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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Reconfigurable and Concurrent Dual-Band Doherty Power Amplifier for Multiband and Multistandard Applications
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Reconfigurable and Concurrent Dual-Band Doherty Power Amplifier for Multiband and Multistandard Applications

机译:适用于多频带和多标准应用的可重构并发双频带Doherty功率放大器

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摘要

This paper proposes a design scheme of concurrent dual-band Doherty power amplifier (DPA) which can be reconfigured to two different pairs of concurrent dual bands for multiband and carrier aggregation applications. In addition to the reconfiguration of frequencies of operation, the output power back-off (OPBO) region for efficiency enhancement can also be reconfigured in this DPA. As a proof of concept, a reconfigurable and concurrent dual-band DPA is designed to operate at 1500 and 2140 MHz in the first concurrent dual band, whereas on reconfiguration it will operate concurrently at 1850 and 2350 MHz. While operating in the first concurrent dual band, the DPA has an enhanced efficiency region up to 6-dB OPBO level and, after reconfiguration to the second concurrent dual band, this region extend up to 9-dB OPBO level. The proposed DPA is tested using continuous wave (CW) signals in single mode as well as in concurrent mode. Measurement results using CWsignals in single mode reveal a drain efficiency of 52%–56% at 6-dB OPBO in the first concurrent dual band. Similarly, in the second concurrent dual band, a drain efficiency of 43%–48% is achieved at around 9-dB OPBO. The peak drain efficiency at saturation is better than 60% in all the four operating bands. The measured aggregated drain efficiencies are 49% and 44% in the first and second concurrent dual bands for 6 and 9 dB OPBO level, respectively. The measured carrier to the third-order intermodulation distortion is better than 17 dBc for all of the operating bands.
机译:本文提出了一种并发双频Doherty功率放大器(DPA)的设计方案,该方案可以重新配置为两对不同的并发双频对,以用于多频带和载波聚合应用。除了重新配置工作频率外,还可以在此DPA中重新配置用于提高效率的输出功率补偿(OPBO)区域。作为概念验证,可重新配置的并发双频DPA设计为在第一个并发双频下以1500和2140 MHz运行,而在重新配置时,它将在1850和2350 MHz并发运行。在第一个并发双频带中工作时,DPA具有高达6 dB OPBO电平的增强效率区域,在重新配置为第二个并发双频带后,该区域可扩展至9 dB OPBO电平。使用连续波(CW)信号以单模和并发模式对建议的DPA进行测试。在单模式下使用CWsignals的测量结果显示,在第一个并发双频段,在6 dB OPBO时的漏极效率为52%–56%。同样,在第二个同时出现的双频带中,OPBO约为9 dB时,其漏极效率为43%–48%。在所有四个工作频带中,饱和时的峰值漏极效率均优于60%。在第一个和第二个同时出现的双频带中,对于6 dB和9 dB OPBO电平,测得的总漏极效率分别为49%和44%。对于所有工作频带,测得的三阶互调失真载波均优于17 dBc。

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