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A Multilevel Pulse-Modulated Polar Transmitter Based on a Doherty Power Amplifier and Memoryless Digital Predistortion

机译:基于Doherty功率放大器和无记忆数字预失真的多级脉冲调制极性发射器

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This letter presents an aliasing free multilevel pulse modulation (MLPM) architecture to implement a linear Doherty power amplifier (PA). This letter is believed to be the first reported results of this type of Doherty architecture to achieve linear amplification rather than the usual situation of a continuous amplitude modulated carrier and continuous load modulation. Our results show that both high efficiency and good linearization can be achieved with simple memoryless digital predistortion. Doherty operation with MLPM is believed to have benefits in linearization due to the MLPM discrete drive as less power is dissipated by the PA, leading to less thermal-related memory effects. A prototype transmitter system is constructed using a commercially available Doherty PA for validation. Measurements are performed using a 64-QAM long-term evolution (LTE) downlink signal at 2140 MHz with 20-MHz bandwidth. The overall system achieved an output power level of 40.1 dBm with a power-added efficiency of 39.5% while passing the -45-dBc downlink spectral requirements of the LTE standard.
机译:这封信介绍了一种用于实现线性Doherty功率放大器(PA)的无混叠自由多级脉冲调制(MLPM)架构。据信,这封信是这种Doherty体系结构实现线性放大的第一个报告结果,而不是连续幅度调制载波和连续负载调制的通常情况。我们的结果表明,利用简单的无记忆数字预失真可以同时实现高效率和良好的线性化。通过MLPM离散驱动器,由于PA耗散的功率更少,因此使用MLPM的Doherty操作被认为在线性化方面具有优势,从而减少了与热相关的存储效应。使用市售的Doherty PA构建原型发射机系统以进行验证。使用2140 MHz和20 MHz带宽的64-QAM长期演进(LTE)下行链路信号执行测量。整个系统达到了40.1 dBm的输出功率水平,功率附加效率为39.5%,同时符合LTE标准的-45-dBc下行链路频谱要求。

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