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Outphasing multi-level RF-PWM signals for inter-band carrier aggregation in digital transmitters

机译:淘汰多电平RF-PWM信号以实现数字发射机中的带间载波聚合

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A novel non-contiguous concurrent multi-band digital-RF transmitter architecture is presented, which is based on outphasing the multi-level RF pulse-width modulated signals (MLRF-PWM) for digital Class-S power amplifiers. In order to improve the transmitter power efficiency, the outphasing modulation in the proposed architecture effectively increases the number of MLRF-PWM signal output levels. In addition, a multi-band multi-bit band-pass delta-sigma modulator (BPDSM) with a hard clipping technique is introduced, which further improves power coding efficiency by trading off distortion performance with coding efficiency. Experimental results with a dual-channel 25-GSPS arbitrary waveform generator (AWG) demonstrate non-contiguous carrier aggregation for 3-level Class-S PAs with inter-band LTE signals at 874 MHz and 1501 MHz for the channel bandwidth of 10-MHz and 20-MHz, respectively. The proposed outphasing MLRF-PWM technique achieves 59.5% power coding efficiency, which is significant improvement from the 8.6% coding efficiency of conventional 3-level BPDSM with the experimental dual-band LTE signal transmission.
机译:提出了一种新颖的非连续并发多频段数字RF发射机架构,该架构基于淘汰了数字S类功率放大器的多级RF脉宽调制信号(MLRF-PWM)。为了提高发射机的功率效率,提出的架构中的异相调制有效地增加了MLRF-PWM信号输出电平的数量。另外,引入了具有硬限幅技术的多频带多位带通Δ-∑调制器(BPDSM),其通过在失真性能和编码效率之间进行权衡来进一步提高功率编码效率。双通道25-GSPS任意波形发生器(AWG)的实验结果表明,对于10 MHz的信道带宽,具有874 MHz和1501 MHz的带间LTE信号的3级S类PA的非连续载波聚合和20 MHz。所提出的淘汰MLRF-PWM技术可实现59.5%的功率编码效率,这与具有实验性双频LTE信号传输的传统3级BPDSM的8.6%编码效率相比有显着提高。

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