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High-Efficiency Hybrid EER Transmitter Using Optimized Power Amplifier

机译:使用优化功率放大器的高效混合EER变送器

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This paper describes a new design approach for a power amplifier (PA) of the highly efficient hybrid envelope elimination and restoration (H-EER) transmitter. Since the PA operates mostly at the average power region of the modulation signal, power-added efficiency (PAE) of the PA at the average drain voltage is very important for the overall transmitter PAE. Accordingly, the PA is designed to have a maximum PAE in that region. The performances of the proposed PA and a conventional PA under H-EER operation are evaluated via ADS and MatLab simulations using a behavioral large-signal model of a silicon LDMOSFET, which verifies that the proposed PA has significant advantages for the H-EER transmitter in both PAE and output power. A saturated amplifier, inverse class F, has been implemented using a 5-W peak envelope power LDMOSFET for 3GPP forward-link single-carrier wideband code-division multiple-access at 1 GHz with a peak-to-average power ratio of 9.8 dB. An envelope amplifier is built that has an efficiency of above 68% and peak output voltage of 31 V for an interlock experiment. The overall PAE of the transmitter with a conventional PA is 35.5% at an output power of 29.2 dBm. On the other hand, the transmitter with the proposed PA delivers significantly improved performances: PAE increased by 4% and output power by 2.5 dB. The H-EER transmitter has been linearized by the digital feedback predistortion technique. The measured error vector magnitude is reduced to 1.47% from 6.4%. These results clearly show that the proposed architecture is a good candidate for efficient linear transmitters.
机译:本文介绍了一种用于高效混合包络消除和恢复(H-EER)发射机的功率放大器(PA)的新设计方法。由于PA主要在调制信号的平均功率范围内工作,因此PA在平均漏极电压下的功率附加效率(PAE)对于整个发射机PAE来说非常重要。因此,PA被设计为在该区域具有最大PAE。通过使用硅LDMOSFET的行为大信号模型的ADS和MatLab仿真评估了拟议的PA和常规PA在H-EER操作下的性能,这证明了拟议的PA在H-EER发射机中具有明显的优势。 PAE和输出功率。已经使用5W峰值包络功率LDMOSFET实现了饱和反放大器F,该功率放大器用于1GPP的3GPP前向链路单载波宽带码分多址,峰值平均功率比为9.8 dB 。建立了一个用于互锁实验的包络放大器,效率高于68%,峰值输出电压为31V。在29.2 dBm的输出功率下,具有常规PA的发射机的总PAE为35.5%。另一方面,带有建议的PA的发射机可显着改善性能:PAE增加4%,输出功率增加2.5 dB。 H-EER发射机已通过数字反馈预失真技术线性化。测得的误差矢量幅度从6.4%降至1.47%。这些结果清楚地表明,所提出的架构是高效线性发射机的理想选择。

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