Predictive Torque Control With Online Weighting Factor Computation Technique to Improve Performance of induction Motor Drive in Low Speed Region

被引:36
作者
Bhowate, Apekshit [1 ]
Aware, Mohan [1 ]
Sharma, Sohit [1 ]
机构
[1] Visvesvaraya Natl Inst Technol, Elect Engn Dept, Nagpur 440010, Maharashtra, India
关键词
Induction motor drive; predictive torque control; voltage source inverter; weighting factor; COMMON-MODE VOLTAGE; SWITCHING FREQUENCY; FACTOR SELECTION; REDUCTION; 3-PHASE; RIPPLE; VIKOR;
D O I
10.1109/ACCESS.2019.2908289
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents a predictive torque control (PTC) method with online weighting factor computation based on the principle of coefficient of variation (CV) while maintaining the steady state, dynamic, and low-speed performance of three-phase induction motor (IM) drive. In PTC, appropriate weighting factor values are essential for the satisfactory performance of the drive. The main challenge is the tedious tuning of weighting factors, which requires rigorous simulation to obtain the desired performance of the drive. In this paper, a method is proposed that estimates online weighting factors, which modifies the cost function consecutively based on the principle of CV. In this method, the ranking of constraint is based on its magnitude of dispersion, whereas in other tuning methods, ranks are assigned beforehand. The proposed method (CV-PTC) is compared with the conventional normalized weighting factor-based PTC method specifically to improve the demagnetization effect in the low-speed operation. In the CV-PTC algorithm, synthetic voltage vectors are implemented to improve the performance of IM in full operating speed range. The experimental analysis is carried out on the IM drive prototype to validate the results and showcase the independence imparted for the selection of weights in the cost function.
引用
收藏
页码:42309 / 42321
页数:13
相关论文
共 35 条
[1]   Simplified model predictive control with variable weighting factor for current ripple reduction [J].
Abbaszadeh, Alireza ;
Khaburi, Davood Arab ;
Mahmoudi, Hamid ;
Rodriguez, Jose .
IET POWER ELECTRONICS, 2017, 10 (10) :1165-1174
[2]  
Al-Naseem O., 2000, APEC 2000. Fifteenth Annual IEEE Applied Power Electronics Conference and Exposition (Cat. No.00CH37058), P242, DOI 10.1109/APEC.2000.826111
[3]  
Apap M, 2003, IEEE POWER ELECTRON, P1287
[4]   Design and loss comparison of matrix converters and voltage-source converters for modern AC drives [J].
Bernet, S ;
Ponnaluri, S ;
Teichmann, R .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2002, 49 (02) :304-314
[5]  
Bhowate A., 2016, 2016 7 IND INT C POW, P1
[6]   Guidelines for Weighting Factors Design in Model Predictive Control of Power Converters and Drives [J].
Cortes, Patricio ;
Kouro, Samir ;
La Rocca, Bruno ;
Vargas, Rene ;
Rodriguez, Jose ;
Leon, Jose I. ;
Vazquez, Sergio ;
Franquelo, Leopoldo G. .
2009 IEEE INTERNATIONAL CONFERENCE ON INDUSTRIAL TECHNOLOGY, VOLS 1-3, 2009, :1477-1483
[7]   An Improved FCS-MPC Algorithm for an Induction Motor With an Imposed Optimized Weighting Factor [J].
Davari, S. Alireza ;
Khaburi, Davood Arab ;
Kennel, Ralph .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2012, 27 (03) :1540-1551
[8]   Reduction of Common-Mode Voltage in Five-Phase Induction Motor Drives Using Predictive Control Techniques [J].
Duran, Mario J. ;
Riveros, Jose A. ;
Barrero, Federico ;
Guzman, Hugo ;
Prieto, Joel .
IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2012, 48 (06) :2059-2067
[9]  
El-Santawy MF, 2012, LIFE SCI J, V9, P5875
[10]   A Model Predictive Control-Based Common-Mode Voltage Suppression Strategy for Voltage-Source Inverter [J].
Guo, Leilei ;
Zhang, Xing ;
Yang, Shuying ;
Xie, Zhen ;
Cao, Renxian .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2016, 63 (10) :6115-6125