DocumentCode :
1204803
Title :
Stability Conditions for Resonant Circuits with Time-Variable Parameters
Author :
Sato, Chikara
Volume :
9
Issue :
4
fYear :
1962
fDate :
12/1/1962 12:00:00 AM
Firstpage :
340
Lastpage :
349
Abstract :
Parametrically-excited resonant circuits of two-loops or two-node-pairs are dealt with in this paper. Investigation is made on the stability and behavior of the circuits near the four resonant points: 2\\Omega _1 = \\omega , 2\\Omega _2 = \\omega , \\Omega _1 + \\Omega _2 = \\omega , and |\\Omega _1 - \\Omega _2| = \\omega , where \\Omega _{1}/2 \\pi and \\Omega _{2}/2 \\pi are the two resonant frequencies and \\omega / 2\\pi is the frequency of parametric excitation. In this paper 1) those circuit conditions are obtained by which the parametricallyexcited linear resonant circuit can be reduced to two independent Mathieu equations; 2) the transition curves from stability to instability at the resonant point near \\Omega _1 + \\Omega _2 = \\omega are obtained under a special condition; 3) the stability condition is obtained near the resonant point \\Omega _1 + \\Omega _2 = \\omega , under a more general condition, 4) an aperiodic (almost periodic) oscillation is obtained near \\Omega _1 + \\Omega _2 = \\omega when the circuit is characterized by a nonlinear differential equation; and 5) it is ascertained that instability does not occur at the resonant point |\\Omega _1 - \\Omega _2| = \\omega . Mathematical treatments used here consist of two steps: 1) linear transformation, and 2) an averaging method which reduces a nonlinear nonautonomus differential equation to an autonomous differential equation, assuming that the damping (resistance term), the nonlinearity, and the parametric excitation are all small. Some of the results obtained herein can be applied to a parametrically-excited resonant circuit of more than two-loops or two-node-pairs. No investigation is made for a parametrically-excited resonant circuit with input voltage or input current sources.
Keywords :
Circuit stability; Damping; Differential equations; Instruments; Linearity; Nonlinear equations; RLC circuits; Resonance; Resonant frequency; Voltage;
fLanguage :
English
Journal_Title :
Circuit Theory, IRE Transactions on
Publisher :
ieee
ISSN :
0096-2007
Type :
jour
DOI :
10.1109/TCT.1962.1086973
Filename :
1086973
Link To Document :
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