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IoT-based monitoring, analysis and supervisory control of voltage harmonics in a three-phase system using four singles tuned lowpass filter

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  • IoT-based monitoring, analysis and supervisory control of voltage harmonics in a three-phase system using four singles tuned lowpass filter

John Adrian F. De Guzman, Kimberly Mae L. Leyson, Bernard Gabriel C. Mendoza, Gio Paulo R. Quezada and Charles G. Juarizo *

Department of Electronics Engineering, College of Engineering, Pamantasan ng Lungsod ng Maynila, Manila, Philippines.

Research Article
 

World Journal of Advanced Research and Reviews, 2023, 19(01), 600–609
Article DOI: 10.30574/wjarr.2023.19.1.1400
DOI url: https://doi.org/10.30574/wjarr.2023.19.1.1400

Received on 04 June 2023; revised on 10 July 2023; accepted on 12 July 2023

Total Harmonic Distortion is a vital part of communications, power distribution, and audio. In power distribution, it must be kept as low as possible. Voltage pollution occurs at the point of common coupling, which leads to a higher THD. Higher THD ensues thermal stress to the system where issues in the power system arise. Odd harmonic frequencies, specifically, the 5th, 7th, 11th, and 13th are the primary cause of the increase in THD. Several ways to reduce harmonics are the use of reactors, passive filters, and active front end solutions. This study is focused on minimizing the voltage harmonics by monitoring the voltage coming from a three-phase system by using four single-tuned filters that will tune out the unwanted harmful frequencies. The data will send through the IoT analytics platform which can then be viewed from ThingView, and the filters can be controlled through Arest.io. The system was compared to an oscilloscope then used Root-Mean-Square Error for system reliability test and yielded 0.097696 for data without filter and 0.048485 for data with a filter. Lastly, the system effectively decreased the THD by 32% compared to an unfiltered source. 

Total Harmonic Distortion; Passive Filter; Fast-Fourier Transform; Internet-of-Things

https://wjarr.co.in/sites/default/files/fulltext_pdf/WJARR-2023-1400.pdf

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John Adrian F. De Guzman, Kimberly Mae L. Leyson, Bernard Gabriel C. Mendoza, Gio Paulo R. Quezada and Charles G. Juarizo. IoT-based monitoring, analysis and supervisory control of voltage harmonics in a three-phase system using four singles tuned lowpass filter. World Journal of Advanced Research and Reviews, 2023, 19(01), 600–609. Article DOI: https://doi.org/10.30574/wjarr.2023.19.1.1400

Copyright © 2023 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0

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