A Modified Seven-Level Inverter with Inverted Sine Wave Carrier for PWM Control

Author:

Vijayakumar Arun1ORCID,Alexander Stonier Albert2ORCID,Peter Geno3ORCID,Kumaresan Praghash4ORCID,Reyes Elenor M.5

Affiliation:

1. Department of Electrical and Electronics Engineering, Sreevidyanikethan Engineering College, Tirupati, India

2. Department of Electrical and Electronics Engineering, Kongu Engineering College, Erode, India

3. CRISD, School of Engineering and Technology, University of Technology Sarawak, Sibu, Malaysia

4. Department of Electronics and Communication Engineering, Christ University, Bengaluru, India

5. Department of Electrical Engineering, Batangas State University, Batangas, Philippines

Abstract

The conventional multilevel inverter necessitates more active switching devices and high dc-link voltages. To minimalize the employment of switching devices and dc-link voltages, a novel topology has been proposed. In this paper, a novel minimum switch multilevel inverter is established using six switches and two dc-link voltages in the proportion of 1 : 2. In addition, the proposed topology is proficient in making seven-level voltages by appropriate gate signals. The PWM signals were produced using several inverted sine carriers and a single trapezoidal reference. When compared to other existing inverters, this configuration needs fewer components, as well as fewer gate drives. Furthermore, this module can generate a negative level without the use of a supplementary circuit such as an H-Bridge. As a result, overall cost and complexity are greatly reduced. The proposed minimum switch multilevel inverter operation is validated through simulations followed by experimental results of a prototype.

Funder

Department of Science and Technology, Government of West Bengal

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Modeling and Simulation

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3. Evaluating the Effectiveness of the TAR Pulse Width Modulation Strategy for a 7-Level Inverter with Non-Uniform Source Voltages;2023 First International Conference on Advances in Electrical, Electronics and Computational Intelligence (ICAEECI);2023-10-19

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