DocumentCode
1463120
Title
Time-domain envelope measurement technique with application to wideband power amplifier modeling
Author
Clark, Christopher J. ; Chrisikos, George ; Muha, Michael S. ; Moulthrop, Andrew A. ; Silva, Christopher P.
Author_Institution
Aerosp. Corp., Los Angeles, CA, USA
Volume
46
Issue
12
fYear
1998
fDate
12/1/1998 12:00:00 AM
Firstpage
2531
Lastpage
2540
Abstract
This paper presents a new time-domain measurement technique for repetitive microwave signals that is applied to modeling wideband power amplifiers. The measurement technique concept consists of recording the microwave signal after conversion to baseband using a calibrated downconverter, which improves measurement accuracy compared to measurements at the carrier frequency. The modeling section describes how such time-domain measurements can be used to model wideband signal effects in nonlinear power amplifiers. The commonly used memory-less envelope model is limited to use on narrowband signals. A new model is developed which includes a filter before the memory-less nonlinearity to capture the memory effects associated with wideband signals. It is demonstrated that the accuracy of wideband signal simulations can be improved by optimizing the model parameters based on time-domain measurements of wideband signals
Keywords
microwave frequency convertors; microwave measurement; microwave power amplifiers; time-domain analysis; travelling wave amplifiers; wideband amplifiers; calibrated downconverter; measurement accuracy; memory effects; memory-less envelope model; model parameters; narrowband signals; nonlinear power amplifiers; time-domain envelope measurement technique; wideband power amplifier modeling; Baseband; Broadband amplifiers; Frequency measurement; Measurement techniques; Microwave amplifiers; Microwave measurements; Microwave theory and techniques; Power amplifiers; Time domain analysis; Wideband;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.739245
Filename
739245
Link To Document