Multi-Verse Optimization Algorithm- and Salp Swarm Optimization Algorithm-Based Optimization of Multilevel Inverters

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Date

2020

Authors

Ceylan, Oğuzhan

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Volume Title

Publisher

Springer

Open Access Color

Green Open Access

No

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No
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Top 10%
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Average
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Top 10%

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Abstract

Renewable energy sources are installed into both distribution and transmission grids more and more with the introduction of smart grid concept. Hence, efficient usage of cascaded H-bridge multilevel inverters (MLIs) for power control applications becomes vital for sustainable electricity. Conventionally, selective harmonic elimination equations need to be solved for obtaining optimum switching angles of MLIs. The objective of this study is to obtain switching angles for MLIs to minimize total harmonic distortion. This study contributes to the solution of this problem by utilizing two recently developed intelligent optimization algorithms: multi-verse optimization algorithm and salp swarm algorithm. Moreover, well-known particle swarm optimization is utilized for MLI optimization problem. Seven-level, 11-level and 15-level MLIs are used to minimize total harmonic distortions. Simulation results with different modulation indexes for seven-, 11- and 15-level MLIs are calculated and compared in terms of the accuracy and solution quality. Numerical calculations are verified by using MATLAB/Simulink-based models.

Description

Keywords

Multilevel inverters, Harmonic elimination, Multi-verse optimization algorithm, Salp swarm algorithm, Particle swarm optimization, Particle swarm optimization, Multi-verse optimization algorithm, Salp swarm algorithm, Multilevel inverters, Harmonic elimination

Turkish CoHE Thesis Center URL

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
13

Source

Neural Computing and Applications

Volume

33

Issue

Start Page

1935

End Page

1950
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Scopus : 16

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Mendeley Readers : 10

SCOPUS™ Citations

16

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13

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7

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33

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7

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