Single-inductor multi-capacitor buck converter for high peak-to-average power envelope tracking

V. I. Kumar, A. Dey, S. Kapat
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引用次数: 2

Abstract

A linear power amplifier (PA) is used for powering high-bandwidth modulated signals with high peak-to-average power ratio (PAPR). The efficiency of a PA significantly degrades using a fixed supply voltage, and an envelope-tracking (ET) power supply remains an essential alternative for improving the energy efficiency. This paper shows that a single-inductor multi-capacitor (SIMC) buck converter-based ET power supply can (a) achieve ultra-wide bandwidth for high PAPR envelopes and (b) simultaneously improve the overall dynamic energy efficiency of both the PA and the power supply. The proposed architecture employs a hybrid combination of inductive switching buck based ET power supply along with a bank of multiple output capacitors. This hybrid architecture is helpful to trade-off between the bandwidth and the output voltage ripple in order to preserve the linearity of PA. A hardware prototype is made. The experimental results are demonstrated to justify the effectiveness of tracking high-bandwidth PAPR envelopes while simultaneously minimizing the PA losses for low frequency envelopes. The SIMC buck converter achieves more than 85 % efficiency with the 7.5 W peak power level.
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用于峰值-平均功率包络跟踪的单电感多电容降压变换器
线性功率放大器(PA)用于为具有高峰均功率比(PAPR)的高带宽调制信号提供功率。使用固定电源电压时,PA的效率显著降低,而包络跟踪(ET)电源仍然是提高能源效率的重要替代方案。本文表明,基于单电感多电容(SIMC)降压变换器的ET电源可以(a)实现高PAPR包络的超宽带,(b)同时提高PA和电源的整体动态能量效率。所提出的架构采用基于电感开关降压的ET电源和一组多个输出电容器的混合组合。这种混合结构有助于在带宽和输出电压纹波之间进行权衡,以保持增益放大器的线性度。制作了硬件样机。实验结果证明了跟踪高带宽PAPR包络的有效性,同时最小化了低频包络的PA损失。SIMC降压变换器的效率超过85%,峰值功率为7.5 W。
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