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首页> 外文期刊>Arabian Journal for Science and Engineering >Analysis of Wireless Power Transfer System with New Resonant Circuit for High Efficiency Using Perforated Capacitors
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Analysis of Wireless Power Transfer System with New Resonant Circuit for High Efficiency Using Perforated Capacitors

机译:带孔电容器的新型谐振电路无线功率传输系统高效分析

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摘要

In this paper a new resonant circuit model with perforated capacitor is developed to describe the wireless power transfer system (WPTs)-based inductive method. Since the compensation of leakages is necessary to improve efficiency, the effects of certain geometrical parameters are investigated for inductive power transfer (IPT) by considering distinct perforated capacitive for various dielectrics. Analysis of IPT system using this circuit model indicated that the efficiency is affected by the gap ratio as well as the hole size ratio and the number of holes along the section of perforated capacitor. The results show that the IPT system with the new resonant circuit can achieve a high efficiency over a range of operating conditions. At resonance condition, this approach provides a clear advantage due to the high efficiency related to the geometrical parameters of perforated capacitors. Both resonance frequencies and efficiency values are compared with respect to conventional method that use classical resonant circuit where the proper parameters are determined to maximize efficiency.
机译:本文提出了一种带孔电容器的新型谐振电路模型,以描述基于无线电力传输系统(WPT)的电感方法。由于必须进行泄漏补偿才能提高效率,因此通过考虑各种电介质的不同穿孔电容来研究某些几何参数对感应功率传输(IPT)的影响。使用该电路模型对IPT系统进行分析表明,效率受间隙比,孔尺寸比和沿穿孔电容器截面的孔数的影响。结果表明,具有新型谐振电路的IPT系统可以在一定范围的工作条件下实现高效率。在谐振条件下,由于与穿孔电容器的几何参数有关的高效率,该方法具有明显的优势。相对于使用经典谐振电路的常规方法比较了谐振频率和效率值,在传统方法中,确定了适当的参数以使效率最大化。

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