Scientific Research and Essays

  • Abbreviation: Sci. Res. Essays
  • Language: English
  • ISSN: 1992-2248
  • DOI: 10.5897/SRE
  • Start Year: 2006
  • Published Articles: 2768

Full Length Research Paper

Air gap field-oriented vector control strategy for high-power electrically excited synchronous motor based on full-order flux linkage observer

Jing Shang*, Xiaohong Nian and Kean Liu
Central South University, Changsha 412100, China.
Email: [email protected]

  •  Received: 03 January 2013
  •  Accepted: 02 March 2013
  •  Published: 15 May 2014

References

Beliaev D, Weinger A (2005). Field oriented control of a synchronous drive[C]. IEEE Int. Conf. Electric Machine Drives pp. 957-961.
 
Pyrbonen O (1998). Analysis and control of excitation, field weakening and stability in direct torque controlled electrically excited synchronous motor drives[D]. Finland: Lappeenranta University of Technology.
 
Pyrhonen J, Niemela M, Kaukonen J, Tiitinen P (1997). Synchronous motor drives based on direct flux linkage control. Proc. Eur. Power Electron. Conf., Norway: Trondheim, 1:434-430.
 
Szabo C (2006). Implementation of scalar and vector control structures for synchronous motors[D]. Technical University of Cluj-Napoca, Romania.
 
Szabo CS, Maria I, Incze II (2010). Double-Field orientation of unity power factor synchronous motor drive[C]. Intelligent Engineering Systems, 2010 14th International Conference, pp. 237-242.
Crossref
 
Wu X, Tan G (2010). Electrically excited synchronous motor three-level DTC_SVM control based on novel flux observer [C]. Elect. Cont. Eng. pp. 3689-3692.