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  5. Real-Time Selective Harmonic Minimization for Multilevel Inverters Using Genetic Algorithm and Artificial Neural Network Angle Generation
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Real-Time Selective Harmonic Minimization for Multilevel Inverters Using Genetic Algorithm and Artificial Neural Network Angle Generation

Date Issued
May 1, 2012
Author(s)
Filho, Faete Jacques Teixeira
Advisor(s)
Leon M. Tolbert
Additional Advisor(s)
Burak Ozpineci, Bin Hu, Fred Wang
Abstract

This work approximates the selective harmonic elimination problem using Artificial Neural Networks (ANN) to generate the switching angles in an 11-level full bridge cascade inverter powered by five varying DC input sources. Each of the five full bridges of the cascade inverter was connected to a separate 195W solar panel. The angles were chosen such that the fundamental was kept constant and the low order harmonics were minimized or eliminated. A non-deterministic method is used to solve the system for the angles and to obtain the data set for the ANN training. The method also provides a set of acceptable solutions in the space where solutions do not exist by analytical methods. The trained ANN is a suitable tool that brings a small generalization effect on the angles' precision and is able to perform in real time (50/60Hz time window).

Subjects

Neural Network

Genetic Algorithm

Selective Harmonic El...

Harmonic Control

Real-time control

Solar Panels

Disciplines
Electrical and Electronics
Power and Energy
Degree
Doctor of Philosophy
Major
Electrical Engineering
Embargo Date
December 1, 2011
File(s)
Thumbnail Image
Name

Faete_Filho_Thesis_V67.doc

Size

14.15 MB

Format

Microsoft Word

Checksum (MD5)

d1f1925e29c03658917a6bd5e5bdd92b

Thumbnail Image
Name

Faete_Filho_Thesis_V76.pdf

Size

4.69 MB

Format

Adobe PDF

Checksum (MD5)

1582873c55129ef00c477278eb806af2

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