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Digital predistortion with advance/delay neural network and comparison with Volterra derived models

机译:具有提前/延迟神经网络的数字预失真以及与Volterra衍生模型的比较

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This paper is focused on digital predistortion using neural networks (NNETs) for linearization of power amplifiers. We propose a new architecture of NNET. It is based on a feedforward tapped delay line neural network for complex signals with one hidden layer but it includes both delayed and advanced samples at its input. We name this architecture TADNN (tapped advance and delay line neural net). We show that the introduction of advance taps improves the digital predistortion (DPD) performance. We also compare the TADNN predistorter with predistorters derived from Volterra series such as memory polynomial or dynamic deviation reduction models. This comparison is based on three elements: performance in linearization, complexity, increase of the peak to average power ratio (PAPR) by the predistorter. Indeed, one drawback of Volterra based predistorters is that they can generate predistorted signals with very high PAPR that cannot be applied directly at the input of the power amplifier. Conversely, the PAPR of the predistorted signals at the output of the TADNN remains moderate. The presented approach is evaluated on a real LDMOS (laterally diffused metal oxide semiconductor) push-pull power amplifier with 16 MHz bandwidth OFDM (orthogonal frequency-division multiplex) signal at a carrier frequency of 200 MHz.
机译:本文着重于使用神经网络(NNET)对功率放大器进行线性化的数字预失真。我们提出了一种新的NNET体系结构。它基于前馈抽头延迟线神经网络,用于具有一个隐藏层的复杂信号,但在其输入处包括延迟和高级采样。我们将此架构命名为TADNN(使用提前和延迟线神经网络)。我们表明,提前抽头的引入改善了数字预失真(DPD)性能。我们还将TADNN预失真器与从Volterra级数派生的预失真器(例如记忆多项式或动态偏差减少模型)进行比较。该比较基于三个要素:线性化性能,复杂性,预失真器提高峰均功率比(PAPR)。实际上,基于Volterra的预失真器的一个缺点是它们会生成具有非常高的PAPR的预失真信号,这些信号无法直接应用于功率放大器的输入。相反,TADNN输出端的预失真信号的PAPR保持适中。所提出的方法是在实际的LDMOS(横向扩散金属氧化物半导体)推挽功率放大器上进行评估的,该放大器具有16 MHz带宽的OFDM(正交频分复用)信号,载波频率为200 MHz。

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