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A Hybrid Digital Transmitter Architecture for High-Efficiency and High-Speed Applications

机译:一种用于高效率和高速应用的混合数字变送器架构

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A Quadrature/Polar hybrid digital transmitter architecture (HB-TX) is proposed in this paper, which consists of a main digital power amplifier (DPA), an auxiliary DPA, and a low-bit phase selector. In the proposed HB-TX, coarse polar modulation is realized by combining the main DPA and a low-bit selector, while a fine quadrature modulation is realized by the asymmetrical quadrature recombination of main and auxiliary DPAs in a small range. Through coarse and fine modulation, the HB-TX realizes fast signal modulation and does not require high-speed and high-resolution phase modulator. With the coarse polar modulation, the HB-TX achieves high efficiency which is close to that of polar transmitter and no longer suffers from 3 dB back-off. Since the asymmetry of two-path DPA arrays improves the isolation between two channels, local oscillators (LOs) with 50% duty cycle is employed to further improve the HB-TX’s efficiency. Simulation results show that the HB-TX with a 4-bit selector achieves 23.7-dBm peak output power with 39.2% peak power added efficiency (PAE). When modulating a 64-QAM signal with 80-Msym/s symbol rate and 6.5-dB peak average power rate (PAPR), the HB-TX improves the average drain efficiency from 16.3% (achieved in quadrature transmitter) to 22.2%. The average output power that is delivered by the HB-TX is 17.6-dBm with 17.4% average PAE, while the error vector magnitude (EVM) is -35.87 dB.
机译:本文提出了正交/极性混合数字发射器架构(HB-TX),由主数字功率放大器(DPA),辅助DPA和低位相位选择器组成。在所提出的HB-TX中,通过组合主DPA和低比特选择器来实现粗略极性调制,而通过在小范围内的主要和辅助DPA的不对称正交重组来实现细微正交调制。通过粗细和精细调制,HB-TX实现快速信号调制,不需要高速和高分辨率相位调制器。利用粗略的极性调制,HB-TX实现了接近极发射器的高效率,并且不再遭受3 dB的回退。由于双路DPA阵列的不对称性改善了两个通道之间的隔离,因此采用具有50%占空比的本地振荡器(LOS)来进一步提高HB-TX的效率。仿真结果表明,带有4位选择器的HB-TX实现了23.7-DBM峰值输出功率,达到39.2%的峰值功率效率(PAE)。当用80-msym / s符号速率和6.5 dB峰值平均功率(PAPR)调制64-QAM信号时,HB-TX将平均排水效率从16.3%(以正交变送器实现)提高至22.2%。 HB-TX传递的平均输出功率为17.6 dBm,平均PAE为17.4%,而误差矢量幅度(EVM)为-35.87 dB。

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