DocumentCode
1907585
Title
Dual carrier modulation technique using MATLAB for a five level inverter
Author
Kaviarasu, K. ; Karthikeyan, K. ; Balamurugan, S. ; Moideen, A. Kaja ; Ayappan, G.
Author_Institution
Dept. of ECE, Sri Ramakrishna Inst. of Technol., Coimbatore, India
fYear
2012
fDate
15-16 March 2012
Firstpage
648
Lastpage
652
Abstract
Multilevel inverter have become an effective and practical solution for increasing power and reducing harmonics of AC waveforms. This paper mainly focuses about a single phase five level inverter using a novel dual carrier modulation technique which is simulated using MATLAB. The inverter consist of a full bridge inverter and an auxiliary circuit with four diodes and a switch. The inverter produces output voltage in five levels zero: +0.5Vdc, +Vdc, -0.5Vdc and -Vdc. The dual carrier modulation technique uses two identical triangular carrier signals each with amplitude exactly half of the amplitude of the sinusoidal reference signal to generate PWM signals. The performance evaluation of the proposed PWM strategy for single phase five level inverter is done using MATLAB Simulink. Total harmonic distortion and switching losses for both the dual reference modulation and dual carrier modulation techniques are compared. It is observed that the dual carrier modulation technique gives reduced total harmonic reduction and switching losses.
Keywords
PWM invertors; bridge circuits; mathematics computing; AC waveforms harmonic reduction; MATLAB Simulink; auxiliary circuit; dual carrier modulation technique; full bridge inverter; harmonic distortion; multilevel inverter; single phase five level inverter; sinusoidal reference signal amplitude; switching losses; triangular carrier signals; Frequency modulation; Inverters; Switches; Switching circuits; Time frequency analysis; PWM inverter; Switching frequency; THD;
fLanguage
English
Publisher
ieee
Conference_Titel
Devices, Circuits and Systems (ICDCS), 2012 International Conference on
Conference_Location
Coimbatore
Print_ISBN
978-1-4577-1545-7
Type
conf
DOI
10.1109/ICDCSyst.2012.6188651
Filename
6188651
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