Power Transfer to Multiple Loads Over Various Distances Using Relay Resonators
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Wireless Power Transfer to Multiple Loads Over Various Distances Using Relay Resonators

机译:使用中继谐振器将无线功率传输到各种距离的多个负载

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摘要

Resonant wireless power transfer has attracted much attention in recent decades. In some practical applications such as wireless sensor networks, multiple-load transfer over various distances is required. In this letter, the intermediate-coil structure is utilized to transfer the same power to multiple loads over various distances, which indicates that the intermediate coils work both as relay resonators and as power receivers. The mathematical model is built and in-depth analysis is conducted. Four important factors, namely the source matching factor, the load matching factor, the transfer quality factor, and the reflected impedance factor, are employed to build the mathematical model of -load transfer. The conditions to transmit the same power to all the loads attached in each relay resonator are investigated. The optimal load resistance and the highest efficiency with the same load resistance are derived. The theoretical calculations and the experimental results of double-load and three-load transfer confirm the analysis.
机译:近几十年来,谐振无线功率传输已引起了广泛的关注。在诸如无线传感器网络的某些实际应用中,需要在各种距离上进行多负载传输。在这封信中,中间线圈结构用于在不同距离上将相同的功率传输到多个负载,这表明中间线圈既可以用作中继谐振器,也可以用作功率接收器。建立了数学模型并进行了深入分析。建立源匹配因子,负载匹配因子,传输质量因子和反射阻抗因子四个重要因素,建立负载转移的数学模型。研究了将相同功率传输到每个中继谐振器中所有负载的条件。得出最佳的负载电阻和具有相同负载电阻的最高效率。双负荷和三负荷传递的理论计算和实验结果证实了该分析。

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