Power Imbalance Compensation of Parallel Combining Twin Class-E Inverters by DC Current Detection Fed Back to Gate-Signal Phase Control

S. Koyama, M. Mizutani, T. Ohira
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Abstract

This paper proposes compensation scheme to address the power imbalance in twin class-E inverters that allow the combination of radio frequency (RF) output power in parallel. We start with a single class-E inverter with DC current consumption and RF output current formulate in terms of load impedance. We apply the derived formula to twin class-E inverters coupled in parallel and show that an RF output power imbalance can be detected by observing the DC current imbalance. A circuit simulation shows that it is possible to compensate for this power imbalance by adjusting the gate-phase delay. The simulation also shows that this adjustment can be performed automatically by feeding the DC current difference back to the gate-phase shifters. We then use this feedback scheme in a prototype experiment that achieves 490 W output power at 6.78 MHz. We demonstrate the reduction of the DC current imbalance from 10.3% is successfully suppressed down to 0.3% or lower.
直流电流检测反馈到门信号相位控制的并联组合双e类逆变器功率不平衡补偿
针对双e类逆变器的功率不平衡问题,提出了一种允许射频输出功率并联组合的补偿方案。我们从一个e类逆变器开始,用负载阻抗来表示直流电流消耗和射频输出电流。我们将导出的公式应用于并联的双e类逆变器,通过观察直流电流不平衡可以检测射频输出功率不平衡。电路仿真表明,可以通过调节门相延迟来补偿这种功率不平衡。仿真还表明,通过将直流电流差反馈给门移相器,可以实现自动调节。然后,我们在一个原型实验中使用该反馈方案,在6.78 MHz下达到490 W的输出功率。我们证明了将直流电流不平衡从10.3%成功地抑制到0.3%或更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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