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Observer-based integral sliding mode control for sensorless PMSM drives using FPGA

Quang N.K. Faculty of Engineering and Information Technology, University of Technology Sydney, NSW 2007, Australia|
Ha Q.P. | That N.D. | Vinh D.Q. Faculty of Electrical Engineering, University of Danang, Viet Nam|

2013 International Conference on Control, Automation and Information Sciences, ICCAIS 2013 Số , năm 2013 (Tập , trang 218-223)

ISSN: 102727

ISSN: 102727

DOI: 10.1109/ICCAIS.2013.6720557

Tài liệu thuộc danh mục: Scopus

Int. Conf. Control, Autom. Inf. Sci., ICCAIS

English

Từ khóa: Computer hardware description languages; Field programmable gate arrays (FPGA); Information science; Sliding mode control; Speed control; Synchronous motors; Back electromotive force; Description languages; Design and evaluations; Integral sliding mode control; Modelsim and Simulink co-simulation; Sensorless permanent magnet synchronous motor; Sliding mode observers; Steady state accuracy; Permanent magnets
Tóm tắt tiếng anh
This paper presents the design and evaluation of an observer-based integral sliding mode controller for sensorless Permanent Magnet Synchronous Motor (PMSM) drive based on the Field Programmable Gate Array (FPGA) technology. For enhancement of robustness, a flux angle estimator using an improved sliding mode observer is proposed to estimate the current and back electromotive force (EMF) as well as to derive the flux angle. These estimated values together with the computed rotor speed of the motor are fed back for the control purpose in both the current loop and the speed loop. To increase the performance of PMSM speed control, an integral sliding mode control (ISMC) is designed with integral operation to improve steady state accuracy against parameter variations and external disturbances. The developed controller has been implemented in an FPGA-based environment and the very high speed integrated circuit-hardware description language (VHDL) is adopted to show advantages of the proposed control system. By integrating the observer-based and integral sliding mode control techniques into speed control of a PMSM drive, the system performance can be substantially enhanced while improving its cost-effectiveness and reliability. The validity of the proposed approach is verified through simulation results based on Modelsim and Simulink co-simulation method. � 2013 IEEE.

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