DocumentCode
2909741
Title
Passivity-based adaptive sliding Mode speed control of switched reluctance motor drive considering torque ripple reduction
Author
Isfahani, M. M Namazi ; Saghaian-Nejad, S.M. ; Rashidi, A. ; Zarchi, H. Abootorabi
Author_Institution
Dept. of Electr. & Comput. Eng., Isfahan Univ. of Technol., Isfahan, Iran
fYear
2011
fDate
15-18 May 2011
Firstpage
1480
Lastpage
1485
Abstract
This paper presents a high-performance nonlinear controller for Switched reluctance machine (SRM), acting as a speed regulation motor drive. We use a cascaded torque control structure for torque ripple minimization. In a cascaded control structure, accurate torque control requires inner current controller. Passivity-based control (PBC) approaches is proposed for current control purpose. By using the port-controlled Hamiltonian (PCH) systems theory, a full-order nonlinear controlled model is first developed. Then nonlinear passivity-based adaptive sliding mode control algorithm in the presence of external disturbances for the purpose of torque ripple reduction and characteristic improvement is presented. The proposed controller design is separated into the inner loop and the outer loop controller. In the inner loop, passivity-based control (PBC) is employed by using energy shaping techniques to produce the proper switching function. The outer loop control is employed by adaptive sliding controller to determine the appropriate Torque command. It can also overcome the inherent nonlinear characteristics of the system and make the whole system robust to uncertainties. The performance of the proposed controller algorithm has been demonstrated in simulation and also experimentally using a 4KW, four-phase, 8/6 pole SRM DSP-based drive system.
Keywords
nonlinear control systems; reluctance motor drives; torque control; variable structure systems; velocity control; cascaded torque control structure; energy shaping techniques; full-order nonlinear controlled model; inner loop controller; nonlinear controller; outer loop controller; passivity-based adaptive sliding mode speed control; passivity-based control; port-controlled Hamiltonian systems theory; power 4 kW; speed regulation motor drive; switched reluctance motor drive; torque ripple minimization; torque ripple reduction; Adaptation models; Damping; Reluctance motors; Switches; Torque; Velocity control;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Machines & Drives Conference (IEMDC), 2011 IEEE International
Conference_Location
Niagara Falls, ON
Print_ISBN
978-1-4577-0060-6
Type
conf
DOI
10.1109/IEMDC.2011.5994827
Filename
5994827
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