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Design of envelope amplifier based on interleaved multiphase buck converter with minimum time control for RF application

机译:基于交错式多相降压转换器的包络放大器设计,用于RF应用,具有最小时间控制

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摘要

In this paper, an interleaved multiphase buck converter with minimum time control strategy for envelope amplifiers in high efficiency RF power amplifiers is proposed. The solution for the envelope amplifier is to combine the proposed converter with a linear regulator in series. High efficiency of envelope amplifier can be obtained through modulating the supply voltage of the linear regulator. Instead of tracking the envelope, the buck converter has discrete output voltage that corresponding to particular duty cycles which achieve total ripple cancellation. The transient model for minimum time control is explained, and the calculation of transient times that are pre-calculated and inserted into a lookup table is presented. The filter design trade-off that limits capability of envelope modulation is also discussed. The experimental results verify the fast voltage transient obtained with a 4-phase buck prototype.
机译:本文提出了一种具有最小时间控制策略的交错多相降压转换器,用于高效射频功率放大器的包络放大器。包络放大器的解决方案是将建议的转换器与线性稳压器串联。通过调制线性稳压器的电源电压,可以获得高效率的包络放大器。降压转换器具有跟踪特定占空比的离散输出电压,而不是跟踪包络,从而实现了总纹波消除。说明了用于最小时间控制的瞬态模型,并介绍了预先计算并插入到查找表中的瞬态时间的计算。还讨论了限制包络调制能力的滤波器设计折衷方案。实验结果验证了采用4相降压原型的快速瞬态电压。

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