DocumentCode :
1282598
Title :
Modified Least Squares Extraction for Volterra-Series Digital Predistorter in the Presence of Feedback Measurement Errors
Author :
Liu, You-Jiang ; Chen, Wenhua ; Zhou, Jie ; Zhou, Bang-Hua ; Ghannouchi, Fadhel M. ; Liu, Yi-Nong
Volume :
60
Issue :
11
fYear :
2012
Firstpage :
3559
Lastpage :
3570
Abstract :
Measurement errors (in-phase/quadrature imbalance, dc offset, and nonlinearity) in the feedback path can adversely affect the linearization performance of digital predistorter (DPD) for RF power amplifiers (PAs). In this paper, a generalized analysis for the Volterra-series DPD system is presented in the presence of feedback measurement errors. It shows that the DPD coefficients are biased due to these errors. A modified least squares (MLS) method is then proposed for DPD coefficients extraction, which can eliminate the detrimental effect of feedback measurement errors without using a post-compensator. The proposed MLS method has the advantage of being free of behavioral modeling for the feedback path or the post-compensator. However, it can still achieve comparable performance as the state-of-the-art. The performance of the MLS method is validated with both simulations and experiments. The measurement results show that, when a nonideal feedback path is employed to capture the PA output, the proposed MLS method can still ensure a high linearization performance of the DPD, and the results are nearly the same as that when an ideal feedback path is used.
Keywords :
Volterra series; feedback; least squares approximations; microwave measurement; microwave power amplifiers; DPD linearization performance; RF power amplifiers; Volterra-series DPD system; Volterra-series digital predistorter; feedback measurement errors; feedback path; linearization performance; modified least square extraction method; modified least squares extraction method; post-compensator; Baseband; Computer architecture; Demodulation; Measurement errors; Nonlinear distortion; Physics; Polynomials; Digital predistorter (DPD); Volterra series; feedback path; in-phase/quadrature (I/Q) imbalance; power amplifiers (PAs);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2012.2214055
Filename :
6297494
Link To Document :
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