Study on the Basic Architecture and Decision Logic of an Add‐On Advanced Adaptive Protection Relay Using IEC 61850

ABSTRACT This paper proposes an advanced adaptive protection relay system that leverages IEC 61850‐based wide‐area communication and PLC‐driven decision logic. By integrating real‐time data from multiple substations, the system dynamically adapts relay operations to changing network topologies while maintaining compatibility with existing protection relays through an add‐on architecture. This add‐on approach facilitates easy deployment without major modifications to existing systems, enabling scalable and cost‐effective implementation. A decision tree algorithm provides transparent, deterministic, and rapid fault isolation. The proposed approach was validated through hardware‐in‐the‐loop simulations, demonstrating its practicality, scalability, and effectiveness in enhancing the reliability of power system protection.

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Publication Details

Journal
Electrical Engineering in Japan
Published
2026-09-09
DOI
https://doi.org/10.1002/eej.70049
Primary Topic
Power Systems Fault Detection
Type
article
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article

Study on the Basic Architecture and Decision Logic of an Add‐On Advanced Adaptive Protection Relay Using IEC 61850

Kosuke Tsushima, Mutsumi Aoki, Toru Amau, Tetsuo Otani et al.
Electrical Engineering in Japan
Power Systems Fault Detection
article

Study on the Basic Architecture and Decision Logic of an Add‐On Advanced Adaptive Protection Relay Using IEC 61850

Kosuke Tsushima, Mutsumi Aoki, Toru Amau, Tetsuo Otani, Ryuichi Kawazoe, Kazuhiro Kojima, Sosuke Ishikawa
article en

Abstract

ABSTRACT This paper proposes an advanced adaptive protection relay system that leverages IEC 61850‐based wide‐area communication and PLC‐driven decision logic. By integrating real‐time data from multiple substations, the system dynamically adapts relay operations to changing network topologies while maintaining compatibility with existing protection relays through an add‐on architecture. This add‐on approach facilitates easy deployment without major modifications to existing systems, enabling scalable and cost‐effective implementation. A decision tree algorithm provides transparent, deterministic, and rapid fault isolation. The proposed approach was validated through hardware‐in‐the‐loop simulations, demonstrating its practicality, scalability, and effectiveness in enhancing the reliability of power system protection.

Electrical Engineering in Japan
Nagoya Institute of Technology (JP), Nisshinbo Holdings (Japan) (JP), Chubu Electric Power (Japan) (JP)
Openalex Percentile: Top 14%
Power Systems Fault Detection
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Study on the Basic Architecture and Decision Logic of an Add‐On Advanced Adaptive Protection Relay Using IEC 61850 — Kosuke Tsushima, Mutsumi Aoki, et al. · Electrical Engineering in Japan (2026) | TGRS Research Map | TGRS