DocumentCode
66836
Title
A Doherty Architecture With High Feasibility and Defined Bandwidth Behavior
Author
Giofre, R. ; Piazzon, L. ; Colantonio, P. ; Giannini, F.
Author_Institution
Electron. Eng. Dept., Univ. of Roma Tor Vergata, Rome, Italy
Volume
61
Issue
9
fYear
2013
fDate
Sept. 2013
Firstpage
3308
Lastpage
3317
Abstract
This paper presents a complete and rigorous theoretical investigation of a Doherty architecture with a novel output combining network. The benefits in terms of bandwidth and feasibility held by the proposed topology are investigated and compared with the conventional one. In particular, the theoretical analysis demonstrates that the proposed output combiner allows to implement a Doherty amplifier with defined bandwidth (narrower or broader) without worsening in performances. Moreover, the proposed solution results in a more feasible structure with respect to the classical one, especially when high output power levels are sought. The theoretical results are validated through the design and realization of a prototype based on commercial GaN active devices. Experimental results show 42-dBm output power and 65% peak efficiency with a flat behavior in the 1.95-2.25-GHz frequency band (i.e., 14% of relative bandwidth) under continuous wave signal. Moreover, 50% average efficiency at 38-dBm average output power with -45 dBc of adjacent channel power ratio is demonstrated under 5-MHz 3GPP driving signal using a simple polynomial digital pre-distortion.
Keywords
3G mobile communication; UHF power amplifiers; Doherty amplifier; Doherty architecture; adjacent channel power ratio; commercial gallium nitride active devices; continuous wave signal; defined bandwidth behavior; efficiency 50 percent; efficiency 65 percent; frequency 1.95 GHz to 2.25 GHz; high-output power level; output combining network; polynomial digital pre-distortion; theoretical analysis; Bandwidth; Equations; Network topology; Power generation; Prototypes; Standards; Topology; 3GPP; Bandwidth; Doherty amplifier; hybrid coupler; output combiner;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2013.2274432
Filename
6573361
Link To Document