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首页> 外文期刊>IEICE Transactions on Electronics >A Study on Highly Efficient Dual-Input Power Amplifiers for Large PAPR Signals
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A Study on Highly Efficient Dual-Input Power Amplifiers for Large PAPR Signals

机译:大型PAPR信号高效双输入功率放大器的研究

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With the advent of 5G and external pressure to reduce greenhouse gas emissions, wireless transceivers with low power consumption are strongly desired for future cellular systems. At the same time, increased modulation order due to the evolution of cellular systems will force power amplifiers to operate at much larger output power back-off to prevent EVM degradation. This paper begins with an analysis of load modulation and asymmetrical Doherty amplifiers. Measurement results will show an apparent 60% efficiency plateau for modulated signals with a large peak-to-average power ratio (PAPR). To exceed this efficiency limitation, the second part of this paper focuses on a new amplification topology based on the amalgamation between Doherty and outphasing. Measurement results of the proposed Doherty-outphasing power amplifier (DOPA) will confirm the feasibility of the approach with a modulated efficiency greater than 70% measured at 10 dB output power back-off.
机译:随着5G和外部压力的出现,减少温室气体排放,对于未来的蜂窝系统,强烈希望具有低功耗的无线收发器。 同时,由于蜂窝系统的演化而增加的调制顺序将力功率放大器以更大的输出功率回电以防止EVM降级。 本文首先是对负载调制和不对称Doherty放大器的分析。 测量结果将显示出明显的60%效率高原,用于具有大峰平均功率比(PAPR)的调制信号。 要超出这种效率限制,本文的第二部分主要针对新的扩增拓扑,基于白痴和彼此之间的融合。 所提出的Doherty-outphising功率放大器(DOPA)的测量结果将在10 dB输出电源退缩时测量的调制效率大于70%的调制效率的方法。

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