Title :
Steady State Over-Modulation of Matrix Converter Using Simplified Carrier Based Control
Author :
Satish, T. ; Mohapatra, K.K. ; Mohan, Ned
Author_Institution :
Univ. of Minnesota, Minneapolis
Abstract :
In this paper, the simplified carrier-based control of matrix converter is modified to operate the converter in the over- modulation region. Both the input-side and output-side over- modulation modes have been studied and their limits of operation are derived. With output-side over-modulation, the maximum output to input voltage transfer-ratio with 6-step square wave output voltage is found to be 0.95 which is higher than the 0.866 intrinsic limit of the matrix converter. With input-side over- modulation the maximum voltage transfer-ratio is found to be 0.908 while still being able to control the power factor of the input currents. With simultaneous input and output-side over- modulation, a unity voltage transfer-ratio is achieved. This improvement in the voltage transfer-ratio in the above three cases is achieved at the cost of low frequency distortion in the output voltages and input currents. With simultaneous input and output- side over-modulation, a voltage transfer-ratio of 0.958 is achieved without significantly increasing the harmonics in the input currents and output voltages. Theoretical calculations are supported by experimental results on a laboratory prototype.
Keywords :
matrix convertors; modulation; matrix converter; output-side over-modulation; power factor; simplified carrier based control; steady state over-modulation; Amplitude modulation; Energy storage; Frequency; Industrial Electronics Society; Matrix converters; Notice of Violation; Power system reliability; Steady-state; USA Councils; Voltage;
Conference_Titel :
Industrial Electronics Society, 2007. IECON 2007. 33rd Annual Conference of the IEEE
Conference_Location :
Taipei
Print_ISBN :
1-4244-0783-4
DOI :
10.1109/IECON.2007.4460085