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Efficiently Amplified

机译:高效放大

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Modern wireless communication systems have evolved to support increasing numbers of subscribers and provide higher data rate services within the limited frequency resources. As part of this evolution, many transmitted signals in the new standards, such as WCDMA, long term evolution (LTE), and worldwide interoperability for microwave access (WiMAX), now utilize a high peak-to-average power ratio (PAPR) caused by complex modulation schemes, generating the rapid change in the magnitude of signal as shown in Figure 1(a). In particular, as depicted in Figure 1(b), the PAPRs of the signals exceed 9 dB at 0.01% level of complementary cumulative distribution function. Use of high PAPR signals result in the power amplifier (PA) operating at a large enough back-off to satisfy the stringent linearity requirement. However, in this region, efficiency of the PA is very low. To bolster low efficiency in the back-off region, various efficiency boosting techniques have been considered over time. Recently, due to high-efficiency capabilities [1]–[13], supply voltage modulated PAs, such as envelope elimination and restoration (EER), hybrid-EER (H-EER), and envelope tracking (ET) technique, have received a lot of attention. Excellent experimental results have been reported using the various device technologies and modulated signals, as summarized in Table 1.
机译:现代无线通信系统已经发展为支持越来越多的订户并在有限的频率资源内提供更高的数据速率服务。作为这种演进的一部分,许多新标准中的传输信号,例如WCDMA,长期演进(LTE)和全球微波接入互操作性(WiMAX),现在都利用了高峰均功率比(PAPR),通过复杂的调制方案,生成信号幅度的快速变化,如图1(a)所示。特别是,如图1(b)所示,信号的PAPR在互补累积分布函数的0.01%电平下超过9 dB。使用高PAPR信号会导致功率放大器(PA)在足够大的补偿量下工作,以满足严格的线性要求。然而,在该区域中,PA的效率非常低。为了支持退避区域中的低效率,随着时间的推移,已经考虑了各种效率提升技术。最近,由于高效能[1] – [13],已收到电源电压调制的功率放大器,例如包络消除和恢复(EER),混合EER(H-EER)和包络跟踪(ET)技术很多关注。表1总结了使用各种器件技术和调制信号获得的出色实验结果。

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    《Microwave Magazine, IEEE》 |2010年第5期|P.87-100|共14页
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