DocumentCode :
24310
Title :
Stability Analysis of Power Amplifiers Under Output Mismatch Effects
Author :
Suarez, Almudena ; Ramirez, Franco ; Sancho, Sergio
Author_Institution :
Commun. Eng. Dept., Univ. of Cantabria, Santander, Spain
Volume :
62
Issue :
10
fYear :
2014
fDate :
Oct. 2014
Firstpage :
2273
Lastpage :
2289
Abstract :
Novel criteria are presented for small- and large-signal stability analysis of microwave circuits under output mismatch effects. They are based on concepts from bifurcation theory, which enable the derivation of general equations for the stability boundaries that depend on the termination load. The boundary calculation does not require any optimization of the circuit parameters. Instead, it is based on the direct calculation of an admittance function obtained through circuit linearization about either the dc solution, in the small-signal stability analysis, or the periodic solution, in the large-signal one, with low computational cost. As will be demonstrated both with homotopy and bifurcation concepts, the Hopf locus obtained in this way delimits a stable region and a potentially unstable one. In a large-signal stability analysis, the sidebands that influence the stability properties are identified, which depend on the particular amplifier topology and its filtering effects. The stability boundaries are then calculated with the conversion matrix approach for all load impedance values at the relevant harmonic and sideband frequencies. For the derivation of absolute stability conditions, a new scattering type matrix is proposed describing the circuit response from the output reference plane with respect to the two sidebands about the input carrier. The new methodologies and formulations have been validated by independent simulations using pole-zero identification, and by measurements.
Keywords :
S-matrix theory; bifurcation; circuit stability; linearisation techniques; matrix algebra; microwave circuits; microwave power amplifiers; Hopf locus; admittance function; amplifier topology; bifurcation theory; boundary calculation; circuit linearization; circuit parameter optimization; circuit response; conversion matrix approach; dc solution; filtering effect; general equation derivation; harmonic frequency; homotopy; input carrier; large-signal stability analysis; load impedance; microwave circuits stability analysis; output mismatch effect; periodic solution; pole-zero identification; power amplifier; scattering type matrix; sideband frequency; small-signal stability analysis; termination load; Admittance; Amplitude modulation; Bifurcation; Circuit stability; Oscillators; Stability criteria; Bifurcation; mismatch effects; power amplifier (PA); stability analysis;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2014.2344629
Filename :
6876224
Link To Document :
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