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Linear Equivalent Model for VHF Class Φ2 Inverter Based on Spectrum Quantification Method to Reduce GaN Reverse Conduction Loss

机译:基于频谱量化方法的VHF等级φ2逆变器线性等效模型降低GaN反向传导损耗

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摘要

Reverse conduction loss of GaN high electron mobility transistors (HEMTs) in very high frequency (VHF) converters is non-neglectable due to the absence of body diode. To reduce the reverse conduction time, this paper proposes a linear equivalent model for class $Phi _{2}$ inverter to derive optimal duty cycles for different working conditions. The proposed model is derived from frequency-domain perspective, which simplifies the derivation process and provides an intuitive physical insight for class $Phi _{2}$ inverter. Firstly, the power switch is modeled as a current source according to time-domain expressions of inductor current, which simplifies the circuit to a linear network. Based on quantitative analysis of the current source spectrum characteristics, the linear network response to the current excitation is derived, which forms the linear equivalent model. Then, drain voltage of the main switch under different working conditions is obtained. With the zero-crossing point of the drain voltage, numerical solutions of the optimal duty cycles are calculated. Finally, the optimal duty cycles are implemented with a high-resolution duty cycle generation circuit in a 27.12MHz prototype, which achieves not only a peak efficiency of 93.6% at full load, but also higher efficiency over the whole load and input voltage range compared to conventional fixed duty cycle.
机译:由于不存在体二极管,在非常高频(VHF)转换器中的GaN高电子迁移率(HEMT)的反向导通损耗是非忽略的。为了减少反向传导时间,本文提出了用于 PHI _ {2} $逆变器的线性等效模型,以导出不同的工作条件的最佳占空比。所提出的模型源自频域透视图,这简化了推导过程,并为类$ PHI _ {2} $逆变器提供直观的物理洞察力。首先,根据电感电流的时域表达式,电源开关建模为电流源,这简化了线性网络的电路。基于对电流源谱特性的定量分析,导出对电流激励的线性网络响应,从而形成线性等效模型。然后,获得了在不同的工作条件下的主开关的漏极电压。利用漏极电压的过零点,计算最佳占空比的数值解。最后,在27.12MHz原型中的高分辨率占空比产生电路实现了最佳占空比,这不仅在满载时达到93.6%的峰值效率,而且在整个负载和输入电压范围内的效率也更高传统的固定占空比。

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