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Enhanced delay alignment method for behavioral modeling of power amplifiers exhibiting memory effects

机译:增强延迟对准方法,用于表现出记忆效应的功率放大器的行为建模

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In this paper, the impact of memory effects on the delay estimation in power amplifiers behavioral modeling applications is investigated. It is shown that conventional cross-correlation based delay estimation is affected by the presence of memory effects. This results in a delay estimation error that impacts the performance of the derived behavioral model. Thus, rather than aligning the measured input and output waveforms using the time delay estimated using the actual measured data, a time delay derived under memoryless condition is used. The proposed method is experimentally validated using a 3G Doherty power amplifier driven by 3-carrier and 4-carrier WCDMA signals. For each signal, several memory polynomial behavioral models were derived. It is demonstrated that the use of the proposed delay alignment approach results in enhanced modeling performance. For the 4-carrier WCDMA signal, the NMSE calculated for the behavioral models derived using the proposed delay alignment technique is approximately 3.5 dB better than that calculated for the behavioral models derived using the conventional time delay alignment method.
机译:本文研究了记忆效应对功率放大器行为建模应用中的延迟估计的影响。结果表明,基于互相关的延迟估计受到内存效果的存在影响。这导致延迟估计误差影响导出的行为模型的性能。因此,不是使用使用实际测量数据估计的时间延迟对准测量的输入和输出波形,而是使用在内部内存条件下导出的时间延迟。通过由3载波和4载波WCDMA信号驱动的3G多孔功率放大器进行实验验证所提出的方法。对于每个信号,导出了几个存储器多项式行为模型。证明使用所提出的延迟对准方法的使用导致增强的建模性能。对于4载波WCDMA信号,针对使用所提出的延迟对准技术导出的行为模型计算的NMSE比使用传统时间延迟对准方法导出的行为模型的行为模型大约为3.5dB。

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