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Energy Recovery of the Linear Amplifier in the Parallel-Form Switch-Linear Hybrid Envelope Tracking Power Supply

机译:并联开关线性混合包络跟踪电源中线性放大器的能量回收

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Parallel-form switch-linear hybrid (SLH) envelope tracking (ET) power supply is composed of a current-controlled switched-mode converter (CSC) and a voltage-controlled linear amplifier (VLA) connected in parallel. When the bandwidth of the envelope signal is much larger than the tracking bandwidth of the CSC, it works as a quasi-constant current source, which requires the linear amplifier to compensate a large current and the overall efficiency is lowered. Especially when the current of CSC is larger than the load current, the redundant current will be absorbed and wasted by the VLA. This paper proposes to introduce a hysteresis voltage controlled boost converter to store the redundant energy provided by CSC and feedback to the system input. Then, a simulation platform is implemented with the specifications as 5 MHz tracking bandwidth, 8 V ~ 28 V output voltage and 20 W average output power. The simulation results verify the effectiveness of the proposed topology, and about 5% efficiency improvement can be achieved by adding the boost converter when tracking a single-tone sine wave.
机译:并联形式的开关线性混合(SLH)包络跟踪(ET)电源由并联的电流控制开关模式转换器(CSC)和电压控制线性放大器(VLA)组成。当包络信号的带宽远大于CSC的跟踪带宽时,它将用作准恒定电流源,这需要线性放大器补偿大电流,从而降低了整体效率。特别是当CSC的电流大于负载电流时,多余的电流将被VLA吸收和浪费。本文建议引入一个磁滞压控升压转换器,以存储CSC提供的冗余能量并反馈给系统输入。然后,实现一个仿真平台,其规格为5 MHz跟踪带宽,8 V〜28 V输出电压和20 W平均输出功率。仿真结果验证了所提出拓扑的有效性,在跟踪单音正弦波时,通过添加升压转换器,可以将效率提高约5%。

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