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Article

A Novel Algorithm for Recovering Out-of-Service Loads in Smart Distribution Systems Following Exposure to Cyber-Attacks

by
Mohamed Goda
1,*,
Mazen Abdel-Salam
2,
Mohamed-Tharwat El-Mohandes
2 and
Ahmed Elnozahy
2
1
Electrical Engineering Department, October 6 University, Giza 12566, Egypt
2
Electrical Engineering Department, Assiut University, Assiut 71515, Egypt
*
Author to whom correspondence should be addressed.
Electronics 2025, 14(13), 2641; https://doi.org/10.3390/electronics14132641
Submission received: 20 April 2025 / Revised: 26 June 2025 / Accepted: 26 June 2025 / Published: 30 June 2025
(This article belongs to the Special Issue Cybersecurity for Smart Power Systems and Transmission Networks)

Abstract

An algorithm is proposed to recover out-of-service loads (OOSLs) in smart distribution systems (SDSs) after exposure to cyber-attacks (CAs) resulting in interruptions of in-service loads (INSLs). The proposed algorithm is implemented in three steps. The first step is based on building the SDS in matrix form to be data input to the proposed algorithm. The second step is concerned with classifying the SDS into three zones: the attacked zone, the primary neighbor zone, and the secondary neighbor zone. The third step is performing five maneuvering processes (MPs) to recover the OOSL without breaking the electric limitations (ELs). The ELs are related to the maximum branch current, the node voltage, the load priority, the radiality maintenance of the SDS, the minimum system total power loss, the instruction sequence of the automatic-communication-switches (ACS), and the minimum number of ACSs. The proposed algorithm was tested under a 70-bus SDS with four electric supply feeders. The proposed algorithm achieved supply recovery for all OOSLs with efficiency of 100% after the occurrence of a CA on a single or double ACS without breaking the ELs. The proposed algorithm succeeded in achieving supply recovery for 97.6%, 97.1%, and 96.4% of the OOSLs after the simultaneous occurrence of a CA on three, four, and five ACSs, respectively, without breaking the ELs. The advantages of the proposed algorithm are a lack of dependency on the system size, a short electric supply recovery time within the range of 190–199 ms, a lack of dependency on distributed generation (DG), and the achievement of self-healing in the SDS following a single and two simultaneous CAs, as well as almost achieving self-healing under exposure to three, four, and five simultaneous CAs.
Keywords: cyber-attack; smart distribution system; out-of-service loads; electric service recovery; zone classification; self-healing; maneuvering processes cyber-attack; smart distribution system; out-of-service loads; electric service recovery; zone classification; self-healing; maneuvering processes

Share and Cite

MDPI and ACS Style

Goda, M.; Abdel-Salam, M.; El-Mohandes, M.-T.; Elnozahy, A. A Novel Algorithm for Recovering Out-of-Service Loads in Smart Distribution Systems Following Exposure to Cyber-Attacks. Electronics 2025, 14, 2641. https://doi.org/10.3390/electronics14132641

AMA Style

Goda M, Abdel-Salam M, El-Mohandes M-T, Elnozahy A. A Novel Algorithm for Recovering Out-of-Service Loads in Smart Distribution Systems Following Exposure to Cyber-Attacks. Electronics. 2025; 14(13):2641. https://doi.org/10.3390/electronics14132641

Chicago/Turabian Style

Goda, Mohamed, Mazen Abdel-Salam, Mohamed-Tharwat El-Mohandes, and Ahmed Elnozahy. 2025. "A Novel Algorithm for Recovering Out-of-Service Loads in Smart Distribution Systems Following Exposure to Cyber-Attacks" Electronics 14, no. 13: 2641. https://doi.org/10.3390/electronics14132641

APA Style

Goda, M., Abdel-Salam, M., El-Mohandes, M.-T., & Elnozahy, A. (2025). A Novel Algorithm for Recovering Out-of-Service Loads in Smart Distribution Systems Following Exposure to Cyber-Attacks. Electronics, 14(13), 2641. https://doi.org/10.3390/electronics14132641

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