DocumentCode
1765931
Title
Digital Predistortion for Concurrent Dual-Band Transmitters Using 2-D Modified Memory Polynomials
Author
You-Jiang Liu ; Wenhua Chen ; Jie Zhou ; Bang-Hua Zhou ; Ghannouchi, F.
Author_Institution
Inst. of Electron. Eng., Mianyang, China
Volume
61
Issue
1
fYear
2013
fDate
Jan. 2013
Firstpage
281
Lastpage
290
Abstract
Cross-band modulation effects in the concurrent dual-band transmitters are quite noticeable for the linearization. This paper proposes a novel two-dimensional modified memory polynomial (2D-MMP) technique to compensate for nonlinear distortion in the concurrent dual-band transmitters. By taking into account the cross-band modulation effects, the 2D-MMP model is developed by properly modifying the envelope terms of the conventional memory polynomial (MP) model. This makes the model complexity of the 2D-MMP model significantly reduced compared to the prior 2D-DPD model in previous work. However, the linearization ability of the 2D-MMP model is still retained. Simulations prove that the 2D-MMP model is quite robust to different PA models. Experimental measurements were carried out for a dual-band class-AB PA exhibiting mild nonlinearity and a highly nonlinear dual-band Doherty PA. The results show that the 2D-MMP model can achieve nearly the same linearization accuracy compared to the 2D-DPD model, with much less coefficients. Less than -52 dBc adjacent channel power ratios (ACPRs) for the dual-band class-AB power amplifiers (PAs) and -50 dBc ACPRs for the dual-band Doherty PA in the dual bands were achieved.
Keywords
linearisation techniques; microwave amplifiers; modulation; nonlinear distortion; polynomials; power amplifiers; radio transmitters; 2D modified memory polynomial; 2D-DPD model; 2D-MMP model; ACPR; PA model; adjacent channel power ratio; concurrent dual-band transmitter; cross-band modulation effect; digital predistortion; dual-band class-AB PA; dual-band class-AB power amplifier; linearization accuracy; memory polynomial model; model complexity; nonlinear distortion; nonlinear dual-band Doherty PA; Analytical models; Baseband; Complexity theory; Dual band; Modulation; Predistortion; Transmitters; Cross-band modulation; Doherty; digital predistortion (DPD); dual-band; memory polynomial (MP); 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.2012.2228216
Filename
6392319
Link To Document