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Volterra series based predistortion for broadband RF power amplifiers with memory effects

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【Author】 Jin Zhe1,Song Zhihuan2 & He Jiaming3 1.Zhejiang Univ.of Science and Technology,Hangzhou 310023,P.R.China; 2.Coll.of Information Science and Engineering,Zhejiang Univ.,Hangzhou 310027,P.R.China; 3.Inst.of Communication Technologies,Ningbo Univ.,Ningbo 315211,P.R.China

【摘要】 RF power amplifiers (PAs) are usually considered as memoryless devices in most existing predistortion techniques.However,in broadband communication systems,such as WCDMA,the PA memory effects are significant,and memoryless predistortion cannot linearize the PAs effectively.After analyzing the PA memory effects,a novel predistortion method based on the simplified Volterra series is proposed to linearize broadband RF PAs with memory effects.The indirect learning architecture is adopted to design the predistortion scheme and the recursive least squares algorithm with forgetting factor is applied to identify the parameters of the predistorter.Simulation results show that the proposed predistortion method can compensate the nonlinear distortion and memory effects of broadband RF PAs effectively.

【Abstract】 RF power amplifiers (PAs) are usually considered as memoryless devices in most existing predistortion techniques.However,in broadband communication systems,such as WCDMA,the PA memory effects are significant,and memoryless predistortion cannot linearize the PAs effectively.After analyzing the PA memory effects,a novel predistortion method based on the simplified Volterra series is proposed to linearize broadband RF PAs with memory effects.The indirect learning architecture is adopted to design the predistortion scheme and the recursive least squares algorithm with forgetting factor is applied to identify the parameters of the predistorter.Simulation results show that the proposed predistortion method can compensate the nonlinear distortion and memory effects of broadband RF PAs effectively.

【基金】 the National Natural Science Foundation of China (60671037).
  • 【文献出处】 Journal of Systems Engineering and Electronics ,系统工程与电子技术(英文版) , 编辑部邮箱 ,2008年04期
  • 【分类号】TN722.75
  • 【被引频次】2
  • 【下载频次】45
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