Prevention of electricity theft using distribution board remote switch control (DBRSC)

One of a major problem in many developing countries is electricity theft. In Malaysia, the most common forms of stealing electricity are tapping electricity directly from the distribution feeder and manipulating the meter reading via tampering. Refuse to pay bills also one of the problem contributor...

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Main Authors: Mohamad, Md. Zulkifili, Rosmin, Norzanah, Mohamed Amin, Muhalim, Mustaamal, Aede Hatib, Ali, Nor Azizah, Aripriharta, Aripriharta
Format: Article
Language:English
Published: Malaysian Society for Computed Tomography & Imaging Technology (MyCT) 2021
Subjects:
Online Access:http://eprints.utm.my/98372/1/NorzanahRosmin2021_PreventionofElectricityTheftusingDistribution.pdf
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author Mohamad, Md. Zulkifili
Rosmin, Norzanah
Mohamed Amin, Muhalim
Mustaamal, Aede Hatib
Ali, Nor Azizah
Aripriharta, Aripriharta
author_facet Mohamad, Md. Zulkifili
Rosmin, Norzanah
Mohamed Amin, Muhalim
Mustaamal, Aede Hatib
Ali, Nor Azizah
Aripriharta, Aripriharta
author_sort Mohamad, Md. Zulkifili
collection ePrints
description One of a major problem in many developing countries is electricity theft. In Malaysia, the most common forms of stealing electricity are tapping electricity directly from the distribution feeder and manipulating the meter reading via tampering. Refuse to pay bills also one of the problem contributors. Many electric utilities face this problems, Tenaga Nasional Berhad (TNB) as the largest electric utility in Malaysia, is no exception. To counter the power theft problem, disconnecting the offenders’ electric supply is a popular approach attempted by TNB for many years. However, this has caused a lot of hazardous events such as injury and potentially loss of life. Therefore, in this paper, a more practical and safer solution is proposed to counter this issue, in which a Distribution Board Remote Switch Control (DBRSC) control approach is proposed. To design this DBRSC, an Arduino Uno microprocessor was used to communicate with an MIT V3 smartphone app using MIT App Inventor Software. From the experimental test, it has been found that the proposed DBRSC unit has been successfully designed, developed, and functioning well in disconnecting and reconnecting the electrical supply remotely. This DBRSC also has been proven works well for both single and three-phase distribution systems. It is therefore, as implication, TNB’s technicians able to cut the electricity connection of the electricity thefts’ premises and houses easier and safer as the electrical connection can be switched off/on from the installed DBRSC on the substation posts on the streets.
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spelling utm.eprints-983722022-12-11T03:36:36Z http://eprints.utm.my/98372/ Prevention of electricity theft using distribution board remote switch control (DBRSC) Mohamad, Md. Zulkifili Rosmin, Norzanah Mohamed Amin, Muhalim Mustaamal, Aede Hatib Ali, Nor Azizah Aripriharta, Aripriharta TK Electrical engineering. Electronics Nuclear engineering One of a major problem in many developing countries is electricity theft. In Malaysia, the most common forms of stealing electricity are tapping electricity directly from the distribution feeder and manipulating the meter reading via tampering. Refuse to pay bills also one of the problem contributors. Many electric utilities face this problems, Tenaga Nasional Berhad (TNB) as the largest electric utility in Malaysia, is no exception. To counter the power theft problem, disconnecting the offenders’ electric supply is a popular approach attempted by TNB for many years. However, this has caused a lot of hazardous events such as injury and potentially loss of life. Therefore, in this paper, a more practical and safer solution is proposed to counter this issue, in which a Distribution Board Remote Switch Control (DBRSC) control approach is proposed. To design this DBRSC, an Arduino Uno microprocessor was used to communicate with an MIT V3 smartphone app using MIT App Inventor Software. From the experimental test, it has been found that the proposed DBRSC unit has been successfully designed, developed, and functioning well in disconnecting and reconnecting the electrical supply remotely. This DBRSC also has been proven works well for both single and three-phase distribution systems. It is therefore, as implication, TNB’s technicians able to cut the electricity connection of the electricity thefts’ premises and houses easier and safer as the electrical connection can be switched off/on from the installed DBRSC on the substation posts on the streets. Malaysian Society for Computed Tomography & Imaging Technology (MyCT) 2021-11-22 Article PeerReviewed application/pdf en http://eprints.utm.my/98372/1/NorzanahRosmin2021_PreventionofElectricityTheftusingDistribution.pdf Mohamad, Md. Zulkifili and Rosmin, Norzanah and Mohamed Amin, Muhalim and Mustaamal, Aede Hatib and Ali, Nor Azizah and Aripriharta, Aripriharta (2021) Prevention of electricity theft using distribution board remote switch control (DBRSC). Journal of Tomography System & Sensor Application (TSSA), 4 (2). pp. 135-143. ISSN 2636-9133 http://tssa.my/index.php/jtssa/article/view/187 NA
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Mohamad, Md. Zulkifili
Rosmin, Norzanah
Mohamed Amin, Muhalim
Mustaamal, Aede Hatib
Ali, Nor Azizah
Aripriharta, Aripriharta
Prevention of electricity theft using distribution board remote switch control (DBRSC)
title Prevention of electricity theft using distribution board remote switch control (DBRSC)
title_full Prevention of electricity theft using distribution board remote switch control (DBRSC)
title_fullStr Prevention of electricity theft using distribution board remote switch control (DBRSC)
title_full_unstemmed Prevention of electricity theft using distribution board remote switch control (DBRSC)
title_short Prevention of electricity theft using distribution board remote switch control (DBRSC)
title_sort prevention of electricity theft using distribution board remote switch control dbrsc
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/98372/1/NorzanahRosmin2021_PreventionofElectricityTheftusingDistribution.pdf
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