Title :
Regenerative AC drive system with the three-phase induction machine
Author :
Gaiceanu, Marian ; Nichita, Cristian
Author_Institution :
Dept. of Autom. & Electr. Eng., Dunarea de Jos Univ. of Galati, Galati, Romania
Abstract :
The three phase induction machine is the most used one in electrical drives. For the electrical drives with frequent starting, stopping or reversing regimes the consumed electrical energy is important and the overall efficiency of the system decreases significantly. Nowadays the worldwide manufactures in the power converters production area proposed as an alternative solution the regenerative electrical drives. The authors propose the modular regenerative electrical drive system with the three phase squirrel cage induction machine. During braking or reversing regime the recovered electrical energy is delivered into AC grid sources. The modular topology is formed by series AC active rectifier, DC link and three-phase power inverter. The integrated regenerative drive system assures both the power quality and improving efficiency. Moreover, the power balance control increase the speed response of the control loops, and decreases the size of the DC link capacitor. The vector control in synchronous reference frame is used for both power converters: the load side and the grid side. The boost inductor design is done such that the maximum 5% total harmonic distortion (THD) of the input current (at the rated power of the AC-AC converter) was ensured. The DC capacitor design is based on the maximum allowed value of the ripple in the DC link voltage. By using the Matlab/Simulink software environment the performances of the proposed regenerative drive system in motoring and regenerating operation modes are shown.
Keywords :
AC-AC power convertors; angular velocity control; harmonic distortion; induction motor drives; invertors; machine vector control; power capacitors; power control; power conversion harmonics; power grids; rectifiers; squirrel cage motors; AC grid sources; AC-AC converter; DC link capacitor; DC link power inverter; DC link voltage; Matlab software environment; Simulink software environment; boost inductor design; braking regime; control loops; electrical energy; frequent reversing regime; frequent starting regime; frequent stopping regime; grid side; load side; motoring operation mode; power balance control; power converters production area; power quality; regenerating operation mode; regenerative AC drive system; regenerative electrical drives; series AC active rectifier; speed response; synchronous reference frame; three phase squirrel cage induction machine; three-phase power inverter; total harmonic distortion; vector control; Capacitors; Induction machines; Mathematical model; Pulse width modulation; Reactive power; Torque; Voltage control; Induction motor; Matlab/Simulink; load feedforward control; power inverter; regenerative;
Conference_Titel :
Applied and Theoretical Electricity (ICATE), 2014 International Conference on
Conference_Location :
Craiova
DOI :
10.1109/ICATE.2014.6972641