DocumentCode
1241653
Title
Open-Loop Digital Predistorter for RF Power Amplifiers Using Dynamic Deviation Reduction-Based Volterra Series
Author
Zhu, Anding ; Draxler, Paul J. ; Yan, Jonmei J. ; Brazil, Thomas J. ; Kimball, Donald F. ; Asbeck, Peter M.
Author_Institution
Sch. of Electr., Univ. Coll. Dublin, Dublin
Volume
56
Issue
7
fYear
2008
fDate
7/1/2008 12:00:00 AM
Firstpage
1524
Lastpage
1534
Abstract
In this paper, we propose an efficient open-loop digital predistorter (DPD) derived from the dynamic deviation reduction-based Volterra series that allows compensation for both nonlinear distortion and memory effects induced by RF power amplifiers in wireless transmitters. In this approach, the parameters of the predistorter can be directly extracted from an offline system identification process. This eliminates the usual requirement for a closed-loop real-time parameter adaptation, which dramatically reduces the implementation complexity of the system. It is shown that a further reduction in system complexity can be achieved by applying under-sampling theory in the model extraction and utilizing parameter interpolation in the DPD implementation. Experimental results show that by utilizing this technique with only a small number of parameters, nonlinear distortion induced by the PA can be significantly reduced, as evaluated by both adjacent channel power ratio reduction and normalized root mean square error improvement. A comparison with a memoryless polynomial function based predistorter and an analysis of the impact of decresting are also presented.
Keywords
Volterra series; closed loop systems; intermodulation distortion; interpolation; mean square error methods; open loop systems; power amplifiers; radiofrequency amplifiers; transmitters; RF power amplifiers; Volterra series; adjacent channel power ratio reduction; closed-loop real-time parameter adaptation; dynamic deviation reduction; memory effects; memoryless polynomial function; nonlinear distortion; normalized root mean square error improvement; offline system identification process; open-loop digital predistorter; parameter interpolation; system complexity; under-sampling theory; wireless transmitters; Behavioral modeling; Volterra series; linearization; power amplifier (PA); predistorter; sampling;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2008.925211
Filename
4538250
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