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Behavioral Modeling and Predistortion of Power Amplifiers Under Sparsity Hypothesis

机译:稀疏假设下功率放大器的行为建模和预失真

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摘要

A simple and flexible technique for improving the modeling and predistortion of power amplifiers is presented. The technique, which relies on the sparsity assumption for the kernel coefficients of the full Volterra (FV) behavioral model, combines a greedy algorithm for the selection of the active coefficients, a maximum likelihood method for their estimation and an information criterion for determining the best model. The approach has been applied to the design of reduced-parameters FV-based digital predistorters for three power amplifiers driven with orthogonal frequency division multiplexing signals, following the LTE and DVB-T2 standards, and a multichannel wideband code-division multiple access signal. Results show that the proposed linearizers meet the spectral masks and error vector magnitude constraints of the referred standards and provide a reduction better than 45% in the number of parameters, compared to the FV predistorters.
机译:提出了一种简单灵活的技术来改善功率放大器的建模和预失真。该技术依赖于对整个Volterra(FV)行为模型的核心系数的稀疏假设,结合了用于选择活动系数的贪婪算法,用于估计活动系数的最大似然法以及用于确定最佳系数的信息准则。模型。该方法已应用于遵循LTE和DVB-T2标准,由正交频分多路复用信号驱动的三个功率放大器的基于参数降低的基于FV的数字预失真器的设计,以及多通道宽带码分多址信号。结果表明,与FV预失真器相比,所提出的线性化器满足参考标准的频谱掩模和误差矢量幅度约束,并且参数数量减少了45%以上。

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