A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach
Pulse Width Modulation (PWM) has become the subject of intensive research in power electronic converters for several decades. A vital part of the research is the investigation of the harmonics for various PWM schemes. The aim of such exercise is to have an insight on the frequency spectra, which...
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my.utm.142942011-08-23T05:36:54Z http://eprints.utm.my/id/eprint/14294/ A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach Salam, Zainal Mohamad Razali, Azzidin Aziz, Junaidi TK Electrical engineering. Electronics Nuclear engineering Pulse Width Modulation (PWM) has become the subject of intensive research in power electronic converters for several decades. A vital part of the research is the investigation of the harmonics for various PWM schemes. The aim of such exercise is to have an insight on the frequency spectra, which will lead to critical design decisions such as dimensioning of filter components, determining of power losses, and categorizing the general performance of the inverter. Typically, the harmonics are calculated using time-based simulation packages, such as MATLAB 4 or PSpice 5 . With this approach, the switched waveform is sampled in time, and its harmonic profile is then computed using discrete Fourier Transform (DFT). Penerbit UTM 2008 Book Section PeerReviewed Salam, Zainal and Mohamad Razali, Azzidin and Aziz, Junaidi (2008) A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach. In: Recent Advances In Power Inverter. Penerbit UTM , Johor, pp. 234-265. ISBN 978-983-52-0647-4 |
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TK Electrical engineering. Electronics Nuclear engineering Salam, Zainal Mohamad Razali, Azzidin Aziz, Junaidi A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
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Pulse Width Modulation (PWM) has become the subject of intensive research in power electronic converters for several decades. A vital part of the research is the investigation of the harmonics for various PWM schemes. The aim of such exercise is to have an insight on the frequency spectra, which will lead to critical design decisions such as dimensioning of filter components, determining of power losses, and categorizing the general performance of the inverter. Typically, the harmonics are calculated using time-based simulation packages, such as MATLAB 4 or PSpice 5 . With this approach, the switched waveform is sampled in time, and its harmonic profile is then computed using discrete Fourier Transform (DFT). |
format |
Book Section |
author |
Salam, Zainal Mohamad Razali, Azzidin Aziz, Junaidi |
author_facet |
Salam, Zainal Mohamad Razali, Azzidin Aziz, Junaidi |
author_sort |
Salam, Zainal |
title |
A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
title_short |
A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
title_full |
A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
title_fullStr |
A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
title_full_unstemmed |
A closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
title_sort |
closed form solution for the harmonics of a five level cascaded inverter with the single carrier modulation: the double integral fourier series approach |
publisher |
Penerbit UTM |
publishDate |
2008 |
url |
http://eprints.utm.my/id/eprint/14294/ |
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1643646370462040064 |
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13.211869 |