DocumentCode
60721
Title
Electronically Tunable Doherty Power Amplifier for Multi-Mode Multi-Band Base Stations
Author
Mohamed, Ahmed M. M. ; Boumaiza, Slim ; Mansour, Raafat R.
Author_Institution
Electr. & Comput. Eng. Dept., Univ. of Waterloo, Waterloo, ON, Canada
Volume
61
Issue
4
fYear
2014
fDate
Apr-14
Firstpage
1229
Lastpage
1240
Abstract
This paper proposes an electronically reconfigurable Doherty amplifier capable of efficiently amplifying multi-standard multi-band wireless signals centered at widely spaced frequencies. The paper outlines closed form equations for an effective design methodology of frequency agile Doherty amplifiers driven with multi-mode signals using a small number of electronically tunable devices. As a proof of concept, a reconfigurable Doherty prototype is designed and fabricated to operate at 1.9, 2.14, and 2.6 GHz meant to efficiently amplify signals with peak-to-average power ratio equal to 6, 9 and 12 dB. The measurement results obtained using continuous wave signals reveal drain efficiencies of about 67% and 42% at the peak power and 12 dB output back off power respectively for the three operating frequencies. In addition, the reconfigurable Doherty amplifier is successfully linearized when driven with 20 MHz wideband code-division multiple access and 20 MHz long term evolution signals, using a Volterra based digital predistrtion algorithm which exploits a pruned Volterra series.
Keywords
Long Term Evolution; UHF power amplifiers; Volterra series; code division multiple access; Volterra based digital predistortion algorithm; Volterra series; electronically tunable Doherty power amplifier; frequency 1.9 GHz to 2.6 GHz; long term evolution signals; multimode multiband base stations; multistandard multiband wireless signals; wideband code-division multiple access; Frequency modulation; Impedance; Inverters; Peak to average power ratio; Transistors; Tuners; High efficiency power amplifier; MEMS switches; multi-frequency multi-standard doherty power amplifiers; reconfigurable matching networks;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2013.2283781
Filename
6642125
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