DocumentCode
843853
Title
Weighted Polynomial Digital Predistortion for Low Memory Effect Doherty Power Amplifier
Author
Hong, Sungchul ; Woo, Young Yun ; Kim, Jangheon ; Cha, Jeonghyeon ; Kim, Ildu ; Moon, Junghwan ; Yi, Jaehyok ; Kim, Bumman
Author_Institution
Telecommun. Res. & Dev. Center, Samsung Electron. Co. Ltd, Gyeonggi
Volume
55
Issue
5
fYear
2007
fDate
5/1/2007 12:00:00 AM
Firstpage
925
Lastpage
931
Abstract
We have proposed a simple and effective weighted polynomial digital predistortion algorithm, which consists of weighting, least square polynomial fit, and de-weighting. The weighting factor is introduced to describe the signal distribution statistics and high harmonic generation at a high power region to improve accuracy of the error function. A low memory linear Doherty power amplifier (PA) has been realized with two 90-W peak envelope power LDMOSFETs using memory effect reduction techniques, and the proposed algorithm has been applied to the PA. For the forward-link wideband code division multiple access 3FA signal, the adjacent channel leakage ratio performance at 5-MHz offset is -56 dBc with power-added efficiency of 20.78% at an average power of 40 dBm. The proposed weighting polynomial algorithm provides a significantly reduced error power and superior convergence behavior with improved linearization capability than the conventional polynomial. Moreover, the low memory Doherty amplifier could be linearized for a wideband signal using the simple algorithm without any memory effect compensation
Keywords
MOSFET circuits; code division multiple access; harmonic generation; least squares approximations; polynomial approximation; power amplifiers; statistical distributions; 90 W; LDMOSFET; error function; forward-link wideband code division multiple access; harmonic generation; least square polynomial fit; linear Doherty power amplifier; low memory effect Doherty power amplifier; memory effect reduction; signal distribution statistics; weighted polynomial digital predistortion; weighting factor; Broadband amplifiers; Error analysis; Frequency conversion; Moon; Multiaccess communication; Polynomials; Power amplifiers; Predistortion; Statistical distributions; Table lookup; Digital predistortion (DPD); Doherty; linearization; memory effect; power amplifier (PA); weighted polynomial;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2007.895167
Filename
4195662
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