一种优化连续模谐波阻抗的宽带非对称多尔蒂功率放大器

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE journal of microwaves Pub Date : 2023-09-01 DOI:10.1109/JMW.2023.3307630
Alex Pitt;Gautam Jindal;Kevin Morris;Tommaso Cappello
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引用次数: 0

摘要

本文提出了一种非对称多尔蒂功率放大器(DPA)的设计方法,该方法在其工作带宽范围内实现了高的平均效率。结果表明,通过将连续模式与后匹配技术相结合,可以在保持宽带运行的同时实现优异的效率性能。分析了膝关节效应对J类模态和连续反F类模态有效势能效率的影响。然后,为载波PA提出了$2\text{nd}$和$3\text{rd}$谐波阻抗的最佳组合,可以最大限度地减少这种膝效应对效率性能的影响。此外,还展示了如何使用漏极电源来提高维持固有最佳负载的带宽。在此分析的基础上,提出了一个简单的迭代设计程序,该程序可以直接使用标准射频设计工具实现。然后在使用Wolfspeed CG2H40010F GaN HEMT的原型DPA的设计和制造中验证了该设计过程。实现的PA工作在2.1和3.2 GHz之间,峰值输出功率在43.9和44.5 dBm之间。在8 - 9db的回退时,PA的平均漏极效率高达64.7%。通过考虑具有9 dB峰均功率比(PAPR)的60 MHz LTE OFDM信号,对DPA进行了带和不带数字预失真(DPD)的测试。当DPD使能时,在2.1-3.2 GHz的带宽范围内,DPA的漏极效率为52.1-64.3,相邻信道功率比(ACPR)为- 42.2 - - 44.1 dB。
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A Broadband Asymmetrical Doherty Power Amplifier With Optimized Continuous Mode Harmonic Impedances
This article presents a design methodology for an asymmetrical Doherty Power Amplifier (DPA) which achieves a high average efficiency at back off across its operating bandwidth. It is shown that by combining continuous modes with post matching techniques, it is possible to achieve excellent efficiency performance whilst maintaining broadband operation. Analysis is provided on how the knee effect can reduce the effective potential efficiency of Class J and Continuous Inverse Class F modes. An optimum combination of $2\text{nd}$ and $3\text{rd}$ harmonic impedances is then proposed for the carrier PA which can minimise this knee effect impact on efficiency performance. Also, it is shown how the drain supply can be used to improve the bandwidth over which an intrinsic optimum load can be maintained. Based on this analysis, a simple iterative design procedure is then presented which can be directly implemented with standard RF design tools. This design procedure is then verified in the design and manufacture of a prototype DPA using the Wolfspeed CG2H40010F GaN HEMT. The realised PA operates between 2.1 and 3.2 GHz with a peak power output of between 43.9 and 44.5 dBm. The PA achieves a high average drain efficiency of 64.7 % at 8–9 dB of back off. The DPA has been tested with and without digital pre-distortion (DPD) by considering a 60 MHz LTE OFDM signal with 9 dB peak-to-average power ratio (PAPR). When DPD is enabled, the presented DPA achieves a drain efficiency of between 52.1–64.3 with an adjacent channel power ratio (ACPR) of between −42.2– −44.1 dB over the bandwidth of 2.1–3.2 GHz.
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10.70
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审稿时长
8 weeks
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Front Cover Table of Contents Introduction to the Fall 2024 Issue IEEE Microwave Theory and Technology Society Information Over-the-Air Phase Noise Spectral Density Measurement for FMCW Radar Sensors
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