Analysis of sensorless control of brushless DC motor using unknown input observer with different gains

Author:

Astik Mitesh B.1,Bhatt Praghnesh2,Bhalja Bhavesh R.3

Affiliation:

1. Department of Electrical Engineering, A. D. Patel Institute of Technology, New Vallabh , Vidyanagar , India

2. Department of Electrical Engineering, C. S. Patel Institute of Technology, CHARUSAT , Changa , India

3. Department of Electrical Engineering, Indian Institute of Technology , Roorkee , India

Abstract

Abstract A sensorless control scheme based on an unknown input observer is presented in this paper in which back EMF of the Brushless DC Motor (BLDC) is continuously estimated from available line voltages and currents. During negative rotation of motor, actual and estimated speed fail to track the reference speed and if the corrective action is not taken by the observer, the motor goes into saturation. To overcome this problem, the speed estimation algorithm has been implemented in this paper to control the dynamic behavior of the motor during negative rotation. The Ackermans method was used to calculate the gains of an unknown input observer which is based on the appropriate choice of the eigenvalues in advance. The criteria to choose eigenvalue is to obtain a balance between faster convergence rate and the least noise level. Simulations have been carried out for different disturbances such as step changes in motor reference speed and load torque. The comparative simulation results clearly depict that the disturbance effects in actual and estimated responses minimizes as observer gain setting increases.

Publisher

Walter de Gruyter GmbH

Reference21 articles.

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2. [2] N. Matsui, ”Sensorless PM brushless dc motor drives”, IEEE Trans. Ind. Electron. , 43, no. 2, pp. 300-308, 1996.

3. [3] K. Iizuka, H. Uzuhasashi, M. Kano, T. Endo and K. Mohri, ”Microcomputer control for sensorless brushless motor”, IEEE Trans. Ind. Appl. , IA-21, no. 3, pp. 595-601, May 1985.

4. [4] C. -T. Lin, C. -W. Hung and C. -W. Liu, ”Sensorless control for four-switch three-phase brushless DC motor drive”, Conf. Rec. IEEE IAS Annual Meeting, 4, pp. 2048-2053, 2006.

5. [5] J. X. Shen, Z. Q. Zhu and D. Howe, ”Sensorless flux-weakening control of permanent-magnet brushless machines using third harmonic back EMF”, IEEE Trans. Ind. Appl. , 40, no. 6, pp. 1629-1636, 2004.

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