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Title: Fuzzy logic rotor position estimation based switched reluctance motor DSP drive with accuracy enhancement
Authors: Cheok, A.D. 
Wang, Z.
Keywords: Adaptive neuro-fuzzy inference system (ANFIS)
Digital signal processor (DSP)
Fuzzy logic
Online phase winding resistance estimator
Switched reluctance motor (SRM)
Issue Date: Jul-2005
Citation: Cheok, A.D., Wang, Z. (2005-07). Fuzzy logic rotor position estimation based switched reluctance motor DSP drive with accuracy enhancement. IEEE Transactions on Power Electronics 20 (4) : 908-921. ScholarBank@NUS Repository.
Abstract: This paper describes a novel angle estimation scheme for a real time digital signal processor (DSP) based switched reluctance motor drive using fuzzy logic where several unique techniques are implemented to improve the estimation accuracy. First, an optimized fuzzy model of the motor was created using an adaptive neuro-fuzzy inference system (ANFIS) based on accurately measured flux linkage data. Secondly, an improved fuzzy optimal sensing phase selector was developed based on the analysis of both modeling error and measurement error. Lastly, a delayless polynomial predictive filter and an online phase winding resistance estimator are also implemented to further improve the position estimation accuracy. Both simulation and experiment results on a DSP based real time drive are presented to show the effectiveness of this scheme. © 2005 IEEE.
Source Title: IEEE Transactions on Power Electronics
ISSN: 08858993
DOI: 10.1109/TPEL.2005.850958
Appears in Collections:Staff Publications

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