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Load-independent Class EF inverters for inductive wireless power transfer

机译:与负载无关的EF类逆变器,用于感应无线电力传输

摘要

This paper will present the modelling, analysis and design of a load-independent Class EF inverter. This inverter is able to maintain zero-voltage switching (ZVS) operation and produce a constant output current for any load value without the need for tuning or replacement of components. The load-independent feature of this inverter is beneficial when used as the primary coil driver in multi megahertz high power inductive wireless power transfer (WPT) applications where the distance between the coils and the load are variable. The work here begins with the traditional load-dependent Class EF topology for inversion and then specifies the criteria that are required to be met in order achieve load-independence. The design and development of a 240W load-independent Class EF inverter to drive the primary coil of a 6.78MHz WPT system will be discussed and experimental results will be presented to show the load-independence feature when the distance between the coils of the WPT system changes.
机译:本文将介绍与负载无关的EF级逆变器的建模,分析和设计。该逆变器能够维持零电压开关(ZVS)操作,并针对任何负载值产生恒定的输出电流,而无需调整或更换组件。当在几兆赫兹大功率感应无线电力传输(WPT)应用中用作初级线圈驱动器时,该逆变器的负载独立特性是有益的,在这些应用中,线圈和负载之间的距离是可变的。此处的工作从用于反转的传统负载相关的EF类拓扑开始,然后指定实现负载独立所需满足的条件。讨论了用于驱动6.78MHz WPT系统初级线圈的240W独立于负载的EF级逆变器的设计和开发,并将给出实验结果以显示WPT系统的线圈之间的距离时的负载独立性变化。

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