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A High Efficiency Asymmetric Doherty Power Amplifier Using Symmetric Devices for 5G Application

机译:使用对称设备的高效非对称Doherty功率放大器在5G应用中的应用

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In this paper, an Asymmetric Doherty Power Amplifier using Symmetric Devices (ADSD) is proposed for 5G base-station application to improve the back-off efficiency and bandwidth. In the proposed ADSD structure, the main and auxiliary elementary power amplifier (PA) are designed to achieve optimal back-off efficiency and saturated power, respectively. In this way, the overall performance can be improved while the drawbacks caused by utilizing asymmetric devices in conventional asymmetric Doherty Power Amplifier (DPA) are overcome. To verify the proposed theory and design method, an example 3.4-3.6GHz broadband ADSD is designed and fabricated using two 30-Watt transistors. According to the measured results, the ADSD exhibits 50.6%-57.3% Drain Efficiency (DE) at 6-dB power backoff and 54%-62% at saturation over the 200MHz designed bandwidth. Moreover, when stimulated using a 100MHz, 7.5 dB PAPR LTE signal at 3.5 GHz, the fabricated ADSD exhibits 45% average efficiency and 39 dBm output power after linearization while maintaining the Adjacent Channel Leakage Ratio (ACLR) below -47dBc.
机译:本文针对5G基站应用,提出了一种使用对称设备(ADSD)的非对称Doherty功率放大器,以提高补偿效率和带宽。在建议的ADSD结构中,主要和辅助基本功率放大器(PA)设计为分别实现最佳退避效率和饱和功率。这样,可以改善总体性能,同时克服了在传统的非对称多赫蒂功率放大器(DPA)中使用非对称器件所引起的缺点。为了验证所提出的理论和设计方法,使用两个30瓦晶体管设计并制造了示例3.4-3.6GHz宽带ADSD。根据测量结果,在200MHz设计带宽内,ADSD在6dB的功率回退下表现出50.6%-57.3%的漏极效率(DE),在饱和时表现出54%-62%的漏极效率。此外,当使用3.5 GHz的100MHz,7.5 dB PAPR LTE信号进行激励时,在线性化后,所制造的ADSD表现出45%的平均效率和39 dBm的输出功率,同时保持相邻信道泄漏比(ACLR)低于-47dBc。

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