Publication result detail

Optimized Second-order PWL Dynamical System and Its Active RC Equivalent Circuit Model

POSPÍŠIL, J.–KOLKA, Z.–BRZOBOHATÝ, J.–HANUS, S.–PETRŽELA, J.

Original Title

Optimized Second-order PWL Dynamical System and Its Active RC Equivalent Circuit Model

English Title

Optimized Second-order PWL Dynamical System and Its Active RC Equivalent Circuit Model

Type

Paper in proceedings (conference paper)

Original Abstract

Active RC circuit model with a piecewise-linear (PWL) voltage-controlled voltage source (VCVS) and linear current-controlled voltage source (CCVS) for the second-order autonomous dynamical system realization is proposed. The main advantage of this equivalent circuit is simple relation between the state model parameters and their corresponding circuit parameters, which leads also to simple design formulas.

English abstract

Active RC circuit model with a piecewise-linear (PWL) voltage-controlled voltage source (VCVS) and linear current-controlled voltage source (CCVS) for the second-order autonomous dynamical system realization is proposed. The main advantage of this equivalent circuit is simple relation between the state model parameters and their corresponding circuit parameters, which leads also to simple design formulas.

Keywords

Piecewise-linear, dynamical systems, modeling

Key words in English

Piecewise-linear, dynamical systems, modeling

Authors

POSPÍŠIL, J.–KOLKA, Z.–BRZOBOHATÝ, J.–HANUS, S.–PETRŽELA, J.

Released

01.04.2005

Publisher

Brno University of Technology

Location

Brno

ISBN

80-214-2904-6

Book

Proc. of Radioelektronika’2005

Pages from

25

Pages count

4

BibTex

@inproceedings{BUT15407,
  author="Zdeněk {Kolka} and Jiří {Pospíšil} and Jaromír {Brzobohatý} and Stanislav {Hanus} and Jiří {Petržela}",
  title="Optimized Second-order PWL Dynamical System and Its Active RC Equivalent Circuit Model",
  booktitle="Proc. of Radioelektronika’2005",
  year="2005",
  pages="4",
  publisher="Brno University of Technology",
  address="Brno",
  isbn="80-214-2904-6"
}