Proposal of a DC Arc Fault Location Identification Method for Application to Photovoltaic Systems

The widespread deployment of photovoltaic systems (PVS) is progressing rapidly. However, as the scale of these systems increases, two major challenges have emerged: the elevated fire risk due to arc faults and the difficulty in locating such faults across large installations. Although conventional arc fault circuit interrupters (AFCIs) are capable of preventing fires by disconnecting the circuit, they do not provide fault location information. This necessitates time-consuming manual inspections and results in extended system downtime. This study proposes a novel method to address this issue. Based on experimental investigations into the noise characteristics of arc faults, we identified a specific high-frequency band in which the signal amplitude exhibits an attenuation with respect to the propagation distance from the fault origin. Utilizing this characteristic, we developed a localization technique employing an analog circuit, which includes a band-pass filter to extract the target frequency component and an amplifier to process its amplitude. The fault location is estimated from the resulting output voltage. The proposed method enables rapid and accurate localization of arc faults, thereby reducing maintenance time and costs, and contributing to improved safety and operational reliability of large-scale PVS installations.

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Publication Details

Journal
IEEJ Transactions on Power and Energy
Published
2026-08-31
DOI
https://doi.org/10.1541/ieejpes.146.589
Primary Topic
Electrical Fault Detection and Protection
Type
article
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article

Proposal of a DC Arc Fault Location Identification Method for Application to Photovoltaic Systems

Akihiro Tsusaka, Akinori Kato, Sora Hasegawa, Manato Goeku
IEEJ Transactions on Power and Energy
Electrical Fault Detection and Protection
article

Proposal of a DC Arc Fault Location Identification Method for Application to Photovoltaic Systems

Akihiro Tsusaka, Akinori Kato, Sora Hasegawa, Manato Goeku
article en

Abstract

The widespread deployment of photovoltaic systems (PVS) is progressing rapidly. However, as the scale of these systems increases, two major challenges have emerged: the elevated fire risk due to arc faults and the difficulty in locating such faults across large installations. Although conventional arc fault circuit interrupters (AFCIs) are capable of preventing fires by disconnecting the circuit, they do not provide fault location information. This necessitates time-consuming manual inspections and results in extended system downtime. This study proposes a novel method to address this issue. Based on experimental investigations into the noise characteristics of arc faults, we identified a specific high-frequency band in which the signal amplitude exhibits an attenuation with respect to the propagation distance from the fault origin. Utilizing this characteristic, we developed a localization technique employing an analog circuit, which includes a band-pass filter to extract the target frequency component and an amplifier to process its amplitude. The fault location is estimated from the resulting output voltage. The proposed method enables rapid and accurate localization of arc faults, thereby reducing maintenance time and costs, and contributing to improved safety and operational reliability of large-scale PVS installations.

IEEJ Transactions on Power and EnergyVol. 146(9)
Aichi Institute of Technology (JP), Kawamura Hospital (JP)
Affordable and clean energy
Openalex Percentile: Top 20%
Electrical Fault Detection and Protection
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Proposal of a DC Arc Fault Location Identification Method for Application to Photovoltaic Systems — Akihiro Tsusaka, Akinori Kato, et al. · IEEJ Transactions on Power and Energy (2026) | TGRS Research Map | TGRS