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Publication detail
PETRŽELA, J.
Original Title
Hyperchaotic self-oscillations of two-stage class C amplifier with generalized transistors
Type
journal article in Web of Science
Language
English
Original Abstract
This paper yields process of development, numerical analysis, lumped circuit modeling, and experimental verification of a new hyperchaotic oscillator based on the fundamental topology of two-stage amplifier. Analyzed network structure contains two generalized bipolar transistors connected with common emitter. Both transistors are initially modeled as two-ports via full admittance matrix, considering linear backward trans-conductance and polynomial forward trans-conductance. As proved in paper, these two scalar nonlinearities can push amplifier to exhibit robust hyperchaotic behavior with significantly high Kaplan-Yorke dimension. Regions of chaos and hyperchaos in a space of admittance parameters associated with both transistors are specified following the concept of positive values of Lyapunov exponents. Long time structural stability of generated hyperchaotic waveforms is proved by construction of flow-equivalent electronic circuit and experimental measurement, that is by screenshots captured by oscilloscope.
Keywords
Admittance parameters; bipolar transistor; class C amplifier; chaos; chaotic oscillator; hyperchaos; Lyapunov exponents; strange attractors
Authors
Released
22. 4. 2021
Publisher
IEEE
Location
USA
ISBN
2169-3536
Periodical
IEEE Access
Year of study
9
Number
4
State
United States of America
Pages from
62182
Pages to
62194
Pages count
13
URL
https://ieeexplore.ieee.org/document/9409077
Full text in the Digital Library
http://hdl.handle.net/11012/196742
BibTex
@article{BUT171295, author="Jiří {Petržela}", title="Hyperchaotic self-oscillations of two-stage class C amplifier with generalized transistors", journal="IEEE Access", year="2021", volume="9", number="4", pages="62182--62194", doi="10.1109/ACCESS.2021.3074367", issn="2169-3536", url="https://ieeexplore.ieee.org/document/9409077" }