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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Modified Doherty Amplifier With Extended Bandwidth and Back-Off Power Range Using Optimized Peak Combining Current Ratio
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Modified Doherty Amplifier With Extended Bandwidth and Back-Off Power Range Using Optimized Peak Combining Current Ratio

机译:改进的Doherty放大器,具有优化的峰值组合电流比,具有扩展的带宽和后退功率范围

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In this paper, a novel modified Doherty power amplifier (DPA) that allows for extended output back-off (OBO) range, improved power utilization factor (PUF), and increased peak power over a broad bandwidth is proposed. It starts with an in-depth analysis of the modified DPA circuitry that first revealed the ability to control the impedances seen by the main transistor versus frequency by properly setting the magnitude and phase of the ratio between the peaks of the combining currents. This is then exploited to maximize the peak power and enhance the achievable bandwidth. Furthermore, a complex-to-real output matching network is incorporated in the auxiliary path and its parameters are carefully chosen to produce proper load modulation while satisfying the required peak combining current ratio. For validation purpose, a DPA prototype is designed to operate over the frequency range of 1.35–2.05 GHz with an OBO of 9 dB. Under the continuous-wave excitation, the DPA prototype maintained the drain efficiency (DE) of 52%–55% and 65%–75% at 9-dB OBO and peak power, respectively, over the entire targeted band. In addition, the measured peak power and PUF were about 42 dBm and higher than 0.9, respectively. The linearizability of the DPA prototype using digital predistortion (DPD) with memory was assessed while being driven with a 40-MHz carrier-aggregated signal with a peak-to-average power ratio of 8.9 dB and at an average output power of 33 dBm. When the carrier frequency is swept over the entire band, the measurement revealed an adjacent channel leakage ratio of better than −46.5 dBc after DPD with an average DE of 49.3%–53%.
机译:在本文中,提出了一种新颖的改进型Doherty功率放大器(DPA),它可以扩展输出退避(OBO)范围,提高功率利用率(PUF)并在较宽的带宽上增加峰值功率。首先对修改后的DPA电路进行深入分析,该分析首先揭示了通过适当设置组合电流峰值之间的比率的大小和相位来控制主晶体管相对于频率的阻抗的能力。然后利用它来最大化峰值功率并增强可达到的带宽。此外,在辅助路径中并入了一个复杂的到实际的输出匹配网络,并仔细选择其参数以产生适当的负载调制,同时满足所需的峰值组合电流比。出于验证目的,DPA原型设计为在1.35–2.05 GHz的频率范围内工作,且OBO为9 dB。在连续波激励下,在9dB OBO和峰值功率下,DPA原型在9dB OBO和峰值功率下分别保持52 %– 55 %和65 %– 75 %的漏极效率(DE)。整个目标乐队。此外,测得的峰值功率和PUF分别约为42 dBm和高于0.9。使用带有存储器的数字预失真(DPD)的DPA原型的线性化性能进行了评估,同时以40 MHz的载波聚合信号进行驱动,该信号的峰均功率比为8.9 dB,平均输出功率为33 dBm。当载波频率扫过整个频带时,测量结果表明,DPD后,相邻信道的泄漏比优于-46.5 dBc,平均DE为49.3 %– 53 %。

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