Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink

This paper presents a comprehensive fault identification technique for a single-phase matrix converter (SPMC) based boost rectifier circuit. The primary objective of the fault identification technique is to identify the faulty switch during an open circuit fault (OCF) using diagnostic techniques mon...

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发表在:2024 IEEE INDUSTRIAL ELECTRONICS AND APPLICATIONS CONFERENCE, IEACON 2024
Main Authors: Muhammad, Khairul Safuan; Hassan, Amir Hakim; Baharom, Rahimi; Munim, Wan Noraishah Wan Abdul
格式: Proceedings Paper
语言:English
出版: IEEE 2024
主题:
在线阅读:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001414140200034
author Muhammad
Khairul Safuan; Hassan
Amir Hakim; Baharom
Rahimi; Munim
Wan Noraishah Wan Abdul
spellingShingle Muhammad
Khairul Safuan; Hassan
Amir Hakim; Baharom
Rahimi; Munim
Wan Noraishah Wan Abdul
Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
Computer Science; Engineering
author_facet Muhammad
Khairul Safuan; Hassan
Amir Hakim; Baharom
Rahimi; Munim
Wan Noraishah Wan Abdul
author_sort Muhammad
spelling Muhammad, Khairul Safuan; Hassan, Amir Hakim; Baharom, Rahimi; Munim, Wan Noraishah Wan Abdul
Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
2024 IEEE INDUSTRIAL ELECTRONICS AND APPLICATIONS CONFERENCE, IEACON 2024
English
Proceedings Paper
This paper presents a comprehensive fault identification technique for a single-phase matrix converter (SPMC) based boost rectifier circuit. The primary objective of the fault identification technique is to identify the faulty switch during an open circuit fault (OCF) using diagnostic techniques monitoring the input supply's cycle, the output voltage, and the inductor current magnitude as well as the current and voltage measurement to obtain the binary code. To interpret the fault occurrence, a binary code is created to interpret the faulty switch, which serves as a signal to a controller to initiate the appropriate Current Option Route (COR) strategy. This configuration is intended to reroute current to operational switches in the condition of an Open Circuit Fault (OCF) and maintain the necessary current direction in the circuit. Using MATLAB Simulink, the switching operation of the COR approach and fault identification technique is presented. The successful generation and application of the binary code for fault identification and correction highlight the robustness and practical utility of the proposed method in enhancing the reliability of the SPMC-based boost rectifier system.
IEEE


2024


10.1109/IEACon61321.2024.10797244
Computer Science; Engineering

WOS:001414140200034
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001414140200034
title Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
title_short Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
title_full Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
title_fullStr Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
title_full_unstemmed Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
title_sort Fault Identification Technique to Identify Open Circuit Fault Switch Location Based on SPMC Boost Rectifier Circuit Using MATLAB Simulink
container_title 2024 IEEE INDUSTRIAL ELECTRONICS AND APPLICATIONS CONFERENCE, IEACON 2024
language English
format Proceedings Paper
description This paper presents a comprehensive fault identification technique for a single-phase matrix converter (SPMC) based boost rectifier circuit. The primary objective of the fault identification technique is to identify the faulty switch during an open circuit fault (OCF) using diagnostic techniques monitoring the input supply's cycle, the output voltage, and the inductor current magnitude as well as the current and voltage measurement to obtain the binary code. To interpret the fault occurrence, a binary code is created to interpret the faulty switch, which serves as a signal to a controller to initiate the appropriate Current Option Route (COR) strategy. This configuration is intended to reroute current to operational switches in the condition of an Open Circuit Fault (OCF) and maintain the necessary current direction in the circuit. Using MATLAB Simulink, the switching operation of the COR approach and fault identification technique is presented. The successful generation and application of the binary code for fault identification and correction highlight the robustness and practical utility of the proposed method in enhancing the reliability of the SPMC-based boost rectifier system.
publisher IEEE
issn

publishDate 2024
container_volume
container_issue
doi_str_mv 10.1109/IEACon61321.2024.10797244
topic Computer Science; Engineering
topic_facet Computer Science; Engineering
accesstype
id WOS:001414140200034
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001414140200034
record_format wos
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