Optimal-filter approach for nonlinear power amplifier modeling and equalization

C.P. Silva, C. J. Clark, A. Moulthrop, M. Muha
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引用次数: 34

Abstract

This paper presents an optimal-filter method for application to the equalization and modeling of nonlinear power amplifiers. The method uses auto-spectral and cross-spectral densities of measured amplifier input/output time-domain waveforms. An optimal filter response is calculated which best approximates a given nonlinearity as quantified by a new and useful linear coherence function metric. This response can in turn be used to determine optimal equalizer responses. It is also shown that by adding an optimal filter to the output of the standard two-box amplifier nonlinear model, waveform accuracy can be improved by 3.5 dB. The approach is applied to a 20-GHz traveling-wave tube amplifier using 9.6 Gbps 16-APK input signals.
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非线性功率放大器建模与均衡的最优滤波方法
本文提出了一种用于非线性功率放大器均衡和建模的最优滤波方法。该方法利用测量放大器输入/输出时域波形的自谱密度和交叉谱密度。计算了最优滤波器响应,该响应最接近给定的非线性,该非线性由一个新的有用的线性相干函数度量量化。此响应可依次用于确定最佳均衡器响应。结果表明,在标准双箱放大器非线性模型的输出端加入最优滤波器,波形精度可提高3.5 dB。该方法应用于使用9.6 Gbps 16-APK输入信号的20 ghz行波管放大器。
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