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A method of resonant frequency optimized selection for a SP inductive coupled power transfer system

机译:一种用于SP电感耦合电力传输系统的谐振频率优化选择方法

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Inductive coupled power transfer (ICPT) is an emerging technology that may create new applications for wireless power charging. However, low efficiency is one of the main obstructing factors for promoting this technology. In this paper, a method of resonant frequency optimization based on resonant current calculation at the secondary side of the system is proposed to achieve higher efficiency. In order to research the influences of resonant frequency on system efficiency, the resonant current of the secondary side circuit is calculated, from which the phase shift angle between resonant current and voltage, and the conduction angle of diodes of rectifier can be obtained. Furthermore, a set of simulations are performed to find the optimized resonant frequency relationship between output power and the resonant current amplitude, because the copper loss and core loss of a loosely coupled transformer are all positively associated with resonant current. Finally, a 1.6 kW ICPT system is built and tested to verify the effectiveness of the proposed system. The results prove that the optimized resonant frequency can achieve a system efficiency of 92.5%, when that of a conventional system with a resonant frequency equal to the working frequency is 92%.
机译:电感耦合电源传输(ICPT)是一种新兴技术,可以为无线电力充电创造新的应用。然而,低效率是促进这项技术的主要阻碍因素之一。本文提出了一种基于系统次级侧的谐振电流计算的谐振频率优化方法,以实现更高的效率。为了研究谐振频率对系统效率的影响,计算次级侧电路的谐振电流,可以获得谐振电流和电压之间的相移角,以及整流器二极管的导通角。此外,执行一组模拟以找到输出功率和谐振电流幅度之间的优化谐振频率关系,因为松散耦合变压器的铜损和磁芯损耗都与谐振电流正相关。最后,建立并测试了1.6千瓦ICPT系统,以验证所提出的系统的有效性。结果证明优化的谐振频率可以实现92.5 %的系统效率,当具有等于工作频率的谐振频率的传统系统的系统效率为92 %。

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