DocumentCode
718658
Title
Optimizing the control principle of Asynchronous electric drives with a phase-wound rotor based on simulation of its dynamic operational modes
Author
Malgin, Gennady Vladimirovich ; Rovkin, Vyacheslav Dmitrievich
Author_Institution
Nizhnevartovsk State Univ., Nizhnevartovsk, Russia
fYear
2015
fDate
21-23 May 2015
Firstpage
1
Lastpage
6
Abstract
The paper describes an approach to optimizing the parameters of the control system for asynchronous electric drives with a phase rotor by means of numerical simulation of the electrical complex. The researcher has implemented a numerical model of the electrical complex called “Asynchronous motor with a phase-wound rotor - A production mechanism.” The model was implemented in a software product AdFr in Delphi visual programming environment. A specialized numerical method and algorithm in the form of MIntegr and MVisual visual components was used as a calculating tool. The author has considered the specific features of analyzing the dynamic modes, taking into account the discrete-continuous nature of the control system. The simulation result allows generating transient modes of the required quality. In the paper the author also compares the developed method of calculating the control system parameters with the classical method of generating transient modes.
Keywords
asynchronous machines; electric drives; machine control; numerical analysis; rotors; visual programming; AdFr; Delphi visual programming environment; MIntegr visual component; MVisual visual component; asynchronous electric drives; asynchronous motor; calculating tool; control principle; discrete-continuous nature; dynamic mode analysis; dynamic operational modes; electrical complex; numerical simulation; phase rotor; phase-wound rotor; software product; transient mode generation; Control systems; Mathematical model; Rotors; Stator windings; Torque; Transient analysis; asynchronous electric drive; mathematical model; numerical methods; numerical modeling; phase-wound rotor; relay-contact control system; software product;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Communications (SIBCON), 2015 International Siberian Conference on
Conference_Location
Omsk
Print_ISBN
978-1-4799-7102-2
Type
conf
DOI
10.1109/SIBCON.2015.7147137
Filename
7147137
Link To Document