Digital predistortion of RF power amplifiers with Zhu's general sampling theorem

Jianfeng Zhai, Lei Zhang, Zhiqiang Yu, Jianyi Zhou, Xiaowei Zhu
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Abstract

In this paper, the wideband digital predistortion (DPD) and the Zhu's general sampling theorem (ZGST) are applied to compensate the nonlinear characteristics of a wideband RF power amplifier with memory effects. In order to utilize the ZGST, the DPD test bench is carefully designed after analysis with the ZGST. The power amplifiers are excited by a long term evolution advanced signal with up to 100 MHz bandwidth and the memory polynomial model is chosen as the DPD mode after some modifications. The mode parameters are extracted by the standard least square method. Experimental results show that adjacent channel leakage ratio of the PA reaches about -55 dBc with over 10-dB improvement by DPD and the ZGST.
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用朱氏一般采样定理分析射频功率放大器的数字预失真
本文采用宽带数字预失真(DPD)和朱氏一般采样定理(ZGST)来补偿具有记忆效应的宽带射频功率放大器的非线性特性。为了充分利用ZGST,在对ZGST进行分析后,精心设计了DPD试验台。该功率放大器采用带宽高达100mhz的长时间演化超前信号激励,并在改进后选择记忆多项式模型作为DPD模式。采用标准最小二乘法提取模态参数。实验结果表明,采用DPD和ZGST后,相邻通道漏率提高了10 db以上,达到-55 dBc左右。
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