DocumentCode :
34964
Title :
Declining multi inverter-based total harmonic distortion with the aid of hybrid optimisation technique
Author :
Vaniyambadi Sathyanarayanan, Bharath ; Mani, Gopinath
Author_Institution :
Dept. of EEE, Bharath Univ., Chennai, India
Volume :
9
Issue :
3
fYear :
2015
fDate :
5 2015
Firstpage :
285
Lastpage :
293
Abstract :
Multilevel inverter has arrived on the scene as an attractive and unique tool which is extensively employed for adapting dc (direct current) voltage to ac (alternating current) voltage. These appliances have recently taken shape as reliable sources of elevated power and found themselves well-utilised more often than not in industrial applications, by employing sine or adapted sine waves. The sine wave form generated in the multilevel inverter output has huge harmonics which should be minimised by appropriate steps. With a view to minimise the harmonics at the output signal, it is necessary to cut short the related total harmonic deformation (THD) of switching angles. Genetic algorithm is widely employed for the function of harmonic optimisation. However a hurdle appears as the cost function tends to invite further intricacy for the optimisation, entailing an added number of iterations. Therefore, with an eye on scaling down the number of iterations, the intention of genetic and particle swarm optimisation algorithms is to optimise the switching angles to the utmost. This method also leads to the decline of the related THD values. The innovative method is executed in the MATLAB/Simulink working platform.
Keywords :
genetic algorithms; harmonic distortion; invertors; iterative methods; particle swarm optimisation; power semiconductor switches; switching convertors; waveform generators; IGBT switches; Matlab; Simulink; THD; elevated power; genetic algorithm; harmonic optimisation; harmonics minimisation; hybrid optimisation technique; iteration method; multilevel inverter-based total harmonic distortion declination; particle swarm optimisation algorithm; semiconductor power converter; sine waves; solitary converter; switching angle optimisation; switching function; total harmonic deformation;
fLanguage :
English
Journal_Title :
Science, Measurement & Technology, IET
Publisher :
iet
ISSN :
1751-8822
Type :
jour
DOI :
10.1049/iet-smt.2013.0244
Filename :
7089402
Link To Document :
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