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A Concurrent Dual-Band Uneven Doherty Power Amplifier with Frequency-Dependent Input Power Division

机译:具有随频率变化的输入功率分配的并发双频不均匀Doherty功率放大器

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摘要

A concurrent dual-band uneven GaN Doherty power amplifier (PA) for two wide-spacing frequencies application is proposed in this paper. To avoid an early load modulation-drop caused by the soft turn-on characteristic of the peaking device, an adaptive power division is realized by a frequency-dependent uneven power divider as well as the input matching nonlinearities of the two cells in Doherty PA. Due to the adaptive power division, the proposed dual-band uneven Doherty PA achieves a power-added efficiency of 45% and 41% at the 6 dB backoff from the saturation at 850 MHz and 2330 MHz, respectively, the gain of the proposed Doherty PA is also enhanced to 19 dB and 13 dB in the dual bands. Furthermore, a more accurate two-dimensional joint digital predistortion model (2D-JDPD) is applied to linearize the PA and compensate for the in-phase and quadrature (I/Q) imbalance simultaneously. With this new model, the adjacent channel power ratio (ACPR) is improved to better than −47.1 dBc and −49.4 dBc in the lower and upper bands at an average output power of 31.75 dBm, and a drain efficiency of 26.7% is obtained at the same time.
机译:本文提出了一种同时用于两个宽频率频率的双频带不均匀GaN Doherty功率放大器(PA)。为了避免由调峰装置的软导通特性引起的早期负载调制下降,通过频率相关的不均匀功率分配器以及Doherty PA中两个单元的输入匹配非线性来实现自适应功率分配。由于自适应功率分配,建议的双频带不均匀Doherty PA从850 MHz和2330 MHz的饱和度分别在6 dB的补偿下实现了45%和41%的功率附加效率,即所提议的Doherty的增益在双频段中,PA也会增强到19 dB和13 dB。此外,更精确的二维联合数字预失真模型(2D-JDPD)用于线性化PA并同时补偿同相和正交(I / Q)不平衡。使用该新模型,在平均输出功率为31.75 dBm的情况下,在较低和较高频段中,相邻信道的功率比(ACPR)均提高到优于-47.1 dBc和-49.4 dBc,并且在26.7%的输出效率下,同一时间。

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