Title :
Microcontroller based multi-mode operation of a three-phase induction generator with the Smith connection
Author :
Chan, T.F. ; Lai, L.L.
Author_Institution :
Dept. of EE, Hong Kong Polytech. Univ., China
Abstract :
The Smith connection is a special winding connection that enables a three-phase motor or generator to operate with high efficiency on a single-phase supply system. This paper describes the multi-mode operation of a single-phase induction generator with the Smith connection. This operation involves the selection of appropriate phase-balancing capacitances that give minimum voltage and current imbalance in the generator as the rotor speed changes. A simple switching strategy is adopted by using one of the stator phase voltages as the control signal that determines the mode selection. A prototype multi-mode system (namely L-mode, M-mode and H-mode) is implemented by using a microcontroller as a voltage comparator and mode selector. Experiments performed on a small induction machine confirm the feasibility of the proposed controller. The features of the proposed controller are simplicity in circuit design, low cost, and no need for a speed sensor.
Keywords :
asynchronous generators; capacitance; machine control; microcontrollers; rotors; stators; 130 V; 5.2 A; 50 Hz; H-mode; L-mode; M-mode; Smith connection; control signal; high efficiency; microcontroller based multi-mode operation; minimum current imbalance; minimum voltage imbalance; mode selector; phase-balancing capacitances; rotor speed; single-phase induction generator; single-phase supply system; small induction machine; stator phase voltages; switching strategy; three-phase generator; three-phase induction generator; three-phase motor; voltage comparator; winding connection; Capacitance; Circuit synthesis; Costs; Induction generators; Induction machines; Microcontrollers; Prototypes; Rotors; Stators; Voltage control;
Conference_Titel :
Electric Machines and Drives Conference, 2003. IEMDC'03. IEEE International
Print_ISBN :
0-7803-7817-2
DOI :
10.1109/IEMDC.2003.1210668