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A comprehensive review of cyber-physical security risks in new power systemOACSCD

中文摘要

This review systematically examines the multifaceted cyber-physical security risks facing new power systems during the global energy transition, with a focus on three critical dimensions. First, it elucidates real-world instances of Cyber-Physical Coupling Threat(CPCT) to highlight the emergent security challenges associated with transformations and distribution paradigms in power generation. Second, it dissects the traditional security risks at each phase within the Sensing-Transmitting-Decision Making-Controlling(STDC)loop, offering a thorough examination of vulnerabilities and potential attack vectors. Third,it explores emerging threats from the Generation-Grid-Load-Storage(GGLS) integration model, which pose severe threats to the stable operation of power system. Finally, synthesizing these insights, this study outlines six future risk categories that demand proactive defense strategies. These findings advance theoretical frameworks to bolster the resilience of low-carbon energy systems, emphasizing adaptive cybersecurity measures for stable and secure power grid operations.

Huihui Huang;Yunkai Song;Qiang Wei;Yangyang Geng;Hongmin Wang

School of Cyber Security,Information Engineering University,Zhengzhou 450001,ChinaSchool of Cyber Security,Information Engineering University,Zhengzhou 450001,ChinaSchool of Cyber Security,Information Engineering University,Zhengzhou 450001,ChinaSchool of Cyber Security,Information Engineering University,Zhengzhou 450001,ChinaSchool of Cyber Security,Information Engineering University,Zhengzhou 450001,China

信息技术与安全科学

New Power SystemRisks AnalysisCyber-Physical Coupling Threat(CPCT)Sensing-Transmitting-DecisionMaking-Controlling(STDC)Generation-Grid-Load-Storage(GGLS)

《Security and Safety》 2025 (4)

P.91-107,17

supported by the National Natural Science Foundation of China under Grant 61833015the Program for Innovation Leading Scientists and Technicians of Zhong Yuan under Grant No.224200510002

10.1051/sands/2025005

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