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Fault Location Method for Distribution Networks Based on Cluster Partitioning and Arithmetic Optimization Algorithm
by
Li, Chengfeng
, Jia, Dongli
, Sheng, Wanxing
, Yang, Xiaoyu
, Liu, Keyan
, Han, Qing
in
Accuracy
/ Algorithms
/ Arithmetic
/ Clustering
/ Clusters
/ Comparative analysis
/ Decomposition
/ Distributed generation
/ Efficiency
/ Electric properties
/ Fault location
/ Heuristic
/ Mathematical optimization
/ Methods
/ Network topologies
/ Networks
/ Optimization
/ Optimization algorithms
/ Partitioning
2026
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Fault Location Method for Distribution Networks Based on Cluster Partitioning and Arithmetic Optimization Algorithm
by
Li, Chengfeng
, Jia, Dongli
, Sheng, Wanxing
, Yang, Xiaoyu
, Liu, Keyan
, Han, Qing
in
Accuracy
/ Algorithms
/ Arithmetic
/ Clustering
/ Clusters
/ Comparative analysis
/ Decomposition
/ Distributed generation
/ Efficiency
/ Electric properties
/ Fault location
/ Heuristic
/ Mathematical optimization
/ Methods
/ Network topologies
/ Networks
/ Optimization
/ Optimization algorithms
/ Partitioning
2026
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Do you wish to request the book?
Fault Location Method for Distribution Networks Based on Cluster Partitioning and Arithmetic Optimization Algorithm
by
Li, Chengfeng
, Jia, Dongli
, Sheng, Wanxing
, Yang, Xiaoyu
, Liu, Keyan
, Han, Qing
in
Accuracy
/ Algorithms
/ Arithmetic
/ Clustering
/ Clusters
/ Comparative analysis
/ Decomposition
/ Distributed generation
/ Efficiency
/ Electric properties
/ Fault location
/ Heuristic
/ Mathematical optimization
/ Methods
/ Network topologies
/ Networks
/ Optimization
/ Optimization algorithms
/ Partitioning
2026
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Fault Location Method for Distribution Networks Based on Cluster Partitioning and Arithmetic Optimization Algorithm
Journal Article
Fault Location Method for Distribution Networks Based on Cluster Partitioning and Arithmetic Optimization Algorithm
2026
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Overview
The large-scale integration of Distributed Generators (DGs) has significantly altered fault characteristics in distribution networks, posing challenges to conventional fault location methods. To address these limitations, this paper presents a novel approach that combines dynamic cluster partitioning with the arithmetic optimization algorithm (AOA). The proposed method first divides the network into autonomous clusters based on electrical coupling, facilitating preliminary fault area identification. Subsequently, the AOA optimizes fault section identification through current matching analysis. Using MATLAB simulations on an IEEE 33-node system with various DG types and fault scenarios, the method demonstrates superior accuracy and faster convergence compared to traditional approaches. Results confirm its effectiveness in improving fault location performance for modern distribution networks with high DG penetration.
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