A Modified Space Vector Modulation Based Rotor Flux Oriented Control of Six-Phase Asymmetrical Induction Motor Drive
نویسندگان
چکیده
In view of the attractive features like improved torque density, reduction pulsation, superior fault tolerance, reduced power rating voltage source converter, and sterling noise characteristics six-phase asymmetrical induction motor (SPAIM) as compared to its three-phase counterpart, SPAIM is considered for study. this paper, mathematical modelling carried out in synchronous reference frame then indirect rotor field-oriented control (IRFOC) using a modified carrier wave-based space vector modulation (SVM) scheme developed. A Simulink model proposed system configuration developed simulation study out. order validate results, scaled prototype rated 2 HP, 4-pole, 200V developed, closed loop drive with aforesaid SVM technique implemented TMS320F28379D controller board. The performance observed several operating conditions studies MATLAB/Simulink test setup various results are recorded under presented. Furthermore, benchmarked SPWM hysteresis current well it that outperforms traditional hysteresis-based controllers terms distortion stator currents ripples.
منابع مشابه
Space Vector Pulse Width Modulation with Reduced Common Mode Voltage and Current Losses for Six-Phase Induction Motor Drive with Three-Level Inverter
Common-mode voltage (CMV) generated by the inverter causes motor bearing failures in multiphase drives.On the other hand, presence of undesired z-component currents in six-phase induction machine (SPIM) leads to extra current losses and have to be considered in pulse width modulation (PWM) techniques. In this paper, it is shown that the presence of z-component currents and CMV in six phase driv...
متن کاملSpace Vector Pulse Width Modulation Based Indirect Vector Control of Induction Motor Drive
K Sravanthi M Ranjith S Srinivasulu Electrical Dept, Asst Prof /Electrical Dept, Asst Prof/Electrical Dept, VNR VJIET VNR VJIET GITAM University, Hyderabad, India Hyderabad, India Hyderabad, India Abstract—This paper proposes the implementation of a different SPACE VECTOR PWM technique applied to the indirect vector controlled induction motor (IM) drive involves decoupling of the stator current...
متن کاملIndirect Field Oriented Control for Induction Motor Drive using Space Vector Modulation Technique
Indirect Field Oriented Control (IFOC) is known to produce high performance in induction Motor (IM) drives by decoupling rotor flux and torque producing current components of stator current. The decoupling control between the rotor flux and the torque is no longer achieved in terms of stator current components this paper introduces a decoupled rotor flux and torque control based on the magnetiz...
متن کاملSensorless Vector Control of Linear Induction Motor on Primary and Secondary Flux Oriented based on Fuzzy PI Controller
This paper presents a sensorless system drive on primary flux oriented control (PFOC) and secondary flux oriented control (SFOC) for the linear induction motor (LIM) with taking into account end effect. Extended kalman filter (EKF) is applied to estimate LIM speed by measuring motor voltages and currents. In order to achieve desirable dynamic and robustness motor performance instead of traditio...
متن کاملModeling and Simulation of Rotor Flux Observer Based Indirect Vector Control of Induction Motor Drive Using Fuzzy Logic Control
The indirect vector controlled inductor motor (IM) drive involves decoupling of the stator current into torque and flux producing components. This paper proposes the implementation of fuzzy logic control scheme applied to a two d-q current components model of an induction motor. A Fuzzy logic Controller is developed with the help of knowledge rule base for efficient and robust control. The perf...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
ژورنال
عنوان ژورنال: Turkish Journal of Electrical Engineering and Computer Sciences
سال: 2023
ISSN: ['1300-0632', '1303-6203']
DOI: https://doi.org/10.55730/1300-0632.3996