Title :
Novel cascaded H-bridge multilevel inverter with harmonics elimination
Author :
Gobinath, K. ; Mahendran, S. ; Gnanambal, I.
Author_Institution :
Dept. of EEE, K.S. Rangasamy Coll. of Technol., Thiruchengode, India
Abstract :
Multilevel inverter is one of the most recent and popular type of advances in power electronics. It synthesizes desired output voltage waveform from several dc sources used as input for the multilevel inverter. This paper presents the two techniques for improving the quality of the output voltage and efficiency. First, new novel topology for multilevel inverter is introduced which reduces the number of switches compared to other for the same level of output voltage. Second, Selective Harmonics Elimination Stepped Waveform (SHESW) method is implemented to eliminate the lower order harmonics. Fundamental switching scheme is used to control the power electronics switches in the inverter. The proposed topology is suitable for any number of levels. When the levels are increased the number of switches used is reduced compared to the conventional cascaded H-bridge multilevel inverter. This paper is particularly focuses on seven level inverter. In the proposed topology only 7 switches were used. The harmonic reduction is achieved by selecting appropriate switching angles. It shows hope to reduce initial cost and complexity hence it is apt for industrial applications. In this paper third and fifth level harmonics have been eliminated. Simulation work is done using the MATLAB software which validates the proposed method and finally THD comparison is presented for analysis.
Keywords :
cost reduction; harmonic distortion; harmonics suppression; invertors; power control; power supply quality; power system harmonics; switchgear; switching convertors; DC source; MATLAB software; SHESW; THD; cascaded H-bridge multilevel inverter; fifth level harmonic elimination; harmonic reduction; industrial application; initial cost reduction; output voltage quality; output voltage waveform synthesis; power electronics; selective harmonics elimination stepped waveform method; switching scheme; third level harmonic elimination; Equations; Harmonic analysis; Inverters; Mathematical model; Power harmonic filters; Switches; Topology; MATLAB; Multilevel Inverter; THD and Selective Harmonics Elimination;
Conference_Titel :
Green High Performance Computing (ICGHPC), 2013 IEEE International Conference on
Conference_Location :
Nagercoil
Print_ISBN :
978-1-4673-2592-9
DOI :
10.1109/ICGHPC.2013.6533923