Multi-level inverter with novel carrier pulse width modulation technique for high voltage applications
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Published:2022-05-01
Issue:2
Volume:26
Page:667
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ISSN:2502-4760
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Container-title:Indonesian Journal of Electrical Engineering and Computer Science
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language:
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Short-container-title:IJEECS
Author:
Sreelakshmi SankaORCID,
Sujatha Machineni SanjeevappaORCID,
Rahul Jammy RameshORCID
Abstract
<span>The present work deals with multilevel inverters (MLI) with modified carrier pulse width modulation technique and its application, especially in solar-based applications due to its modularity in structure and suitability for medium or high-power applications. Several multilevel inverters are introduced for various applications. One of the drawbacks of these inverters is high total harmonic distortion (THD) value in the output which impacts the power quality. The main objective of this work is to improve the power quality, thereby increasing the life and performance of the overall system at the consumer side. The most popular and compact cascaded multilevel DC-link inverter (CMDCLI) is considered for study and employed for 11-level operation. In general, sinusoidal pulse width modulation (SPWM) technique is used for control of inverter. However, the present work proposes a modified carrier-based hybrid pulse width modulation (HPWM) technique and has been tested with CMLDCLI. This novel technique compares the THD performance results with normal carrier wave considering R-L load. The results are analyzed in MATLAB environment and are validated with experimental results.</span>
Publisher
Institute of Advanced Engineering and Science
Subject
Electrical and Electronic Engineering,Control and Optimization,Computer Networks and Communications,Hardware and Architecture,Information Systems,Signal Processing
Cited by
2 articles.
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1. Enhanced Design and Performance Analysis of a Seven-Level Multilevel Inverter for High-Power Applications;2023 Second International Conference on Augmented Intelligence and Sustainable Systems (ICAISS);2023-08-23
2. Efficient Integration of Photovoltaic Cells with Multiport Converter for Enhanced Energy Harvesting;2023 5th International Conference on Inventive Research in Computing Applications (ICIRCA);2023-08-03