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http://yadda.icm.edu.pl:80/baztech/element/bwmeta1.element.baztech-article-BPS2-0057-0019

Czasopismo

Maszyny Elektryczne : zeszyty problemowe

Tytuł artykułu

BLDC motor control design in Matlab/Simulink

Autorzy Hubik, V.  Toman, J.  Singule, V. 
Treść / Zawartość http://www.komel.katowice.pl/zeszyty.html
Warianty tytułu
Języki publikacji EN
Abstrakty
EN The article describes the simple way of BLDC motor control development in the Simulink environment. This way of development is also called Model Based Design approach, which is nowadays rapidly gaining popularity. MBD should be very effective method for development time reduction and finds usage especially during fast prototyping phase. The simple BLDC motor controller has been created and presented in this paper. Because the Simulink itself cannot control any outside system or process itself, a real special software and hardware has to be connected to the personal computer. Described control algorithm has been developed for dSPACE environment with appropriate power and interface electronics. The sinusoidal control algorithms for low power sensor BLDC motor has been used.
Słowa kluczowe
PL silnik elektryczny   silnik BLDC   MATLAB/Simulink  
EN BLDC motor   electric motors   MATLAB Simulink  
Wydawca Instytut Napędów i Maszyn Elektrycznych KOMEL
Czasopismo Maszyny Elektryczne : zeszyty problemowe
Rocznik 2010
Tom Nr 88
Strony 35--39
Opis fizyczny Bibliogr. 6 poz., rys.
Twórcy
autor Hubik, V.
autor Toman, J.
autor Singule, V.
  • Faculty of Mechanical Engineering, Brno University of Technology, Technická 2896/2, 616 69 Brno, vhubik@nbox.cz
Bibliografia
[1] Hubik V., Sveda M., Singule V.: On the development of BLDC motor control run-up algorithms for aerospace application. In Conference Proceedings. Poznan: 2008, p. 1643-1647. ISBN 978-1-4244-1742-1.
[2] Hubik V., Sveda M., Singule V.: Mathematical model of a sensorless BLDC motor for aerospace actuators. In Modelling and Simulation MS 2008. Quebec City, Quebec, Canada: 2008, p. 165-169. ISBN: 978-0-88986-741-3.
[3] MATLAB SW producer: http://www.mathworks.com [cit. 2010-02-20]
[4] Sveda M., Oplustil V.: Experience with integration and certification of COTS based embedded system into advanced avionic system. In Symposium of Industrial Embedded Systems Proceedings. Lisbon, Portugal. ISBN 1-4244-0840-7.
[5] RTCA/DO-178B: Software Consideration in Airborne Systems and Equipment Certification. RTCA, Inc.: USA, 1992.
[6] RTCA/DO-254: Design Assurance Guidance for Airborne Electronic Hardware. FAA Advisory Circulars, AC No.: 20-152, June 30, 2005.
Kolekcja BazTech
Identyfikator YADDA bwmeta1.element.baztech-article-BPS2-0057-0019
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