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Steady-state analysis of DC converter using Galerkin’s method

Igor Korotyeyev (Faculty of Computer, Electrical and Control Engineering, Uniwersytet Zielonogorski, Zielona Gora, Poland)

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering

ISSN: 0332-1649

Article publication date: 19 September 2019

Issue publication date: 15 November 2019

75

Abstract

Purpose

The purpose of this paper is to present the Galerkin method for analysis of steady-state processes in periodically time-varying circuits.

Design/methodology/approach

A converter circuit working on a time-varying load is often controlled by different signals. In the case of incommensurable frequencies, one can find a steady-state process only via calculation of a transient process. As the obtained results will not be periodical, one must repeat this procedure to calculate the steady-state process on a different time interval. The proposed methodology is based on the expansion of ordinary differential equations with one time variable into a domain of two independent variables of time. In this case, the steady-state process will be periodical. This process is calculated by the use of the Galerkin method with bases and weight functions in the form of the double Fourier series.

Findings

Expansion of differential equations and use of the Galerkin method enable discovery of the steady-state processes in converter circuits. Steady-state processes in the circuits of buck and boost converters are calculated and results are compared with numerical and generalized state-space averaging methods.

Originality/value

The Galerkin method is used to find a steady-state process in a converter circuit with a time-varying load. Processes in such a load depend on two incommensurable signals. The state-space averaging method is generalized for extended differential equations. A balance of active power for extended equations is shown.

Keywords

Citation

Korotyeyev, I. (2019), "Steady-state analysis of DC converter using Galerkin’s method", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 38 No. 6, pp. 2057-2069. https://doi.org/10.1108/COMPEL-02-2019-0062

Publisher

:

Emerald Publishing Limited

Copyright © 2019, Emerald Publishing Limited

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