DocumentCode
1776135
Title
Robust speed control of interior permanent magnet synchronous machine “fractional order control”
Author
Mehmood, Chaudhary Arshad ; Nasim, Robayet ; Ali, Shaima Mohammed ; Jawad, Muhammad ; Usman, Saeeda ; Khan, Sharifullah ; Salahuddin, Sania ; Ihsan, Mian Atif ; Khawja, Ahsan
Author_Institution
Electr. & Comput. Eng. Dept., North Dakota State Univ., Fargo, ND, USA
fYear
2014
fDate
5-7 June 2014
Firstpage
197
Lastpage
201
Abstract
The parameter sensitivity is a major cause of AC drives to stop working optimally. This paper looks into fractional order controller for Interior Permanent Magnet motors. The interior permanent magnet motors have become more demanding in hybrid vehicles, for which the parameter (resistance, inductance, magnetization of permanent magnets) drift is a common cause of degradation of drive due to rise in ambient temperature. The fractional PI/PID controller, which has five degree of freedoms, compared to classical PI/PID which have three degree of freedoms. This paper presents the simulations of fractional order controller (PI) based on fractional order calculus, for robust speed control of the Interior permanent magnet motors. The fractional order controller is compared with the well-tuned PI controller. The analysis constitutes the big range of parameters drift of the motor, to compensate the range of actual drift in the parameters.
Keywords
AC motor drives; angular velocity control; compensation; permanent magnet motors; robust control; synchronous motors; three-term control; AC drives; alternating current drives; ambient temperature; compensation; fractional PI-PID controller; fractional order control; hybrid vehicles; interior permanent magnet motors; interior permanent magnet synchronous machine; parameter sensitivity; permanent magnet inductance; permanent magnet magnetization; permanent magnet resistance; proportional-integral-derivative controller; robust speed control; Approximation methods; Mathematical model; Permanent magnet motors; Software packages; Torque; Transfer functions; Tuning; Fractional order Control; Permanent magnet synchronous motor; vector control;
fLanguage
English
Publisher
ieee
Conference_Titel
Electro/Information Technology (EIT), 2014 IEEE International Conference on
Conference_Location
Milwaukee, WI
Type
conf
DOI
10.1109/EIT.2014.6871761
Filename
6871761
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