DocumentCode :
3083631
Title :
Q-parameterization control of vibrations in a variable speed magnetic bearing
Author :
Mohamed, Abdelfatah M. ; Matsumura, Fumio ; Namerikawa, Toru ; Lee, Jun-Ho
Author_Institution :
Dept. of Electr. & Electron. Eng., Assiut Univ., Egypt
fYear :
1997
fDate :
5-7 Oct. 1997
Firstpage :
540
Lastpage :
546
Abstract :
We propose a controller design methodology using the Q-parameterization theory for a variable speed magnetic bearing in order to achieve elimination of unbalance vibrations. Rotor unbalance usually generates sinusoidal disturbance forces, with frequency equal to the rotational speed. So in order to achieve asymptotic rejection of these disturbance forces, the Q-parameterization controller free parameter Q is chosen such that the controller has jω axis poles at the different speeds of rotation. First, we give a mathematical model for the magnetic bearing in state space form. Second, we explain the proposed Q-parameterization controller design methodology. The controller free parameter Q is assumed to be a proper stable transfer function whose order equals twice the number of operating speeds. Third, we showed that the controller free parameter which satisfies the design objectives can be obtained by simply solving a set of linear equations rather than solving a complicated optimization problem. We also showed that the controller order equals: number of degrees of freedom×(order of Q+3). Finally, several simulations were obtained to evaluate the proposed controller. The results obtained showed the effectiveness of the proposed controller in eliminating the unbalance vibrations at the different speeds.
Keywords :
electromagnetic fields; machine bearings; rotors; transfer functions; variable speed drives; vibration control; Q-parameterization control; asymptotic rejection; controller design methodology; controller free parameter; controller order; design objectives; disturbance forces; free parameter Q; linear equations; mathematical model; operating speeds; rotor unbalance; sinusoidal disturbance forces; stable transfer function; state space form; unbalance vibrations; variable speed magnetic bearing; vibration control; Design methodology; Force control; Frequency; Magnetic levitation; Magnetic variables control; Mathematical model; Rotors; State-space methods; Transfer functions; Vibration control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications, 1997., Proceedings of the 1997 IEEE International Conference on
Conference_Location :
Hartford, CT, USA
Print_ISBN :
0-7803-3876-6
Type :
conf
DOI :
10.1109/CCA.1997.627712
Filename :
627712
Link To Document :
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