Synthesis of control system by electrical drive with synchronous reluctance independent excitation machine

Authors

  • Yu. S. Usinin South Ural State University
  • M. A. Grigoryev South Ural State University
  • A. N. Shishkov South Ural State University
  • S. P. Gladyshev Dearborn Branch of Michigan University
  • A. N. Gorozhankin South Ural State University

Abstract

In the article the methods of frequency synthesis of the control systems for synchronous reluctance independent excitation machine are considered.

Keywords: electrical drive with synchronous reluctance independent excitation machine, methods of frequency synthesis

Author Biographies

Yu. S. Usinin, South Ural State University

Doctor of Science (Engineering), Professor of ?Electric Drive and Production Units Automation? Department

M. A. Grigoryev, South Ural State University

Candidate of Science (Engineering), Associate Professor of  ?Electric Drive and Production Units Automation? Department

A. N. Shishkov, South Ural State University

Candidate of Science (Engineering), Associate Professor of  ?Electric Drive and Production Units Automation? Department

S. P. Gladyshev, Dearborn Branch of Michigan University

Doctor of Science (Engineering), Professor

A. N. Gorozhankin, South Ural State University

Candidate of Science (Engineering), Associate Professor of  ?Electric Drive and Production Units Automation? Department

References

Усынин, Ю.С. Частотные характеристики канала регулирования момента в синхронных электроприводах / Ю.С. Усынин, М.А. Григорьев, А.Н. Шишков // Электричество. – 2012. – № 4. – С. 54–59.

Усынин, Ю.С. Электроприводы и генераторы с синхронной реактивной машиной независимого возбуждения / Ю.С. Усынин, М.А. Григорьев, К.М. Виноградов // Электричество. – 2007. – 3. – С. 21–26.

Бычков, А.Е. Оптимизация новых типов электромеханических преобразователей в электротехнических комплексах / А.Е. Бычков, Д.И. Кашаев, Т.Т. Москов // Вестник ЮУрГУ. Серия «Энергетика». – 2011. – Вып. 15. – № 15 – С. 62–66.

Issue

Section

Elecromechanical systems