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Circuit Analysis of Achievable Transmission Efficiency in an Overcoupled Region for Wireless Power Transfer Systems

机译:无线功率传输系统超耦合区域可达到的传输效率的电路分析

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On nonradiative wireless power transfer (WPT) using a pair of magnetically coupled resonators, we investigate the achievable transmission efficiency for a different set of resonators. Using a simplified equivalent circuit model, we analyze the phenomenon of frequency splitting mathematically in the overcoupled region ($k > k_{m {ref}}$). Even though the transmission efficiency tends to gradually decrease as the distance between the two resonators gets closer and closer in the overcoupled region, the transmission efficiency can be improved by tracking one of two separated frequency modes. Based on this observation, we prove mathematically that the achievable transmission efficiency at$k_{m {ref}}$is maintained almost constantly even when$k > k_{m {ref}}$if the identical resonators are used. In order to validate the accuracy of the analysis, we design and fabricate two types of magnetically coupled resonators: one is the set of identical resonators and the other is the set of nonidentical resonators. Through experiments in various environments, we show that the analytical results are in good agreement with the measured ones. Our work can provide an insight into design resonators for short-range WPT systems, in order to ensure better and stable performance.
机译:在使用一对磁耦合谐振器进行无辐射无线电力传输(WPT)时,我们研究了不同谐振器组可实现的传输效率。使用简化的等效电路模型,我们以数学方式分析了超耦合区域中的频率分裂现象( n $ k> k _ { rm {ref}} $ n)。即使随着两个谐振器之间的距离在过耦合区域中变得越来越近,传输效率趋于逐渐降低,也可以通过跟踪两个分离的频率模式之一来提高传输效率。基于此观察,我们在数学上证明 n $ k _ { rm {ref}} $ 即使 n $ k> k _ { rm {ref}} $ n(如果相同的谐振器)被使用。为了验证分析的准确性,我们设计和制造了两种类型的磁耦合谐振器:一种是一组相同的谐振器,另一种是一组不同的谐振器。通过在各种环境下进行的实验,我们表明分析结果与实测值吻合良好。我们的工作可以深入了解短距离WPT系统的设计谐振器,以确保更好和稳定的性能。

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