首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Current Control Strategies for Parallel-Form Switch-Linear Hybrid Envelope Tracking Power Supply With Two Switched-Mode Converters to Achieve Optimal Power Allocation
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Current Control Strategies for Parallel-Form Switch-Linear Hybrid Envelope Tracking Power Supply With Two Switched-Mode Converters to Achieve Optimal Power Allocation

机译:具有两个开关模式转换器的并联形式开关线性混合包络跟踪电源的电流控制策略,以实现最佳功率分配

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Switch-linear hybrid (SLH) envelope tracking (ET) power supply is one of the mainstream structures for achieving both high efficiency and high bandwidth. When tracking a high bandwidth envelope signal, the overall efficiency of SLH ET power supply with the single switched-mode converter is limited. This paper adopts two switched-mode converters with different tracking bandwidths instead of the single switched-mode converter. The switched-mode converter with low tracking bandwidth is called slow switched-mode converter (SSMC), which aims for providing the low-frequency load current components with low slew rate; while the switched-mode converter with high tracking bandwidth is called fast switched-mode converter (FSMC), which copes with the high-frequency load current components with high slew rate. The rest load current components are processed by the linear amplifier. The class-A linear amplifier is employed for reducing the complexity of the circuits, which works as a voltage regulator that does not sink the load current. The SSMC provides the majority of the load current with low switching frequency. Thus, the switching loss of the SSMC is not high. The FSMC is operated at high switching frequency but provides the minority of the load current, and thus the switching loss of the FSMC is not high. The valley-point current control and peak current control with critical continuous current mode are proposed for the SSMC and FSMC, respectively, achieving the desired power allocation among the SSMC, FSMC, and the linear amplifier. Finally, a prototype is fabricated in the lab aiming for tracking a 10-MHz envelope signal and 20-W average output power. Experimental results are provided to verify the effectiveness of the proposed configuration and its current control strategies. The efficiency of the proposed SLH power supply is 77.0 & x0025;, a 4.5 & x0025; efficiency improvement compared with the SLH ET power supply with the single switched-mode converter.
机译:开关线性混合(SLH)包络跟踪(ET)电源是实现高效率和高带宽的主流结构之一。跟踪高带宽包络信号时,使用单个开关模式转换器的SLH ET电源的整体效率受到限制。本文采用具有不同跟踪带宽的两个开关模式转换器,而不是单个开关模式转换器。具有低跟踪带宽的开关模式转换器称为慢速开关模式转换器(SSMC),其目的是为低压负载电流分量提供低摆率。具有高跟踪带宽的开关模式转换器称为快速开关模式转换器(FSMC),它可以应对具有高摆率的高频负载电流分量。其余负载电流分量由线性放大器处理。采用A类线性放大器来降低电路的复杂性,该放大器用作不吸收负载电流的稳压器。 SSMC提供了低开关频率的大部分负载电流。因此,SSMC的开关损耗不高。 FSMC在高开关频率下运行,但提供的负载电流很小,因此FSMC的开关损耗不高。分别针对SSMC和FSMC提出了采用临界连续电流模式的谷点电流控制和峰值电流控制,以实现SSMC,FSMC和线性放大器之间的所需功率分配。最后,在实验室中制作了一个原型,旨在跟踪10MHz的包络信号和20W的平均输出功率。提供实验结果以验证所提出的配置及其当前控制策略的有效性。建议的SLH电源的效率为77.0&x00 ;; 4.5&x0025;。与带有单开关模式转换器的SLH ET电源相比,效率得到了提高。

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