In this paper, an analytical approach for modeling a multiphase diode bridge rectifier suitable for control purposes is presented. The model has been implemented in Matlab/Simulink by means of a function performing the AC/DC current conversion and takes into account the main non-idealities of semiconductor diodes, such as the turn-on voltage and the on/off resistances. The developed Matlab function makes the simulation of the multiphase diode bridge rectifier very straightforward and its effectiveness has been tested by comparing the simulation results with those obtained by using the rectifier model provided by the PLECS circuit simulator.

Modeling and Simulation of a Multiphase Diode Bridge Rectifier / Tebaldi, Davide; Zanasi, Roberto. - (2020), pp. 1546-1551. (Intervento presentato al convegno 18th European Control Conference, ECC 2020 tenutosi a San Pietroburgo nel 12-15 Maggio 2020).

Modeling and Simulation of a Multiphase Diode Bridge Rectifier

Davide Tebaldi
;
Roberto Zanasi
2020

Abstract

In this paper, an analytical approach for modeling a multiphase diode bridge rectifier suitable for control purposes is presented. The model has been implemented in Matlab/Simulink by means of a function performing the AC/DC current conversion and takes into account the main non-idealities of semiconductor diodes, such as the turn-on voltage and the on/off resistances. The developed Matlab function makes the simulation of the multiphase diode bridge rectifier very straightforward and its effectiveness has been tested by comparing the simulation results with those obtained by using the rectifier model provided by the PLECS circuit simulator.
2020
20-lug-2020
18th European Control Conference, ECC 2020
San Pietroburgo
12-15 Maggio 2020
1546
1551
Tebaldi, Davide; Zanasi, Roberto
Modeling and Simulation of a Multiphase Diode Bridge Rectifier / Tebaldi, Davide; Zanasi, Roberto. - (2020), pp. 1546-1551. (Intervento presentato al convegno 18th European Control Conference, ECC 2020 tenutosi a San Pietroburgo nel 12-15 Maggio 2020).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1206686
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