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Design of high efficiency Doherty power amplifier applying power controlling technology with 15dB output power back-off

机译:高效电台功率放大器设计电源控制技术,15dB输出电源返回

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A novel method to design Doherty power amplifier (DPA) with promoted high efficiency performance in a very large output power back-off (OBO) is proposed in this paper. By reduce the variation range of the optimized output impedances of the carrier power amplifier (PA), the pit area in the efficiency carves are improved. Applying the nonlinearity of radio frequency schotty barrier diodes (SBDs), the convention power divider (PD) before DPA is replaced with a non-fixed power-split-ratio PD. Especially for very large OBO applications, when the carrier PA is chosen at a much smaller power level than the peak PA, the performance at the whole OBO could be promoted more apparently. For verification, a DPA with 15dB OBO was designed at the center frequency of 2.56GHz. The maximum measured drain efficiency (DE) at saturation output power 43.6dBm are over 77%, and achieved minimum DE of 58% during the whole 15dB OBO.
机译:本文提出了一种设计Doherty功率放大器(DPA)在非常大的输出功率下升高的高效率性能的新方法。通过降低载波功率放大器(PA)的优化输出阻抗的变化范围,提高了效率雕刻中的凹坑区域。在DPA替换为非固定功率分流比PD之前,应用射频舍略屏障二极管(SBD)的非线性,“公约”权力分配器(PD)。特别是对于非常大的OBO应用程序,当载波PA在比峰值PA更小的功率水平下选择时,可以更明显地促进整个OBO的性能。有关验证,具有15dB OBO的DPA设计为2.56GHz的中心频率。饱和输出功率的最大测量耗尽效率(DE)43.6dBm在整个15dB Obo期间实现了58×%的最小de。

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