DocumentCode
1893242
Title
A method for estimating the IMD performance requirements of circuit blocks in the error signal path of an envelope feedback amplifier
Author
Constantin, N.G. ; El-Gamal, M.N.
Author_Institution
Ecole de Technol. Super., Montreal, QC, Canada
fYear
2010
fDate
10-14 Jan. 2010
Firstpage
252
Lastpage
255
Abstract
This paper presents an equations based approach for estimating the linearity requirements for the RF envelope detectors and the other circuit blocks typically found in the error signal path of an envelope feedback amplifier. The proposed equations are based on a three-tone excitation and a 5th degree power series representation of the nonlinearities in the RF power amplifier block, which allows estimating inter-modulation distortion within the feedback system using peak-to-average envelope voltage ratios that may be parameterized. The proposed approach for validating and optimizing the linearity performances of the envelope detectors in open loop conditions, as a function of feedback parameters and closed loop IMD goals, can be used to analyze envelope feedback systems during the design phase, and may be particularly helpful for circuit characterization independently of the simulation environment.
Keywords
feedback amplifiers; intermodulation distortion; power amplifiers; radiofrequency amplifiers; IMD performance requirements; RF envelope detectors; RF power amplifier block; circuit blocks; closed loop IMD goals; envelope feedback amplifier; error signal path; estimation method; intermodulation distortion; three-tone excitation; Envelope detectors; Feedback amplifiers; Feedback circuits; Feedback loop; Linearity; Nonlinear equations; Power amplifiers; RF signals; Radio frequency; Radiofrequency amplifiers; Amplifiers; envelope feedback; hardware reconfiguration; inter-modulation; linearity;
fLanguage
English
Publisher
ieee
Conference_Titel
Radio and Wireless Symposium (RWS), 2010 IEEE
Conference_Location
New Orleans, LA
Print_ISBN
978-1-4244-4725-1
Electronic_ISBN
978-1-4244-4726-8
Type
conf
DOI
10.1109/RWS.2010.5434185
Filename
5434185
Link To Document