Title :
Microcontroller based single-phase simplified nine-level inverter fed induction motor
Author :
Christopher, I.W. ; Deepa, A. ; Hemalatha, K. ; Madhubala, S. ; Hemalatha, J. ; Ramesh, Ramaswamy
Author_Institution :
Dept. of EEE, Tagore Eng. Coll., Chennai, India
Abstract :
This paper presents the hardware design and implementation of a Microcontroller based single-phase simplified nine-level inverter (SNLI) fed induction motor. Multilevel inverters offer high power capability, associated with lower output harmonics and lower turn-off losses. This work informs a multilevel inverter fed induction motor using an H-bridge output stage with bidirectional auxiliary switches. The inverter is capable of producing nine levels of output-voltage levels (Vdc, 3Vdc /4, 2Vdc /4, Vdc /4,0, - Vdc /4, - 2Vdc /4, -3Vdc /4, -Vdc ) from the DC supply voltage. The control circuit necessary for multilevel inverter operation is implemented using an ATMEL AT89S52 Microcontroller, reducing overall system cost and complexity. Theoretical predictions are validated using simulation in MATLAB SIMULINK, and satisfactory circuit operation is proved with experimental tests performed on an experimental model.
Keywords :
induction motors; invertors; microcontrollers; switches; ATMEL AT89S52 microcontroller; DC supply voltage; H-bridge output stage; Matlab-Simulink; SNLI; bidirectional auxiliary switches; control circuit; multilevel inverter fed induction motor; single-phase simplified nine-level inverter fed induction motor; turn-off losses; MOSFET circuits; Microcontrollers; Rectifiers; Silicon; Software packages; Switches; Topology; H-bridge; Induction Motor (IM); Microcontroller; Simplified Nine-Level Inverter (SNLI);
Conference_Titel :
Power Electronics (IICPE), 2012 IEEE 5th India International Conference on
Conference_Location :
Delhi
Print_ISBN :
978-1-4673-0931-8
DOI :
10.1109/IICPE.2012.6450419